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High resolution land surface response of inland moving Indian monsoon depressions over Bay of Bengal

机译:孟加拉湾内陆移动的印度季风洼地的高分辨率地表响应

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摘要

During Indian summer monsoon (ISM) season, nearly about half of the monsoonal rainfall is brought inland by the low pressure systems called as Monsoon Depressions (MDs). These systems bear large amount of rainfall and frequently give copious amount of rainfall over land regions, therefore accurate forecast of these synoptic scale systems at short time scale can help in disaster management, flood relief, food safety. The goal of this study is to investigate, whether an accurate moisture-rainfall feedback from land surface can improve the prediction of inland moving MDs. High Resolution Land Data Assimilation System (HRLDAS) is used to generate improved land state .i.e. soil moisture and soil temperature profiles by means of NOAH-MP land-surface model. Validation of the model simulated basic atmospheric parameters at surface layer and troposphere reveals that the incursion of high resolution land state yields least Root Mean Squared Error (RMSE) with a higher correlation coefficient and facilitates accurate depiction of MDs. Rainfall verification shows that HRLDAS simulations are spatially and quantitatively in more agreement with the observations and the improved surface characteristics could result in the realistic reproduction of the storm spatial structure, movement as well as intensity. These results signify the necessity of investigating more into the land surface-rainfall feedbacks through modifications in moisture flux convergence within the storm.
机译:在印度夏季风(ISM)季节,将近一半的季风降雨是由称为季风低压(MDs)的低压系统带入内陆的。这些系统承受大量降雨,并经常在陆地区域提供大量降雨,因此在短时间内对这些天气尺度系统进行准确的预测可有助于灾害管理,防洪,食品安全。这项研究的目的是调查从地面获得的准确的水分-雨水反馈是否可以改善对内陆移动MD的预测。高分辨率土地数据同化系统(HRLDAS)用于生成改进的土地状态。利用NOAH-MP地表模型分析土壤水分和土壤温度。在表面层和对流层对模型模拟的基本大气参数进行模型验证,结果表明,高分辨率陆地状态的入侵产生的最小均方根误差(RMSE)具有较高的相关系数,并且有助于精确描述MD。降雨验证表明,HRLDAS模拟在空间和数量上与观测结果更加吻合,并且改善的地表特征可能导致风暴空间结构,运动和强度的真实再现。这些结果表明有必要通过修改暴风雨中的水汽通量收敛来对土地表面降雨反馈进行更多调查。

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  • 来源
  • 会议地点 New Delhi(IN)
  • 作者

    Rajesh P V; S Pattnaik;

  • 作者单位

    School of Earth, Ocean and Climate Sciences Indian Institute of Technology Bhubaneswar Toshali Bhawan, Satyanagar, Bhubaneswar -751007, India;

    School of Earth, Ocean and Climate Sciences Indian Institute of Technology Bhubaneswar Toshali Bhawan, Satyanagar, Bhubaneswar -751007, India;

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