CN106327003A - Environment pollution superposition processing method and system - Google Patents
Environment pollution superposition processing method and system Download PDFInfo
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- CN106327003A CN106327003A CN201610640445.5A CN201610640445A CN106327003A CN 106327003 A CN106327003 A CN 106327003A CN 201610640445 A CN201610640445 A CN 201610640445A CN 106327003 A CN106327003 A CN 106327003A
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Abstract
The invention belongs to the technical field of environmental pollution detection and computer application and provides an environment pollution superposition processing method and system. The environment pollution superposition processing method disclosed in the invention comprises the following steps: project information, input by a user, of an evaluation project is received; according to the information and a geographical position of the evaluation project, predicted values of pollutants of surrounding projects can be searched based on different characteristics of gas, noise and water; corresponding mathematic models are chosen according to different pollutants; the predicted values of the pollutants are subjected to superposition calculation operation, and a superposition pollutant predicted value is obtained. According to the environment pollution superposition processing method and system disclosed in the invention, the predicted values of the pollutants of the surrounding projects in an area where the evaluation project is positioned are subjected to superposing operation, effects exerted on the whole area by implementation of the evaluation project can be obtained, and realness and accuracy of evaluation results can be realized.
Description
Technical field
The present invention relates to environment pollution detection, Computer Applied Technology field, be specifically related at a kind of environmental pollution superposition
Reason method and system.
Background technology
Current environmental impact assessment work only judges whether the impact of neighboring area is exceeded standard by its evaluated and tested project, and fact of case is,
Generally comprising multiple project in one region, these multiple projects are jointly to the environmental effects in region.Therefore, to single item
Mesh carries out environmental pollution test and appraisal, and can not obtain this project adds the impact on neighboring area.
Summary of the invention
For defect of the prior art, the invention provides a kind of environmental pollution superposition processing method and system, pass through
The pollution prediction value of the relevant item in superposition evaluation and test project region, obtains after evaluation and test project adds producing whole region
Raw impact, make evaluation result more can truly, accurate.
A kind of environmental pollution superposition processing method that the present invention provides, including: terminal obtains the evaluation and test project of user's typing
Project information be sent to server, described project information includes: pollutant type, the different source strength of pollutant, item location,
Project pollution processes technique;Described server determines seeking scope according to described pollutant type, according to described item location with
And described seeking scope, search pollution prediction value corresponding with described pollutant type in periphery project, project pollutant prison
Measured value, and obtain the positional information of periphery project, obtain and described pollution according to described item location and described seeking scope
The regional pollution thing monitor value that species type is corresponding;Described server is for different pollutant types, according to described project information,
By the mathematical model corresponding with described pollutant type, it is calculated the pollution prediction value of described evaluation and test project;Described clothes
Business device is for different pollutant types, in conjunction with item location and the positional information of periphery project of described evaluation and test project, by institute
The pollution prediction value of commentary survey project superposes with the pollution prediction value of described periphery project and obtains superposition predictive value, by described
The pollution prediction value of evaluation and test project superposes with the project pollutant monitoring value of described periphery project and obtains project superposition monitor value,
The pollution prediction value of described evaluation and test project is superposed with described regional pollution thing monitor value and obtains region superposition monitor value, and will
Described superposition predictive value, described project superposition monitor value, described region superposition monitor value are sent to described terminal.
The environmental pollution overlap-add procedure system that the present invention provides, combines the environmental impact assessment knot of test and appraisal project peripheries institute record entry
Really, by the mathematical model corresponding to pollution type, by single project predict the outcome respectively with periphery project forecast result, week
Limit project monitoring value, neighboring area detected value are overlapped, and obtain more fully evaluation result, thus more science must calculate
The addition of the evaluated and tested project impact on surrounding area.
Preferably, described pollutant type includes water pollution, gaseous contamination, sound pollution;For different pollution species
Type, in conjunction with item location and the positional information of periphery project of described evaluation and test project, by the pollution prediction of described evaluation and test project
Value is overlapped calculating with the pollution prediction value of described periphery project, and output evaluation and test project is folded for different pollutant types
Add predictive value, including: combine item location and the positional information of periphery project of described evaluation and test project, according to described test and appraisal project
The water pollution prediction value of water pollution prediction value and described periphery project be overlapped calculating, the water obtaining described evaluation and test project is dirty
The superposition predictive value of dye;In conjunction with item location and the positional information of periphery project of described evaluation and test project, according to described test and appraisal item
Purpose gaseous contamination predictive value is overlapped calculating with the gaseous contamination predictive value of described periphery project, obtains described evaluation and test project
The superposition predictive value of gaseous contamination;In conjunction with item location and the positional information of periphery project of described evaluation and test project, according to institute
The sound pollution predictive value of the sound pollution predictive value and described periphery project of stating test and appraisal project is overlapped calculating, and obtains described
The superposition predictive value of the sound pollution of evaluation and test project.
