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Seasonal Differences in Precipitation Sensitivity to Soil Moisture in Bangladesh and Surrounding Regions

机译:孟加拉国及周边地区土壤水分降水敏感性的季节性差异

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摘要

Precipitation sensitivity to soil moisture and its seasonal and diurnal changes are investigated in Bangladesh and surrounding regions using a regional climate model with a 5-km grid spacing. In the control experiment, soil moisture is calculated by a land surface scheme, and simulated accuracy of seasonal and diurnal variations in precipitation intensity and frequency is capable of assessing the soil moisture impact on precipitation. In sensitivity experiments with wetter land surfaces, daytime precipitation intensity decreases over the southern plains for both the premonsoon and mature monsoon seasons because of the weakening of surface heating and vertical mixing in the planetary boundary layer (PBL). Weakened vertical turbulent flux of moisture reduces condensation heating and upward motion in the mid-and upper troposphere, which suppresses development of convective precipitation. The simulated precipitation intensity response to soil moisture suggests that land surface wetness contributes to the seasonal contrast in observed precipitation intensity (i.e., stronger in the premonsoon than the mature monsoon seasons). Meanwhile, the precipitation frequency response to soil moisture varies with season and by region. Over the southern plains in the wet land surface experiments, daytime precipitation frequency decreases (increases) during the premonsoon (mature monsoon) season compared with the dry land surface experiments, as influenced by seasonal differences in relative humidity and the condensation process in the lower troposphere. Around the northern mountainous area, higher soil moisture increases precipitation frequency regardless of season because of additional water vapor supply from the ground and frequent orographic precipitation forced by the mountainous topography.
机译:使用具有5公里网格间距的区域气候模型,在孟加拉国和周围地区对土壤水分和季节性和季节变化进行降水敏感性。在对照实验中,土壤水分通过土地表面方案计算,季节性和降水强度和频率变化的模拟精度能够评估土壤水分对沉淀的影响。在具有湿岩地面的敏感性实验中,由于表面加热和行星边界层(PBL)中的垂直混合弱化,日间降水强度为前大使和成熟季季季节的南部平原降低。弱化垂直湍流通量的水分降低了中上层和上层和上层的凝结加热和向上运动,抑制了对流沉淀的发展。模拟降水强度对土壤水分的反应表明,土地表面湿度有助于观察到的降水强度的季节性对比(即,预热的比成熟季季季节更强)。同时,对土壤水分的降水频率响应随季节和区域而异。在湿陆表面实验中,与干陆表面实验相比,白天降水频率降低(成熟季风)季节(成熟季隆)季节(成熟季风)季节,如季节性差异和较低对流层中的凝结过程的影响。北部山区围绕山区,土壤水分较高,无论季节如何,由于从地面和山地地形迫使常见的地形沉淀额外的水蒸气供应。

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    《Journal of Climate》 |2017年第3期|共18页
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  • 正文语种 eng
  • 中图分类 气候学;
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