首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Climatic effects of irrigation over the Huang-Huai-Hai Plain in China simulated by the weather research and forecasting model
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Climatic effects of irrigation over the Huang-Huai-Hai Plain in China simulated by the weather research and forecasting model

机译:气象研究与预报模型模拟的黄淮海平原灌溉的气候效应。

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The climatic effects of irrigation over the Huang-Huai-Hai Plain (3HP) in China are investigated by using the weather research and forecasting model coupled with an operational-like irrigation scheme. Multiple numerical experiments with irrigation off/on during spring, summer, and both spring and summer are conducted. Results show that the warm bias in surface temperature and dry bias in soil moisture are reduced over the 3HP region during the growing seasons by considering the irrigation in the model. The air temperature during nongrowing seasons is also affected by irrigation because of the persistent effects of soil moisture on land-air energy exchanges and ground heat storage. Irrigation can induce significant cooling in the planetary boundary layer (PBL) during the growing seasons and lead to a relatively wet PBL with increased low-level clouds during spring but a relatively dry condition in summer. Further analyses indicate that irrigation leads to increased summer precipitation over the Yangtze River Basin and decreased summer precipitation in southern and northern China. These responses are associated with the changes in the large-scale circulation induced by irrigation. Irrigation tends to cool the atmosphere and forces a possible southward shift of the upper level jet that can further affect the precipitation distribution. Our model results suggest that in addition to local-scale processes, large-scale impacts should also be considered when studying the precipitation response to irrigation over East Asia.
机译:利用天气研究和预报模型,结合类似操作性灌溉方案,研究了黄淮海平原(3HP)上的灌溉气候效应。在春季,夏季以及春季和夏季都进行了开/关灌溉的多个数值实验。结果表明,通过考虑模型中的灌溉,在生长季节的3HP区域内,地表温度的热偏差和土壤水分的干偏差减小了。在非生长季节,气温也受到灌溉的影响,这是因为土壤水分对土地空气能量交换和地热储存的持续影响。在生长期,灌溉会导致行星边界层(PBL)明显冷却,并导致相对湿润的PBL和春季的低空云增加,而夏季则相对干燥。进一步的分析表明,灌溉导致长江流域夏季降水增加,而中国南部和北部夏季降水减少。这些响应与灌溉引起的大规模循环的变化有关。灌溉趋于使大气变冷,并迫使高层喷流向南移动,这可能进一步影响降水分布。我们的模型结果表明,在研究东亚地区对灌溉的降水响应时,除了局部过程外,还应考虑大规模影响。

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