Preferably, item location and the positional information of periphery project of project is evaluated and tested described in described combination, according to described survey
Comment the water pollution prediction value of project and the water pollution prediction value of described periphery project to be overlapped calculating, obtain described evaluation and test project
The superposition predictive value that pollutes of water, including: according to the positional information of the item location of described evaluation and test project with described periphery project,
Calculate the distance between described evaluation and test project and described periphery project;By described distance and the water pollution prediction of described periphery project
Value input solution concentration calculates formula, obtains described periphery project water pollution prediction value at described evaluation and test project;Will be all
Periphery project water pollution prediction value at described evaluation and test project is overlapped with the water pollution prediction value of described evaluation and test project,
Superposition water pollution prediction value to described evaluation and test project.
Preferably, item location and the positional information of periphery project of project is evaluated and tested described in described combination, according to described survey
Comment the gaseous contamination predictive value of project and the gaseous contamination predictive value of described periphery project to be overlapped calculating, obtain described evaluation and test
The superposition predictive value of the gaseous contamination of project, including: the gaseous contamination choosing described test and appraisal project under identical meteorological condition is pre-
Measured value is added with the gaseous contamination predictive value of described periphery project, obtains the superposition gaseous contamination predictive value of described evaluation and test project.
Preferably, described gaseous contamination predictive value includes: gaseous contamination hour maximum, the average daily maximum of gaseous contamination,
Gaseous contamination year average.
Preferably, item location and the positional information of periphery project of project is evaluated and tested described in described combination, according to described survey
Comment the sound pollution predictive value of project and the sound pollution predictive value of described periphery project to be overlapped calculating, obtain described evaluation and test
The superposition predictive value of the sound pollution of project, including: according to the item location of described evaluation and test project, obtain described evaluation and test project week
A range of sensitive spot position, limit;Item location according to described evaluation and test project and the positional information of described periphery project,
Calculate the distance of described evaluation and test project and described periphery project to sensitive spot position respectively;According to described evaluation and test project and described week
Limit project, to the distance of sensitive spot position, obtains described evaluation and test project and the described periphery project sound pollution in sensitive spot position
Predictive value;Described evaluation and test project is overlapped at the sound pollution predictive value of sensitive spot position with all periphery projects, it is thus achieved that
In the described evaluation and test project superimposed noise pollution prediction value in sensitive spot position.
Preferably, the described distance according to described evaluation and test project with described periphery project to sensitive spot position, obtain described
Evaluation and test project and the described periphery project sound pollution predictive value in sensitive spot position, including: according to described evaluation and test project and institute
State the periphery project distance to sensitive spot position, in conjunction with the landform around sensitive spot position, obtain described evaluation and test project with described
Periphery project is at the sound pollution predictive value of sensitive spot position.
Preferably, described determine seeking scope according to described pollutant type, according to described item location and described in look into
Look for scope, search pollution prediction value corresponding with described pollutant type in periphery project, project pollutant monitoring value, and obtain
Take the positional information of periphery project, obtain corresponding with described pollutant type according to described item location and described seeking scope
Regional pollution thing monitor value, including: determine seeking scope according to described pollutant type, according to described item location and institute
State seeking scope, pollution prediction value corresponding with described pollutant type in combining geographic information system searching periphery project,
Project pollutant monitoring value, and obtain the positional information of periphery project, according to described item location and described seeking scope, knot
Close GIS-Geographic Information System and obtain the regional pollution thing monitor value corresponding with described pollutant type.
Preferably, the form of described project information is the raster data that the model recommended according to Chinese Ministry of Environmental Protection is formed.
