Long Shicheng, Zhu Yun, Jang Carey, Lin Che-Jen, Wang Shuxiao, Zhao Bin, Gao Jian, Deng Shuang, Xie Junping, Qiu Xuezhen
School of Environment and Energy, South China University of Technology, Guangzhou Higher Education Mega Center, Guangzhou 510006, China.
School of Environment and Energy, South China University of Technology, Guangzhou Higher Education Mega Center, Guangzhou 510006, China.
J Environ Sci (China). 2016 Mar;41:69-80. doi: 10.1016/j.jes.2015.05.019. Epub 2015 Jul 26.
This article describes the development and application of a streamlined air control and response modeling system with a novel response surface modeling-linear coupled fitting method and a new module to provide streamlined model data for PM2.5 attainment assessment in China. This method is capable of significantly reducing the dimensions required to establish a response surface model, as well as capturing more realistic response of PM2.5 to emission changes with a limited number of model simulations. The newly developed module establishes a data link between the system and the Software for Model Attainment Test-Community Edition (SMAT-CE), and has the ability to rapidly provide model responses to emission control scenarios for SMAT-CE using a simple interface. The performance of this streamlined system is demonstrated through a case study of the Yangtze River Delta (YRD) in China. Our results show that this system is capable of reproducing the Community Multi-Scale Air Quality (CMAQ) model simulation results with maximum mean normalized error<3.5%. It is also demonstrated that primary emissions make a major contribution to ambient levels of PM2.5 in January and August (e.g., more than 50% contributed by primary emissions in Shanghai), and Shanghai needs to have regional emission control both locally and in its neighboring provinces to meet China's annual PM2.5 National Ambient Air Quality Standard. The streamlined system provides a real-time control/response assessment to identify the contributions of major emission sources to ambient PM2.5 (and potentially O3 as well) and streamline air quality data for SMAT-CE to perform attainment assessments.
本文介绍了一种简化的空气控制与响应建模系统的开发与应用,该系统采用了新颖的响应面建模 - 线性耦合拟合方法以及一个新模块,旨在为中国细颗粒物(PM2.5)达标评估提供简化的模型数据。此方法能够显著减少建立响应面模型所需的维度,同时在有限数量的模型模拟中捕捉PM2.5对排放变化更实际的响应。新开发的模块在该系统与《模型达标测试 - 社区版软件》(SMAT - CE)之间建立了数据链接,并能够通过简单界面快速为SMAT - CE提供排放控制情景的模型响应。通过对中国长江三角洲(YRD)的案例研究展示了这个简化系统的性能。我们的结果表明,该系统能够以最大平均归一化误差<3.5%再现社区多尺度空气质量(CMAQ)模型的模拟结果。研究还表明,一次排放对1月和8月的PM2.5环境浓度贡献重大(例如,上海超过50%的贡献来自一次排放),上海需要在本地及其周边省份进行区域排放控制,以达到中国的年度PM2.5国家环境空气质量标准。这个简化系统提供实时控制/响应评估,以确定主要排放源对环境PM2.5(以及潜在的臭氧)的贡献,并为SMAT - CE简化空气质量数据以进行达标评估。