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Fundamentals of Direct Inverse CFD Modeling to Detect Air Pollution Sources in Urban Areas 被引量:1

Fundamentals of Direct Inverse CFD Modeling to Detect Air Pollution Sources in Urban Areas
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摘要 This paper presents the fundamentals of direct inverse modeling using CFD simulations to detect air pollution sources in urban areas. Generally, there are four techniques used for detecting pollution sources: the analytical technique, the optimization technique, the probabilistic technique, and the direct technique. The study discusses the potentialities and limits of each technique, where the direct inverse technique is focused. Two examples of applying the direct inverse technique in detecting pollution source are introduced. The difficulties of applying the direct inverse technique are investigated. The study reveals that the direct technique is a promising tool for detecting air pollution source in urban environments. However, more efforts are still needed to overcome the difficulties explained in the study. This paper presents the fundamentals of direct inverse modeling using CFD simulations to detect air pollution sources in urban areas. Generally, there are four techniques used for detecting pollution sources: the analytical technique, the optimization technique, the probabilistic technique, and the direct technique. The study discusses the potentialities and limits of each technique, where the direct inverse technique is focused. Two examples of applying the direct inverse technique in detecting pollution source are introduced. The difficulties of applying the direct inverse technique are investigated. The study reveals that the direct technique is a promising tool for detecting air pollution source in urban environments. However, more efforts are still needed to overcome the difficulties explained in the study.
作者 Mahmoud Bady
出处 《Computational Water, Energy, and Environmental Engineering》 2013年第2期31-42,共12页 水能与环境工程(英文)
关键词 INVERSE Modeling OUTDOOR Environments REVERSE Simulation CFD Inverse Modeling Outdoor Environments Reverse Simulation CFD
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