Second aspect, a kind of environmental pollution overlap-add procedure system that the embodiment of the present invention provides, including: project information typing
Module, for obtaining the project information of the evaluation and test project of user's typing, described project information includes: pollutant type, different dirt
The dye source strength of thing, item location, project pollution process technique;Periphery project searches module, for according to described pollutant type
Determine seeking scope, according to described item location and described seeking scope, with described pollutant type in lookup periphery project
The pollution prediction value of correspondence, project pollutant monitoring value, and obtain the positional information of periphery project, according to described item location
And described seeking scope obtains the regional pollution thing monitor value corresponding with described pollutant type;Pollution prediction value calculates mould
Block, for for different pollutant types, according to described project information, by the mathematical modulo corresponding with described pollutant type
Type, is calculated the pollution prediction value of described evaluation and test project;Pollution prediction value laminating module, for for different pollutant
Type, in conjunction with item location and the positional information of periphery project of described evaluation and test project, by pre-for the pollutant of described evaluation and test project
Measured value superposes with the pollution prediction value of described periphery project and obtains superposition predictive value, by the pollution prediction of described evaluation and test project
Value superposes with the project pollutant monitoring value of described periphery project and obtains project superposition monitor value, by the pollution of described evaluation and test project
Thing predictive value superposes with described regional pollution thing monitor value and obtains region superposition monitor value, and by described superposition predictive value, described
Project superposition monitor value, described region superposition monitor value are sent to described terminal.
The environmental pollution overlap-add procedure system that the present invention provides, combines the environmental impact assessment knot of test and appraisal project peripheries institute record entry
Really, by the mathematical model corresponding to pollution type, by single project predict the outcome respectively with periphery project forecast result, week
Limit project monitoring value, neighboring area detected value are overlapped, and obtain more fully evaluation result, thus more science must calculate
The addition of the evaluated and tested project impact on surrounding area.
Accompanying drawing explanation
Fig. 1 is the flow chart of a kind of environmental pollution superposition processing method that the embodiment of the present invention is provided;
Fig. 2 is the structured flowchart of a kind of environmental pollution overlap-add procedure system that the embodiment of the present invention is provided;
Fig. 3 is the flow chart of a kind of environmental pollution superposition processing method that the embodiment of the present invention is provided;
Fig. 4 is the structural representation of the server with refrigerating function that the embodiment of the present invention is provided.
Detailed description of the invention
Below in conjunction with accompanying drawing, the embodiment of technical solution of the present invention is described in detail.Following example are only used for
Technical scheme is clearly described, is therefore intended only as example, and the protection of the present invention can not be limited with this
Scope.
It should be noted that except as otherwise noted, technical term used in this application or scientific terminology should be this
The ordinary meaning that bright one of ordinary skill in the art are understood.
As it is shown in figure 1, the present invention implements a kind of environmental pollution superposition processing method provided, including:
Step S1, the project information of the evaluation and test project that terminal obtains user's typing is sent to server, and project information includes:
Pollutant type, the different source strength of pollutant, item location, project pollution process technique.
Wherein, the form of project information is the raster data that the model recommended according to Chinese Ministry of Environmental Protection is formed.
Step S2, server determines seeking scope according to pollutant type, according to item location and seeking scope, searches
Pollution prediction value corresponding with pollutant type in periphery project, and obtain the positional information of periphery project.
Wherein, different seeking scopes is chosen according to different pollutant types.Seeking scope can be entered according to practical situation
Row sets.Periphery project comprise built, building, normally go into operation, the project of the different phase such as trial production.
Step S3, server is for different pollutant types, according to project information, by corresponding with pollutant type
Mathematical model, is calculated the pollution prediction value of evaluation and test project.
Wherein, the mathematical model for different pollutant types is chosen the recommended correlation model of Chinese Ministry of Environmental Protection's guiding principles for environmental evaluation and is carried out
Calculate so that the data obtained by this method meet relevant national standard.Water pollution prediction model is based on two-dimensional steady-state model
As the built-in model of system, support that other model datas import.Air Pollution Forecasting model selection is based on AERMOD model.Noise
Model in pollution prediction model selection " environmental impact assessment fire protection technology-acoustic environment " HJ 2.4-2009.
Step S4, server is for different pollutant types, in conjunction with the item location of evaluation and test project and periphery project
Positional information, is overlapped calculating with the pollution prediction value of periphery project by the pollution prediction value of evaluation and test project, and output is commented
Survey project returns to terminal for the superposition predictive value of different pollutant types.
