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Relation between Tropical Cyclone Heat Potential and Cyclone Intensity in the North Indian Ocean

机译:北印度洋热带气旋热势与旋风强度的关系

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Ocean Heat Content (OHC) plays a significant role in modulating the intensity of Tropical Cyclones (TC) in terms of the oceanic energy available to TCs. TC Heat Potential (TCHP), an estimate of OHC, is thus known to be a useful indicator of TC genesis and intensification. In the present study, we analyze the role of TCHP in intensification of TCs in the North Indian Ocean (NIO) through statistical comparisons between TCHP and Cyclone Intensities (CI). A total of 27 TCs (20 in the Bay of Bengal, and 7 in the Arabian Sea) during the period 2005-2012 have been analyzed using TCHP data from Global Ocean Data Assimilation System (GODAS) model of Indian National Center for Ocean Information Services and cyclone best track data from India Meteorological Department. Out of the 27 cyclones analyzed, 58% (86%) in the Bay (Arabian Sea) have negative correlation and 42% (14%) cyclones have positive correlation between CI and TCHP. On the whole, more than 60% cyclones in the NIO show negative correlations between CI and TCHP. The negative percentage further increases for TCHP leading CI by 24 and 48 hours. Similar trend is also seen with satellite derived TCHP data obtained from National Remote Sensing Center and TC best track data from Joint Typhoon Warming Centre. Hence, it is postulated that TCHP alone need not be the only significant oceanographic parameter, apart from sea surface temperature, responsible for intensification and propagation of TCs in the NIO.
机译:海洋热量(OCC)在调制TCS可用的海洋能量方面对热带气旋(TC)的强度起着重要作用。因此,TC热电位(TCHP),OHC的估计,因此已知是TC成因和强化的有用指标。在本研究中,我们通过TCHP和旋风强度(CI)之间的统计比较分析TCHP在北印度洋(NIO)中的TCS的强化作用。在2005 - 2015年期间,共有27个TCS(孟加拉湾和孟加拉湾和7个)已经使用印度国家海洋信息服务中心的全球海洋数据同化系统(GODAS)模型进行了分析了2005 - 2012年期间的2005 - 2012年期间和印度气象部门的旋风最佳跟踪数据。在分析的27个旋风中,海湾(阿拉伯海)中的58%(86%)具有负相关,42%(14%)旋风分离有CI和TCHP之间的正相关。总的来说,NIO中超过60%的旋风显示CI和TCHP之间的负相关。 TCHP领先CI进一步增加了24和48小时的负百分比。来自来自国家遥感中心和TC最佳轨道数据的卫星衍生的TCHP数据也看到了类似的趋势。来自Typhoon变暖中心的TC最佳跟踪数据。因此,假设其单独的TCHP不需要是唯一的重要海洋学参数,除了海表面温度,负责NIO中TCS的强化和传播。

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