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Response of London's Urban Heat Island to a Marine Air Intrusion in an Easterly Wind Regime

机译:伦敦的城市热岛对东风风浪对海洋空气入侵的反应

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摘要

Numerical simulations are conducted using the Weather Research and Forecast numerical model to examine the effects of a marine air intrusion (including a sea-breeze front), in an easterly wind regime on 7 May 2008, on the structure of London's urban heat island (UHI). A sensitivity study is undertaken to assess how the representation of the urban area of London in the model, with a horizontal grid resolution of 1 km, affects its performance characteristics for the near-surface air temperature, dewpoint depression, and wind fields. No single simulation is found to provide the overall best or worst performance for all the near-surface fields considered. Using a multilayer (rather than single layer or bulk) urban canopy model does not clearly improve the prediction of the intensity of the UHI but it does improve the prediction of its spatial pattern. Providing surface-cover fractions leads to improved predictions of the UHI intensity. The advection of cooler air from the North Sea reduces the intensity of the UHI in the windward suburbs and displaces it several kilometres to the west, in good agreement with observations. Frontal advection across London effectively replaces the air in the urban area. Results indicate that there is a delicate balance between the effects of thermal advection and urbanization on near-surface fields, which depend, inter alia, on the parametrization of the urban canopy and the urban land-cover distribution.
机译:使用“天气研究和预测”数值模型进行了数值模拟,以检验在2008年5月7日的东风风向中,海洋空气入侵(包括海风锋)对伦敦城市热岛(UHI)结构的影响)。进行了一项敏感性研究,以评估模型中具有1 km的水平网格分辨率的伦敦市区模型如何影响其在近地表气温,露点降低和风场方面的性能特征。对于所考虑的所有近地表场,没有一个单一的模拟能够提供总体上最佳或最差的性能。使用多层(而不是单层或整体)的城市冠层模型不能明显改善对UHI强度的预测,但可以改善对空间格局的预测。提供表面覆盖率可提高对UHI强度的预测。来自北海的较冷空气的平流降低了上风向郊区的UHI的强度,并将其向西移动了几公里,这与观测结果非常吻合。整个伦敦的对流平流有效地替代了市区的空气。结果表明,热对流和城市化对近地表场的影响之间存在微妙的平衡,这尤其取决于城市雨棚的参数化和城市土地覆盖的分布。

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