The environmental pollution superposition processing method that the embodiment of the present invention provides, combines test and appraisal project peripheries institute record entry
Environmental impact assessment result, by the mathematical model corresponding to pollution type, predicting the outcome single project and periphery project forecast result
Be overlapped, thus more scientifically calculate evaluation and test project add impact on surrounding area.
Pollutant type includes water pollution, gaseous contamination, sound pollution.
Polluting for water, step S4 includes: combine item location and the positional information of periphery project of evaluation and test project, according to
The water pollution prediction value of test and appraisal project and the water pollution prediction value of periphery project are overlapped calculating, and the water obtaining evaluation and test project is dirty
The superposition predictive value of dye.In order to accurately obtain the impact on the water quality in whole region that adds of evaluation and test project, needs
The sewage discharge situation of each project of comprehensive evaluating project periphery, it is contemplated that the sewage of discharge partial contamination in flow process
Thing can be degraded, along with the concentration increasing pollutant in basin also can reduce, after considering above-mentioned situation, further, and step
The optimal way of rapid S4 includes: according to the positional information of the item location of evaluation and test project with periphery project, calculate evaluation and test project with
Distance between periphery project;The water pollution prediction value of distance and periphery project is inputted solution concentration and calculates formula, obtain week
Limit project water pollution prediction value at evaluation and test project;By all periphery projects evaluation and test project at water pollution prediction value with comment
The water pollution prediction value of survey project is overlapped, and obtains the superposition water pollution prediction value of evaluation and test project.Above-mentioned calculation be
Assume what solute will not be carried out on the premise of producing chemical reaction because of mixing.
Wherein, it is the formula with distance dependent that solution concentration calculates formula, the input concentration of starting point and distance
Solution concentration value to terminal.Further, solution concentration calculates formula and also needs to consider the practical situation of river course network, permissible
Obtained the river channel information of periphery by GIS-Geographic Information System, by setting up model emulation, to obtain the solution of more compound practical situation dense
Degree computing formula, to improve the accuracy of result of calculation.
For gaseous contamination, step S4 includes: combine item location and the positional information of periphery project, the root of evaluation and test project
It is overlapped calculating with the gaseous contamination predictive value of periphery project according to the gaseous contamination predictive value of test and appraisal project, obtains evaluation and test project
The superposition predictive value of gaseous contamination.Owing to gas is under different meteorological conditions, volume can change, in order to ensure superposition
Calculate the accuracy of data, be chosen at the data under identical meteorological condition, and enter based on equation for ideal gases pV=nRT
Row calculates, and optimal way based on above-mentioned thought step S4 includes: choose the gas dirt of test and appraisal project under identical meteorological condition
Dye predictive value is added with the gaseous contamination predictive value of periphery project, obtains the superposition gaseous contamination predictive value of evaluation and test project.Wherein,
Gaseous contamination predictive value includes: gaseous contamination hour maximum, the average daily maximum of gaseous contamination, gaseous contamination year average.
For sound pollution, step S4 includes: combine item location and the positional information of periphery project, the root of evaluation and test project
It is overlapped calculating with the sound pollution predictive value of periphery project according to the sound pollution predictive value of test and appraisal project, obtains evaluation and test project
The superposition predictive value of sound pollution.In sound pollution is tested and assessed, mainly consider the impact on sensitive spot position, such as school, doctor
The place such as institute, residential quarter, it is also contemplated that the factors such as noise decay in communication process, further, and step S4 preferred
Mode includes: according to the item location of evaluation and test project, obtains evaluation and test project periphery a range of sensitive spot position;According to commenting
The item location of survey project and the positional information of periphery project, calculate evaluation and test project with periphery project respectively to sensitive spot position
Distance;According to the distance of evaluation and test project with periphery project to sensitive spot position, obtain evaluation and test project with periphery project at sensitive spot
The sound pollution predictive value of position;Evaluation and test project is carried out at the sound pollution predictive value of sensitive spot position with all periphery projects
Superposition, it is thus achieved that in the evaluation and test project superimposed noise pollution prediction value in sensitive spot position.
Owing to noise is in communication process, fairly obvious by decaying after the stop of barrier, therefore calculate superimposed noise
During predictive value, it is considered to the problem of distance is far from being enough, in addition it is also necessary to combine concrete landform, as between project and sensitive spot position
Mountain region, the woods, buildings etc. whether are had to stop.Concrete topographic features can be obtained by inquiry GIS-Geographic Information System.
