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A metamodelling implementation of a two-way coupled mesoscale-microscale flow model for urban area simulations

机译:用于城市模拟的双向耦合中尺度-微观尺度流模型的元模型实现

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摘要

Systems of coupled prognostic mesoscale and microscale models have been suggested as a tool to accurately simulate flows around artificial structures and over densely built urban areas. Implementations of such two-way coupling are burdened by scale mismatches as well as the formidable computational cost of online microscale calculations. A simplifying approach is proposed, where microscale feedbacks are spatially and temporally upscaled and assimilated into the mesoscale calculation. A two-way coupled model system is developed, consisting of the mesoscale model MEMO and the microscale model MIMO, employing interpolating metamodels. As an illustrative application, multi-day simulations for Athens, Greece are presented.
机译:已经提出了将中尺度和微观尺度模型相结合的系统,作为精确模拟人工结构周围和密集城市区域内流动的工具。规模不匹配以及在线微尺度计算的巨大计算成本给这种双向耦合的实现带来了负担。提出了一种简化方法,其中在空间和时间上将微尺度反馈放大并吸收到中尺度计算中。开发了一种双向耦合模型系统,它由中尺度模型MEMO和微观模型MIMO组成,并采用插值元模型。作为说明性应用,介绍了希腊雅典的多日模拟。

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