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Estimating Exposure by Loose-Coupling an Air Dispersion Model and a Geospatial Information System

机译:通过空气散布模型和地理空间信息系统的松耦合估算暴露量

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The regulation of air quality is important for ensuring the health of a population. Current air quality decision support systems are very useful if the user possesses sufficient data to operate them and the necessary expertise to interpret their results. In general, these systems suffer as a result of their excessive complexity. The present study describes the development of a scalable air quality decision support system using the CALPUFF air dispersion model and a Geospatial Information System (GIS). This system uses receptor level exposure modeling and outputs from CALPUFF to estimate the relative impacts on human populations from multiple air pollution sources by calculating intake, defined as the amount of pollution that is inhaled by a population and intake fraction, defined as the fraction of pollutant emitted by a pollution source that is inhaled by a population. Unlike ground level pollution concentration, intake and intake fraction consider receptors and offer a more valuable estimate of pollution exposure, especially when faced with limited input data. The system also leverages the inherent strength of GIS to improve accessibility of geospatial data by generating maps of ground level pollutant concentration, intake, and intake fraction using graduated color schemes. This enables any user to identify potentially hazardous pollution sources and prioritize decisions such as development, maintenance, and decommission.
机译:空气质量调节对于确保人口健康非常重要。如果用户拥有足够的数据来操作它们并具有必要的专业知识来解释其结果,那么当前的空气质量决策支持系统将非常有用。通常,这些系统由于其过于复杂而遭受损失。本研究描述了使用CALPUFF空气扩散模型和地理空间信息系统(GIS)开发可扩展的空气质量决策支持系统。该系统使用受体水平暴露模型和CALPUFF的输出,通过计算摄入量(定义为人口吸入的污染量和摄入量分数,定义为污染物的分数),估算多种空气污染源对人类的相对影响。由人口吸入的污染源排放的。与地面污染浓度不同,进水口和进水口分数考虑受体,并提供更有价值的污染暴露评估,尤其是在输入数据有限的情况下。该系统还利用GIS的固有优势,通过使用渐变色方案生成地面污染物浓度,摄入量和摄入量比例图,从而改善了地理空间数据的可访问性。这使任何用户都可以识别潜在的危险污染源,并优先进行开发,维护和退役等决策。

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