In order to obtain the positional information of periphery project more accurately, the optimal way of step S2 includes: according to item location,
Pollution prediction value corresponding with pollutant type in combining geographic information system searching periphery project, and obtain periphery project
Positional information.
Some area, equipped with the on-line monitoring equipment of environment, is detected in real time, and the detected value of pollutant is relative to pollution
Thing predictive value is with more reacting real pollution condition, and therefore, the embodiment of the present invention additionally provides at a kind of environmental pollution superposition
Reason method, as it is shown on figure 3, include:
Step S10, the project information of the evaluation and test project that terminal obtains user's typing is sent to server, project information bag
Include: pollutant type, the different source strength of pollutant, item location, project pollution process technique;
Step 20, server determines seeking scope according to pollutant type, according to item location and seeking scope, searches
Pollution prediction value corresponding with pollutant type in periphery project, project pollutant monitoring value, and obtain the position of periphery project
Confidence ceases, and obtains the regional pollution thing monitor value corresponding with pollutant type according to item location and seeking scope;
Step S30, server is for different pollutant types, according to project information, by corresponding with pollutant type
Mathematical model, be calculated the pollution prediction value of evaluation and test project;
Step S40, server is for different pollutant types, in conjunction with the item location of evaluation and test project and periphery project
Positional information, superposes the pollution prediction value of evaluation and test project with the pollution prediction value of periphery project and obtains superposition predictive value,
The pollution prediction value of evaluation and test project is superposed with the project pollutant monitoring value of periphery project and obtains project superposition monitor value, will
The pollution prediction value of evaluation and test project superposes with regional pollution thing monitor value and obtains region superposition monitor value, and superposition is predicted
Value, project superposition monitor value, region superposition monitor value are sent to terminal.
The environmental pollution overlap-add procedure system that the present invention provides, combines the environmental impact assessment knot of test and appraisal project peripheries institute record entry
Really, by the mathematical model corresponding to pollution type, by single project predict the outcome respectively with periphery project forecast result, week
Limit project monitoring value, neighboring area detected value are overlapped, and obtain more fully evaluation result, thus more science must calculate
The addition of the evaluated and tested project impact on surrounding area.
Based on the inventive concept identical with above-mentioned environmental pollution superposition processing method, embodiments provide a kind of ring
Environment pollution overlap-add procedure system, including: project information typing module 101, for obtaining the project of the evaluation and test project of user's typing
Information, project information includes: pollutant type, the different source strength of pollutant, item location, project pollution process technique;Periphery
Project searches module 102, for determining seeking scope according to pollutant type, according to item location and seeking scope, searches
Pollution prediction value corresponding with pollutant type in periphery project, project pollutant monitoring value, and obtain the position of periphery project
Confidence ceases, and obtains the regional pollution thing monitor value corresponding with pollutant type according to item location and seeking scope;Pollute pre-
Measured value computing module 103, for for different pollutant types, according to project information, by corresponding with pollutant type
Mathematical model, is calculated the pollution prediction value of evaluation and test project;Pollution prediction value laminating module 104, for for different
Pollutant type, in conjunction with item location and the positional information of periphery project of evaluation and test project, by the pollution prediction of evaluation and test project
Value superposes with the pollution prediction value of periphery project and obtains superposition predictive value, by pollution prediction value and the periphery item of evaluation and test project
Purpose project pollutant monitoring value superposition obtains project superposition monitor value, by pollution prediction value and the regional pollution of evaluation and test project
Thing monitor value superposition obtains region superposition monitor value, and superposition predictive value, project superposition monitor value, region superposition monitor value is sent out
Give terminal.
The environmental pollution overlap-add procedure system that the embodiment of the present invention provides, combines test and appraisal project peripheries institute record entry
Environmental impact assessment result, by the mathematical model corresponding to pollution type, by single project predict the outcome respectively with periphery project forecast
Result, periphery project monitoring value, neighboring area detected value are overlapped, and obtain more fully evaluation result, thus more science
Must calculate evaluated and tested project adds the impact on surrounding area.
Above-mentioned environmental pollution superposition processing method and the stable operation of system, on the one hand rely on high performance server,
The most closely related with the reliability service of server, once server fail, environmental pollution overlap-add procedure will be caused
The result that method obtains makes a mistake, or the persistence that method is run can not obtain guarantee.Therefore, in order to improve operation efficiency and
The stability that method is run, obtains data accurately faster, and the embodiment of the present invention uses has refrigerating function shown in Fig. 3
Server, indirectly improve the operation stability of said method and system with the structure by improving server.
