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首页> 外文期刊>Journal of Climate >Seasonal and Subseasonal Variability of Potential Energy Injected into the Tropical UTLS by Convective and Tropical Cyclone Outflow
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Seasonal and Subseasonal Variability of Potential Energy Injected into the Tropical UTLS by Convective and Tropical Cyclone Outflow

机译:通过对流和热带气旋流出流入热带UTL的季节性和季节性和季节性变异性

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This study employs 40 years of ERA-Interim data to quantify the periodic behavior of the integral amount of potential energy stored in the tropical upper UTLS (upper troposphere and lower stratosphere) originally placed there by high-entropy outflow of deep convection and tropical cyclones (TCs). The upper UTLS is defined to be isentropic layers above the level of zero net radiation (LZNR) in the tropics. Once there, the trapped high-entropy air mass must flow into the extratropics where radiative loss will allow it to subside back to lower-entropy levels. Mean poleward fluxes of isentropic mass are prevented by an inertial wall associated with Earth's rotation. This causes the mass of these isentropic layers to build up, creating a bubble of high potential energy. Periodic releases of this mass into the extratropics in the form of tropical plumes (TPs) help drain the bubble of its mass buildup over time. We present a metric to quantify the energy trapped and stored in this bubble to be the jet available potential energy (JAPE), in reference to the availability of this energy to fuel the kinetic energy of the subtropical jet stream (STJ), which bounds the tropical JAPE bubble (TJB) on its poleward extremities. We also calculate the isentropic mass M, which measures the isentropic thickness. Results of a 40-yr-time-series analysis of upper-UTLS JAPE and M show that the TJB features periodicity in the buildup and release of JAPE and M.
机译:本研究采用了40年的ERA临时数据,以量化储存在热带上UTL(上层和较低平流层)的周期性的周期性行为,最初通过深入对流和热带气旋的高熵流出( TCS)。上部UTL被定义为位于热带零净辐射(LZNR)水平上的等熵层。一旦,被困的高熵空气质量必须流入潜水器,其中辐射损失将使它恢复到下熵水平。通过与地球旋转​​相关的惯性壁防止了等熵质量的平均偏移量。这导致这些等熵层的质量积聚,产生高潜在能量的泡沫。定期释放这种质量以热带羽毛(TPS)形式的含水层有助于排出其质量积聚的泡沫。我们提出了一种量化,以量化捕获的能量并将其储存在该气泡中以成为喷射可用的潜在能量(jape),参考这种能量的可用性来燃料,以燃料界定的亚热带喷射流的动能(STJ)界定热带jape泡沫(tjb)在其向向极端。我们还计算了等熵质量m,测量常规厚度。高UTLS JAPE和M的40年代时间序列分析的结果表明TJB在累积和释放jape和m的周期性中的周期性

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