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Entropy Evolution Characteristics Associated with the Development of the South Asian Monsoon

机译:与南亚季风发展有关的熵演化特征

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The structure and evolution characteristics of atmospheric entropy production associated with the climatologic monsoon onset and evolution were investigated using the National Centers for Environmental Prediction (NCEP) reanalysis data. The entropy balance equation contains two parts. The first part is internal entropy production that corresponds to natural dissipation. The second part is external entropy production that is associated with lower-boundary entropy supply. It is shown that the dissipation process represented by internal entropy production can be used to describe the thermal and dynamical structures of the monsoon. The thermal dissipation due to turbulent vertical diffusion and convection is highly correlated to precipitation. The dynamic dissipation due to wind stress becomes very strong over the Arabian Sea and southwestern part of India in boreal summer, and dynamic dissipation can describe the monsoon structure more clearly than variables such as wind shear. The correlation between surface entropy supply and internal entropy production is so large that the surface entropy supply can also be used to evaluate the monsoon. Over the desert region of Rajasthan, the dissipation is relatively weaker than its surroundings owing to descending large-scale eddy flow and a weak convective flux. The analysis of atmospheric entropy provides a new way to describe the monsoon development characteristics, which differs from those derived from a traditional analysis method.
机译:使用国家环境预测中心(NCEP)重新分析数据,研究了与气候季风爆发和演变相关的大气熵产生的结构和演变特征。熵平衡方程包含两个部分。第一部分是与自然耗散相对应的内部熵产生。第二部分是与下边界熵供给相关的外部熵产生。结果表明,以内部熵产生为代表的耗散过程可以用来描述季风的热力和动力结构。湍流垂直扩散和对流引起的热耗散与降水高度相关。北方夏季,由于风应力引起的动态耗散在阿拉伯海和印度西南部变得非常强烈,并且动态耗散比风切变等变量更能清楚地描述季风结构。表面熵供应与内部熵产生之间的相关性如此之大,以至于表面熵供应也可用于评估季风。在拉贾斯坦沙漠地区,由于大范围的涡流下降和对流通量较弱,其耗散比周围环境弱。大气熵的分析提供了一种描述季风发展特征的新方法,这不同于传统的分析方法。

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