In Fig. 3, the implication that each reference represents is as follows;1, housing;2, pcb board;
11, cooling fan;12, defecator;13, cooling line;14, sliding axle;15, valve plate;16, gas outlet;17, line
Circle;19, spring support;20, exhaust outlet;21, coil fixing body;22, electronic component;23, spring.
Server includes housing 1 and pcb board 2, and first of pcb board 2 is provided with electronic component 22, and pcb board is provided with
For electrically connecting the electronic circuit of electronic component 22, electronic circuit being in series with the coil 17 of electrically operated valve, coil 17 is set in
On the coil fixing body 21 being connected fixing with valve plate 15, when coil 17 is moved, coil fixing body 21 also can drive valve plate
15 are moved, and coil 17 is arranged in magnetic field, and the direction in magnetic field is represented by ⊙ in the drawings, and magnetic field can be produced by U magnet,
Magnetic field is for controlling the valve core movement openings of sizes with change electrically operated valve, and it is axial that the magnetic induction line in magnetic field is perpendicular to coil, electricity
The opening part of movable valve is provided with the spring 23 being connected with valve plate 15, and spring 23 is set on sliding axle 14, sliding axle 14 also with
Valve plate 15 is fixing to be connected, and the other end of spring 23 is against on the spring support 19 being fixedly mounted on cooling line 13, spring 23
For promoting valve plate 15 to close the opening of electrically operated valve, electrically operated valve is arranged on cooling line 13, giving vent to anger of electrically operated valve
Mouthful 16 setting directions are so that the air-flow sprayed by opening sprays towards electronic component 22, and cooling line 13 is positioned at the of pcb board 2
Two sides, second is the reverse side of first, and cooling line 13 occurs with cooling gas input device or cooling gas
Device connects.
Wherein the air inlet of cooling line 13 uses the mode from housing external admission, particularly, by cooling gas inlet
Device air inlet, through defecator 12, then has cooling fan 11 to be blown in cooling line 13.
When using gas produced by the cooling gas or cooling gas generating unit introduced from the external world, pass through pipeline
The electronic component 22 importing to heating is other, it is possible to use temperature lower, the most heated by other electronic component 22
These electronic components 22 are cooled down by cooling gas, and cooling effect is more preferable, and rate of cooling faster, is beneficial to realize electricity
The temperature of sub-element 22 maintains in lower level.And, by coil 17 being connected in series to circuit board in order to connect electronics unit
In the circuit of part 22, when electronic component 22 more needs to dispel the heat, and all thermal powers produced by it, derive from electrical power, and
Electrical power is the biggest, and its electric current is the biggest, so coil 17 can produce bigger active force, band moving winding fixing body 21 and valve
The plate 15 right side in figure is moved, to resist elastic force produced by spring 23.When bigger elastic force can be produced, its elastic shape
Becoming the biggest so that the opening of electrically operated valve is the biggest, the flow of the cooling gas that it can pass through is the biggest, and cooling capacity is more
By force.It is achieved thereby that the different cooling effects of the electronic component 22 for different operating temperature, or for same electronic component 22,
Different cooling effects when different temperatures, thus improve cooling gas input device or cooling gas generating unit exists
Import work efficiency during equal number cooling gas, improve cooling capacity.
Last it is noted that various embodiments above is only in order to illustrate technical scheme, it is not intended to limit;To the greatest extent
The present invention has been described in detail by pipe with reference to foregoing embodiments, it will be understood by those within the art that: it depends on
So the technical scheme described in foregoing embodiments can be modified, or the most some or all of technical characteristic is entered
Row equivalent;And these amendments or replacement, do not make the essence of appropriate technical solution depart from various embodiments of the present invention technology
The scope of scheme, it all should be contained in the middle of the claim of the present invention and the scope of description.
