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AERCOARE: An overwater meteorological preprocessor for AERMOD

机译:AERCOARE:AERMOD的水上气象预处理器

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摘要

AERCOARE is a meteorological data preprocessor for the American Meteorological Society and U.S Environmental Protection Agency (EPA) Regulatory Model (AERMOD). AERCOARE includes algorithms developed during the Coupled-Ocean Atmosphere Response Experiment (COARE) to predict surface energy fluxes and stability from routine overwater measurements. The COARE algorithm is described and the implementation in AERCOARE is presented. Model performance for the combined AERCOARE-AERMOD modeling approach was evaluated against tracer measurements from four overwater field studies. Relatively better model performance was found when lateral turbulence measurements were available and when several key input variables to AERMOD were constrained. Namely, requiring the mixed layer height to be greater than 25 m and not allowing the Monin Obukhov length to be less than 5 m improved model performance in low wind speed stable conditions. Several options for low wind speed dispersion in AERMOD also affected the model performance results. Model performance for the combined AERCOARE-AERMOD modeling approach was found to be comparable to the current EPA regulatory Offshore Coastal Model (OCD) for the same tracer studies. AERCOARE-AERMOD predictions were also compared to simulations using the California Puff-Advection Model (CALPUFF) that also includes the COARE algorithm. Many model performance measures were found to be similar, but CALPUFF had significantly less scatter and better performance for one of the four field studies. For many offshore regulatory applications, the combined AERCOARE-AERMOD modeling approach was found to be a viable alternative to OCD the currently recommended model.Implications: A new meteorological preprocessor called AERCOARE was developed for offshore source dispersion modeling using the U.S. Environmental Protection Agency (EPA) regulatory model AERMOD. The combined AERCOARE-AERMOD modeling approach allows stakeholders to use the same dispersion model for both offshore and onshore applications. This approach could replace current regulatory practices involving two completely different modeling systems. As improvements and features are added to the dispersion model component, AERMOD, such techniques can now also be applied to offshore air quality permitting.
机译:AERCOARE是美国气象学会和美国环境保护局(EPA)监管模型(AERMOD)的气象数据预处理器。 AERCOARE包括在海洋耦合大气响应实验(COARE)期间开发的算法,可通过常规的水上测量来预测表面能通量和稳定性。描述了COARE算法,并介绍了在AERCOARE中的​​实现。针对来自四个水田研究的示踪剂测量,评估了组合的AERCOARE-AERMOD建模方法的模型性能。当可以利用横向湍流测量并且限制了AERMOD的几个关键输入变量时,发现相对较好的模型性能。即,要求混合层高度大于25 m,并且不允许Monin Obukhov长度小于5 m,从而在低风速稳定条件下改善了模型性能。 AERMOD中低风速散布的几个选项也影响了模型性能结果。对于相同的示踪剂研究,发现组合的AERCOARE-AERMOD建模方法的模型性能可与当前EPA监管的近海海岸模型(OCD)相比。还将AERCOARE-AERMOD的预测结果与使用还包含COARE算法的加利福尼亚吹气推进模型(CALPUFF)进行的模拟进行了比较。发现许多模型性能指标都相似,但是对于四个现场研究之一,CALPUFF的散布明显更少,性能更好。对于许多海上监管应用,发现结合使用AERCOARE-AERMOD建模方法可以替代当前推荐的OCD。 )监管模型AERMOD。组合的AERCOARE-AERMOD建模方法使涉众可以在海上和陆上应用程序中使用相同的分散模型。这种方法可以取代当前涉及两个完全不同的建模系统的监管惯例。随着对色散模型组件AERMOD的改进和功能的增加,这些技术现在也可以应用于海上空气质量许可。

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  • 来源
    《Journal of the air & waste management association》 |2016年第11期|1121-1140|共20页
  • 作者单位

    U.S. Environmental Protection Agency, Region 10, Seattle, WA, USA;

    U.S. Environmental Protection Agency, Region 10, 1200 6th Ave., Suite 900, Mail Stop: OERA-140, Seattle, WA, USA;

    Bureau of Ocean and Energy Management, U.S. Department of the Interior, Sterling, VA, USA;

    Ramboll Environ, Seattle, WA, USA;

    Amec Foster Wheeler Environment & Infrastructure, Inc., Durham, NC, USA;

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