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Asymmetric effects of soil moisture on mean daily maximum and minimum temperatures over eastern China

机译:土壤水分对中国东部平均日最高和最低温度的不对称影响

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This study statistically investigates the effects of soil moisture on mean daily maximum () and minimum temperatures () over eastern China in spring (from March to May), summer (from June to August) and fall (from September to November), using the Global Land Data Assimilation System (GLDAS) soil moisture and observational temperatures. The results show that soil moisture exerts asymmetric effects on and , thereby has substantial effects on the diurnal temperature range (DTR) in the three seasons. The soil moisture feedbacks on , , and DTR are found to evidently vary with season. In spring and summer, soil moisture exerts stronger negative forcing on than , and thus has negative effects on the DTR over many areas of northern China. In fall, soil moisture has much stronger positive effects on than , and thus has significant negative effects on the DTR over Northeast China and some areas of the climatic and ecological transition zone of northern China. The uncertainties in the employed data and method should be noted. Therefore, the results need to be further investigated by other data sets and methods in the future.
机译:本研究从统计学角度调查了土壤湿度对中国东部春季(3月至5月),夏季(6月至8月)和秋季(9月至11月)日平均最高温度()和最低温度()的影响,使用全球土地数据同化系统(GLDAS)土壤湿度和观测温度。结果表明,土壤水分对,和施加不对称影响,从而对三个季节的昼夜温度范围(DTR)产生实质性影响。 ,和DTR上的土壤水分反馈明显随季节变化。在春季和夏季,土壤水分比施加更大的负强迫,因此对中国北方许多地区的DTR产生负面影响。在秋季,土壤水分对土壤的正效应要强于水分,因此对中国东北和华北气候与生态过渡带的某些地区的DTR具有显着的负面影响。应注意所用数据和方法的不确定性。因此,将来需要通过其他数据集和方法进一步研究结果。

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