Claims (10)
1. an environmental pollution superposition processing method, it is characterised in that including:
The project information of the evaluation and test project that terminal obtains user's typing is sent to server, and described project information includes: pollutant
Type, the different source strength of pollutant, item location, project pollution process technique;
Described server determines seeking scope according to described pollutant type, according to described item location and described lookup model
Enclose, search pollution prediction value corresponding with described pollutant type in periphery project, project pollutant monitoring value, and obtain week
The positional information of limit project, obtains the district corresponding with described pollutant type according to described item location and described seeking scope
Territory pollutant monitoring value;
Described server is for different pollutant types, according to described project information, by corresponding with described pollutant type
Mathematical model, be calculated the pollution prediction value of described evaluation and test project;
Described server is for different pollutant types, in conjunction with item location and the periphery item destination locations of described evaluation and test project
Information, superposes the pollution prediction value of described evaluation and test project with the pollution prediction value of described periphery project and obtains superposition prediction
Value, superposes the pollution prediction value of described evaluation and test project with the project pollutant monitoring value of described periphery project and obtains project and fold
Add monitor value, the pollution prediction value of described evaluation and test project is superposed with described regional pollution thing monitor value and obtains region superposition prison
Measured value, and described superposition predictive value, described project superposition monitor value, described region superposition monitor value are sent to described terminal.
Method the most according to claim 1, it is characterised in that described pollutant type includes water pollution, gaseous contamination, makes an uproar
Sound pollution;
For different pollutant types, in conjunction with item location and the positional information of periphery project of described evaluation and test project, by institute
The pollution prediction value of commentary survey project superposes with the pollution prediction value of described periphery project and obtains superposition predictive value, including:
In conjunction with item location and the positional information of periphery project of described evaluation and test project, pollute pre-according to the water of described test and appraisal project
Measured value is overlapped calculating with the water pollution prediction value of described periphery project, and the superposition of the water pollution obtaining described evaluation and test project is pre-
Measured value;
In conjunction with item location and the positional information of periphery project of described evaluation and test project, according to the gaseous contamination of described test and appraisal project
Predictive value is overlapped calculating with the gaseous contamination predictive value of described periphery project, obtains the gaseous contamination of described evaluation and test project
Superposition predictive value;
In conjunction with item location and the positional information of periphery project of described evaluation and test project, according to the sound pollution of described test and appraisal project
Predictive value is overlapped calculating with the sound pollution predictive value of described periphery project, obtains the sound pollution of described evaluation and test project
Superposition predictive value.
Method the most according to claim 2, it is characterised in that evaluate and test item location and the periphery of project described in described combination
The positional information of project, is carried out with the water pollution prediction value of described periphery project according to the water pollution prediction value of described test and appraisal project
Superposition calculation, obtains the superposition predictive value that the water of described evaluation and test project pollutes, including:
Item location according to described evaluation and test project and the positional information of described periphery project, calculate described evaluation and test project with described
Distance between periphery project;
The water pollution prediction value of described distance and described periphery project is inputted solution concentration and calculates formula, obtain described periphery item
Mesh water pollution prediction value at described evaluation and test project;
Water pollution prediction value by all periphery projects water pollution prediction value at described evaluation and test project Yu described evaluation and test project
It is overlapped, obtains the superposition water pollution prediction value of described evaluation and test project.
Method the most according to claim 2, it is characterised in that evaluate and test item location and the periphery of project described in described combination
The positional information of project, according to gaseous contamination predictive value and the gaseous contamination predictive value of described periphery project of described test and appraisal project
It is overlapped calculating, obtains the superposition predictive value of the gaseous contamination of described evaluation and test project, including: choose under identical meteorological condition
The gaseous contamination predictive value of described test and appraisal project is added with the gaseous contamination predictive value of described periphery project, obtains described evaluation and test item
Purpose superposition gaseous contamination predictive value.
Method the most according to claim 4, it is characterised in that described gaseous contamination predictive value includes: gaseous contamination hour
Maximum, the average daily maximum of gaseous contamination, gaseous contamination year average.
Method the most according to claim 2, it is characterised in that evaluate and test item location and the periphery of project described in described combination
The positional information of project, according to sound pollution predictive value and the sound pollution predictive value of described periphery project of described test and appraisal project
It is overlapped calculating, obtains the superposition predictive value of the sound pollution of described evaluation and test project, including:
According to the item location of described evaluation and test project, obtain described evaluation and test project periphery a range of sensitive spot position;
The positional information of the item location according to described evaluation and test project and described periphery project, calculate respectively described evaluation and test project with
Described periphery project is to the distance of sensitive spot position;
According to the distance of described evaluation and test project with described periphery project to sensitive spot position, obtain described evaluation and test project and described week
Limit project is at the sound pollution predictive value of sensitive spot position;
Described evaluation and test project is overlapped at the sound pollution predictive value of sensitive spot position with all periphery projects, it is thus achieved that in institute
The project superimposed noise pollution prediction value in sensitive spot position is surveyed in commentary.
