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首页> 外文期刊>ournal of the Meteorological Society of Japan >Large-Scale Common Features of Subtropical Precipitation Zones (the Baiu Frontal Zone, the SPCZ, and the SACZ) Part I: Characteristics of Subtropical Frontal Zones
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Large-Scale Common Features of Subtropical Precipitation Zones (the Baiu Frontal Zone, the SPCZ, and the SACZ) Part I: Characteristics of Subtropical Frontal Zones

机译:亚热带降水带(Bauu前沿带,SPCZ和SACZ)的大规模共同特征第一部分:亚热带前沿带的特征

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In East Asia, a quasi-stationary frontal zone called the Baiu frontal zone (BFZ) forms during the early summer and provides nearly as much precipitation as the Intertropical Convergence Zone (ITCZ). Since the BFZ has several characteristics different from both the ITCZ and polar frontal zones, Ninomiya (1984) proposed the BFZ should be classified as a subtropical frontal zone.Using mainly ten-day mean data, we compare the BFZ around Japan with the subtropical portions of the South Pacific Convergence Zone (SPCZ) and the South Atlantic Convergence Zone (SACZ), which are significant precipitation zones in the summer Southern Hemisphere. These three precipitation zones are shown to have several common features as the following.The BFZ, the SPCZ, and the SACZ (hereafter referred to as the SPZs, the Subtropical Precipitation Zones) commonly form along the subtropical jet on the eastern side of a quasi-anchored trough, which lies to the northeast (in the Northern Hemisphere) or southeast (in the Southern Hemisphere) of the localized active convection of the tropical monsoon. The rainfall amount in the SPZs attains -400 mm/month when they are active. All of the SPZs are characterized by convergence zones with an interior thick moist layer and baroclinic zones with an upper subtropical jet. They are also characterized as poleward boundaries of the moist tropical or monsoon airmass associated with a low-level large gradient of moisture mixing ratio.Since the evaporation rate is much smaller than the precipitation rate along the SPZs, high rainfall in the SPZs is maintained by the convergence of two types of moisture currents in the SPZs. One is eastward along the SPZ and the other is along the northwestern (in the N.H.) or the southwestern (in the S.H.) periphery of the subtropical high. The latter transports moisture evaporated under the western part of the subtropical high. Generation of convective instability by the differential advection process is found along the SPZs and maintains active convection along the SPZs.Since the SPCZ and the SACZ have several unique characteristics different from the ITCZ and polar frontal zones but similar to the BFZ, it is concluded that all of the SPZs can be classified as subtropical frontal zones.
机译:在东亚,初夏形成了一个准静止的锋区,称为Baiu锋区(BFZ),其降水量几乎与热带辐合带(ITCZ)差不多。由于BFZ具有与ITCZ和极地锋区不同的几个特征,Ninomiya(1984)提出将BFZ归为亚热带锋区。主要使用十天平均数据,我们将日本周围的BFZ与亚热带地区进行了比较。南太平洋汇聚区(SPCZ)和南大西洋汇聚区(SACZ)是夏季南半球的重要降水区。这三个降水区具有以下几个共同特征:BFZ,SPCZ和SACZ(以下简称SPZ,亚热带降水区)通常沿准东侧的副热带急流形成-固定槽,位于热带季风的局部主动对流的东北部(北半球)或东南部(南半球)。启用时,SPZ中的降雨量达到-400毫米/月。所有SPZ的特征都是具有内部较厚的湿润层的汇聚区和具有较高副热带高压射流的斜压区。它们的特征还在于潮湿的热带或季风气团的极向边界,伴随着低水平的大的水分混合比梯度,因为蒸发速率远小于沿SPZ的降水速率,所以SPZ保持了高降雨SPZ中两种类型的湿流的收敛。一个是沿着SPZ向东,另一个是沿着亚热带高压的西北(在N.H.中)或西南(在S.H.中)外围。后者输送在副热带高压西部蒸发的水分。在SPZ上发现了通过对流过程产生的对流不稳定性,并在SPZ上保持了主动对流。由于SPCZ和SACZ具有不同于ITCZ和极地锋区但与BFZ相似的几个独特特征,因此得出结论:所有SPZ都可以归类为亚热带额叶带。

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