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首页> 外文期刊>Journal of the Atmospheric Sciences >Moist Adiabats with Multiple Condensing Species: A New Theory with Application to Giant-Planet Atmospheres
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Moist Adiabats with Multiple Condensing Species: A New Theory with Application to Giant-Planet Atmospheres

机译:具有多种冷凝物种的潮湿绝热:一种新的理论,适用于巨型行星氛围

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摘要

A new formula is derived for calculating the moist adiabatic temperature profile of an atmosphere consisting of ideal gases with multiple condensing species. This expression unifies various formulas published in the literature and can be generalized to account for chemical reactions. Unlike previous methods, it converges to machine precision independent of mesh size. It accounts for any ratio of condensable vapors to dry gas, from zero to infinity, and for variable heat capacities as a function of temperature. Because the derivation is generic, the new formula is not only applicable to planetary atmospheres in the solar system but also to hot Jupiters and brown dwarfs in which a variety of alkali metals, silicates, and exotic materials condense. It is demonstrated that even though the vapors are ideal gases, they interact in their effects on the moist adiabatic lapse rate. Finally, the authors apply the new thermodynamic model to study the effects of downdrafts on the distribution of minor constituents and the thermal profile in the Galileo probe hot spot. The authors find that the Galileo probe measurements can be interpreted as a strong downdraft that displaces an air parcel from the 1-bar to the 4-bar level (1 bar = 100 000 Pa).
机译:导出新的公式,用于计算由具有多种冷凝物质的理想气体组成的气氛的潮湿绝热曲线。该表达统一在文献中发表的各种配方,并且可以推广以考虑化学反应。与以前的方法不同,它与独立于网格尺寸的机器精度会聚。它占可粘附蒸汽与干燥气体的任何比率,从零到无穷大,以及随温度的可变热容量。由于衍生是通用的,新的公式不仅适用于太阳系中的行星大气压,而且还适用于热的Jupiters和棕色矮种,其中各种碱金属,硅酸盐和异国物料冷凝。结果表明,即使蒸汽是理想的气体,它们也会对其对潮湿的绝热渗透率的影响进行互动。最后,作者应用了新的热力学模型,研究了下降的效果对伽利略探针热点的次要成分和热调的分布。作者发现伽利略探针测量可以被解释为强的下降过程,该探测器将空气包从1-BAR移位到4BAR电平(1 BAR = 100 000Pa)。

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