Method the most according to claim 6, it is characterised in that described arrive with described periphery project according to described evaluation and test project
The distance of sensitive spot position, obtains described evaluation and test project and the described periphery project sound pollution predictive value in sensitive spot position,
Including: according to the distance of described evaluation and test project with described periphery project to sensitive spot position, in conjunction with the ground around sensitive spot position
Shape, obtains described evaluation and test project and the described periphery project sound pollution predictive value in sensitive spot position.
Method the most according to claim 1, it is characterised in that described determine seeking scope according to described pollutant type,
According to described item location and described seeking scope, search pollutant corresponding with described pollutant type in periphery project pre-
Measured value, project pollutant monitoring value, and obtain the positional information of periphery project, according to described item location and described lookup model
Enclose and obtain the regional pollution thing monitor value corresponding with described pollutant type, including: determine lookup according to described pollutant type
Scope, according to described item location and described seeking scope, with described dirt in combining geographic information system searching periphery project
Dye pollution prediction value corresponding to species type, project pollutant monitoring value, and obtain the positional information of periphery project, according to described
Item location and described seeking scope, combining geographic information system obtains the regional pollution thing corresponding with described pollutant type
Monitor value.
Method the most according to claim 1, it is characterised in that the form of described project information is to recommend according to Chinese Ministry of Environmental Protection
The raster data that model is formed.
10. an environmental pollution overlap-add procedure system, it is characterised in that including:
Project information typing module, for obtaining the project information of the evaluation and test project of user's typing, described project information includes: dirty
Dye species type, the different source strength of pollutant, item location, project pollution process technique;
Periphery project searches module, for determining seeking scope according to described pollutant type, according to described item location and
Described seeking scope, searches pollution prediction value corresponding with described pollutant type in periphery project, project pollutant monitoring
Value, and obtain the positional information of periphery project, obtain and described pollutant according to described item location and described seeking scope
The regional pollution thing monitor value that type is corresponding;
Pollution prediction value computing module, for for different pollutant types, according to described project information, by with described dirt
The mathematical model that dye species type is corresponding, is calculated the pollution prediction value of described evaluation and test project;
Pollution prediction value laminating module, for for different pollutant types, in conjunction with described evaluation and test project item location and
The positional information of periphery project, folds the pollution prediction value of the pollution prediction value of described evaluation and test project with described periphery project
Add and obtain superposition predictive value, by the project pollutant monitoring value of the pollution prediction value of described evaluation and test project Yu described periphery project
Superposition obtains project superposition monitor value, the pollution prediction value of described evaluation and test project is superposed with described regional pollution thing monitor value
Obtain region superposition monitor value, and described superposition predictive value, described project superposition monitor value, described region superposition monitor value are sent out
Give described terminal.
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| US6530259B1 (en) * | 1993-11-08 | 2003-03-11 | Fedd Systems, Inc. | Fugitive emissions detection system and components thereof |
| CN104462702A (en) * | 2014-12-18 | 2015-03-25 | 宁夏大学 | Regional economy, pollution and environment three-dimensional monitoring system and method |
| CN205080114U (en) * | 2015-10-14 | 2016-03-09 | 宋庆国 | Portable pollution sources monitoring system based on satellite positioning |
| CN105809284A (en) * | 2016-03-07 | 2016-07-27 | 华侨大学 | Offshore area water environment evaluation and emergency early warning system |
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Patent Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US6530259B1 (en) * | 1993-11-08 | 2003-03-11 | Fedd Systems, Inc. | Fugitive emissions detection system and components thereof |
| CN104462702A (en) * | 2014-12-18 | 2015-03-25 | 宁夏大学 | Regional economy, pollution and environment three-dimensional monitoring system and method |
| CN205080114U (en) * | 2015-10-14 | 2016-03-09 | 宋庆国 | Portable pollution sources monitoring system based on satellite positioning |
| CN105809284A (en) * | 2016-03-07 | 2016-07-27 | 华侨大学 | Offshore area water environment evaluation and emergency early warning system |
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