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首页> 外文期刊>Journal of the air & waste management association >Conjunctive use of models to design cost-effective ozone control strategies
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Conjunctive use of models to design cost-effective ozone control strategies

机译:结合使用模型来设计具有成本效益的臭氧控制策略

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摘要

The management of tropospheric ozone (0,) is particularly difficult. The formulation of emission control strategies requires considerable information including: (1) emission inventories, (2) available control technologies, (3) meteorological data for critical design episodes, and (4) computer models that simulate atmospheric transport and chemistry. The simultaneous consideration of this information during control strategy design can be exceedingly difficult for a decision-maker. Traditional management approaches do not explicitly address cost minimization. This study presents a new approach for designing air quality management strategies; a simple air quality model is used conjunctively with a complex air quality model to obtain low-cost management strategies. A simple air quality model is used to identify potentially good solutions, and two heuristic methods are used to identify cost-effective control strategies using only a small number of simple air quality model simulations. Subsequently, the resulting strategies are verified and refined using a complex air quality model. The use of this approach may greatly reduce the number of complex air quality model runs that are required. An important component of this heuristic design framework is the use of the simple air quality model as a screening and exploratory tool. To achieve similar results with the simple and complex air quality models, it may be necessary to "tweak" or calibrate the simple model. A genetic algorithm-based optimization procedure is used to automate this tweaking process. These methods are demonstrated to be computationally practical using two realistic case studies, which are based on data from a metropolitan region in the United States.
机译:对流层臭氧(0)的管理特别困难。排放控制策略的制定需要大量信息,包括:(1)排放清单,(2)现有控制技术,(3)关键设计阶段的气象数据,以及(4)模拟大气传输和化学过程的计算机模型。对于决策者而言,在控制策略设计过程中同时考虑这些信息可能非常困难。传统的管理方法没有明确解决成本最小化问题。这项研究提出了一种设计空气质量管理策略的新方法。简单的空气质量模型与复杂的空气质量模型结合使用可获得低成本的管理策略。简单的空气质量模型用于识别潜在的好的解决方案,而两种启发式方法用于仅使用少量简单的空气质量模型模拟来确定具有成本效益的控制策略。随后,使用复杂的空气质量模型对所得策略进行验证和完善。使用这种方法可以大大减少所需的复杂空气质量模型运行的次数。该启发式设计框架的重要组成部分是使用简单的空气质量模型作为筛选和探索工具。为了通过简单和复杂的空气质量模型获得相似的结果,可能有必要“调整”或校准简单模型。基于遗传算法的优化过程可用于自动执行此调整过程。通过两个实际案例研究证明这些方法在计算上是实用的,这些案例研究均基于美国大都市地区的数据。

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