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Comparisons of the Generalized Potential Temperature in Moist Atmosphere with the Equivalent Potential Temperature in Saturated Moist Atmosphere

机译:潮湿气氛中广义潜在温度的比较,其饱和潮湿气氛中的等效潜在温度

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摘要

The real tropospheric atmosphere is neither absolutely dry nor completely saturated. It is in general moist but not saturated. Here the generalized potential temperature (GPT) was introduced to describe this humid feature of real moist atmosphere. GPT's conservation property in moist adiabatic process was discussed and proved. Comparisons of GPT in moist atmosphere with the equivalent potential temperature (EPT) in saturated moist atmosphere were made by analyzing three torrential rain cases occurring over Jianghuai Valleys in 2003, the north China in 2004, and with the typhoon Fung-Wong in 2008, respectively. Results showed that the relative humidity is not up to 100% even in torrential rain systems, the saturated condition for EPT is not always held, and thus GPT can describe the moisture concentration and moisture gradient better than EPT. The GPT's definition includes the process that the air changes from dry to moist, then up to saturated. Therefore, potential temperature (PT) and EPT can be considered as its two special status. Similar as PT and EPT, GPT can be used to study atmospheric dynamic and thermodynamic processes more generally because of its conservation property in moist adiabatic process.
机译:真正的对流层气氛既不完全干燥也不完全饱和。它一般湿润但不饱和。这里引入了广义潜在的温度(GPT)来描述真实潮湿气氛的这种潮湿特征。讨论并证明了GPT在潮湿的绝热过程中的保护性质。通过分析2003年江淮山谷的三个暴雨案件,2004年江淮山区的三种暴雨案例,2008年,2008年江淮山脉的三大雨季,分别与2008年的台风凤 - 王,分别进行了饱和潮湿气氛中的等效潜在温度(EPT)。 。结果表明,即使在暴雨系统中,相对湿度也不高达100%,但EPT的饱和条件并不总是保持,因此GPT可以将水分浓度和水分梯度描述优于EPT。 GPT的定义包括空气从干燥到潮湿的过程,然后高达饱和。因此,潜在的温度(PT)和EPT可以被认为是其两个特殊状态。与PT和EPT类似,GPT可用于更普遍地研究大气动态和热力学过程,因为其湿润绝热过程中的保护性能。

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