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Understanding land use change impacts on microclimate using Weather Research and Forecasting (WRF) model

机译:了解土地利用变化对使用天气研究和预测(WRF)模型对微气密的影响

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To explore potential climatic consequences of land cover change in the Kolkata Metropolitan Development area, we projected microclimate conditions in this area using the Weather Research and Forecasting (WRF) model driven by future land use scenarios. Specifically, we considered two land conversion scenarios including an urbanization scenario that all the wetlands and croplands would be converted to built-up areas, and an irrigation expansion scenario in which all wetlands and dry croplands would be replaced by irrigated croplands. Results indicated that land use and land cover (LULC) change would dramatically increase regional temperature in this area under the urbanization scenario, but expanded irrigation tended to have a cooling effect. In the urbanization scenario, precipitation center tended to move eastward and lead to increased rainfall in eastern parts of this region. Increased irrigation stimulated rainfall in central and eastern areas but reduced rainfall in southwestern and northwestern parts of the study area. This study also demonstrated that urbanization significantly reduced latent heat fluxes and albedo of land surface; while increased sensible heat flux changes following urbanization suggested that developed land surfaces mainly acted as heat sources. In this study, climate change projection not only predicts future spatiotemporal patterns of multiple climate factors, but also provides valuable insights into policy making related to land use management, water resource management, and agriculture management to adapt and mitigate future climate changes in this populous region. (C) 2017 Elsevier Ltd. All rights reserved.
机译:为了探讨土地覆盖变化在加尔各答大都市开发区的潜在气候后果,我们使用未来土地使用方案驱动的天气研究和预测(WRF)模型预测了该领域的小气候条件。具体而言,我们考虑了两种土地转换情景,包括城市化情景,即所有湿地和农田都将被转换为建筑领域,以及灌溉扩张情景,其中所有湿地和干燥的农作物将被灌溉的农作物所取代。结果表明,土地利用和陆地覆盖(LULC)变化将在城市化情景下大大提高该地区的区域温度,但扩大灌溉趋于冷却效果。在城市化情景中,降水中心倾向于向东移动,导致该地区东部地区的降雨量增加。增加灌溉刺激降雨在中东地区,但在研究区的西南和西北部的降雨量下降。本研究还表明,城市化显着降低了潜热通量和土地面的反照液;虽然城市化之后的明智的热量通量变化,但开发的土地表面主要充当热源。在这项研究中,气候变化投影不仅预测了多种气候因素的未来时尚模式,还提供了与土地利用管理,水资源管理和农业管理有关的政策制定的有价值的见解,以适应和减轻这个人口众多的地区的未来气候变化。 (c)2017 Elsevier Ltd.保留所有权利。

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