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Coupling a Single-Layer Urban Canopy Model with a Simple Atmospheric Model: Impact on Urban Heat Island Simulation for an Idealized Case

机译:单层城市雨棚模型与简单大气模型的耦合:理想情况对城市热岛模拟的影响

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We incorporated a single-layer urban canopy model into a simple two-dimensional atmospheric model in order to describe the fundamental impact of the urban canopy model on an idealized urban heat island simulation. We found that the heat island circulation developed less strongly than when using the atmospheric model with the standard slab urban model. Additionally, the coupling with urban canopy model (i) delays the phase of surface air temperature, (ii) reduces the diurnal range of the temperature, and (iii) produces a nocturnal heat island, which results from the difference in atmospheric stability between city and its surroundings. The features from the atmospheric model coupled with the canopy model agree well with those from observation, although the atmospheric model with the slab model does not. The simulated nocturnal heat island is caused by the larger heat storage of the canopy model which releases sensible heat after sunset.
机译:我们将单层城市冠层模型合并到一个简单的二维大气模型中,以描述城市冠层模型对理想化城市热岛模拟的基本影响。我们发现,与将大气模型与标准平板城市模型一起使用时,热岛环流的发展不那么强劲。此外,与城市冠层模型的耦合(i)延迟了地面空气温度的相位,(ii)降低了温度的昼夜范围,并且(iii)产生了夜间的热岛,这是由于城市之间大气稳定性的差异造成的及其周围环境。大气模型与冠层模型相结合的特征与观测得到的特征非常吻合,尽管平板模型与大气模型的特征却不一致。模拟的夜间热岛是由冠层模型更大的热量存储引起的,该模型在日落之后释放出显热。

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