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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Nonparametric Integrated Agrometeorological Drought Monitoring: Model Development and Application
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Nonparametric Integrated Agrometeorological Drought Monitoring: Model Development and Application

机译:非参数综合农业气动干旱监测:模型开发和应用

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摘要

Drought is a major natural hazard that has massive impacts on the society. How to monitor drought is critical for its mitigation and early warning. This study proposed a modified version of the multivariate standardized drought index (MSDI) based on precipitation, evapotranspiration, and soil moisture, i.e., modified multivariate standardized drought index (MMSDI). This study also used nonparametric joint probability distribution analysis. Comparisons were done between standardized precipitation evapotranspiration index (SPEI), standardized soil moisture index (SSMI), MSDI, and MMSDI, and real-world observed drought regimes. Results indicated that MMSDI detected droughts that SPEI and/or SSMI failed to do. Also, MMSDI detected almost all droughts that were identified by SPEI and SSMI. Further, droughts detected by MMSDI were similar to real-world observed droughts in terms of drought intensity and drought-affected area. When compared to MMSDI, MSDI has the potential to overestimate drought intensity and drought-affected area across China, which should be attributed to exclusion of the evapotranspiration components from estimation of drought intensity. Therefore, MMSDI is proposed for drought monitoring that can detect agrometeorological droughts. Results of this study provide a framework for integrated drought monitoring in other regions of the world and can help to develop drought mitigation.
机译:干旱是对社会影响的主要自然危害。如何监测干旱对其缓解和预警至关重要。本研究提出了基于沉淀,蒸散蒸腾和土壤水分的多变量标准化干旱指数(MSDI)的改性版本,即改性多变量标准化干旱指数(MMSDI)。本研究还使用了非参数联合概率分布分析。比较采用标准化降水指数蒸散量(SPEI)之间完成的,标准化的土壤湿度指数(SSMI),MSDI和MMSDI,和现实世界的观察干旱体系。结果表明,MMSDI检测到SPEI和/或SSMI未能做的干旱。此外,MMSDI几乎检测到Spei和SSMI识别的所有干旱。此外,MMSDI检测到的干旱与受干旱强度和干旱影响的区域的现实世界观察干旱类似。与MMSDI相比,MSDI有可能估计跨越中国的干旱强度和受干旱影响的地区,这应归因于蒸发蒸发组分免受干旱强度的估计。因此,提出了MMSDI用于探测炸药毒理学干旱的干旱监测。本研究的结果为世界其他地区进行了综合干旱监测提供了框架,并有助于开发干旱缓解。

著录项

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  • 作者单位

    Key Laboratory of Environmental Change and Natural Disaster Ministry of Education Beijing Normal University Beijing China;

    Department of Water Resources and Environment Sun Yat-sen University Guangzhou China;

    Department of Biological and Agricultural Engineering and Zachry Department of Civil Engineering Texas A&

    M University College Station TX USA;

    Key Laboratory of Environmental Change and Natural Disaster Ministry of Education Beijing Normal University Beijing China;

    Department of Water Resources and Environment Sun Yat-sen University Guangzhou China;

    College of Territorial Resource and Tourism Anhui Normal University Anhui China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学 ;
  • 关键词

    Nonparametric Integrated; Agrometeorological Drought; Application;

    机译:非参数综合;农业气象干旱;应用;

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