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Experimental study of a double-diffusive system: application to solar ponds

机译:双扩散系统的实验研究:在太阳池中的应用

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摘要

A salt gradient solar pond is an artificial device used to collect and store solar thermal energy. A non-convective zone, in the middle of the solar pond, reduces thermal losses and allows a significant rise of temperature in the saltier lower zone where the solar thermal energy is stored. The non-convective zone, also named gradient zone, is characterized by a salinity gradient that increase the density with depth promoting the stability of this layer. The absorption of solar radiation in the pond creates a destabilizing temperature gradient in the non-convective zone that contradicts the density gradient. The different molecular diffusivities of heat and salt and the opposing effects on the vertical density distribution of the two gradients can lead to double-diffusive convection phenomena. In this context, a double-diffusive system has been studied experimentally in laboratory by heating a stratified salt layer from below. The instabilities caused by the destabilizing temperature gradients lead to the formation of convective zones separated from purely diffusive zone by thin interfaces. The main goals of this work are the study of the evolution of the double-diffusive layer and the analysis of the behaviour of the diffusive interface near conditions for which instabilities appear.
机译:盐梯度太阳能水池是一种用于收集和存储太阳能热能的人造装置。位于太阳池中间的非对流区减少了热损失,并使存储太阳能热量的盐分较低的下部区的温度显着升高。非对流区(也称为梯度区)的特征是盐度梯度,随着深度增加,密度增加,从而促进了该层的稳定性。池塘中太阳辐射的吸收在非对流区产生了不稳定的温度梯度,与密度梯度相反。热量和盐分的不同分子扩散性以及对两个梯度的垂直密度分布的相反影响都可能导致双扩散对流现象。在这种情况下,在实验室中通过从下方加热分层的盐层对双扩散系统进行了实验研究。由不稳定的温度梯度引起的不稳定性导致通过薄界面将对流区与纯扩散区分开。这项工作的主要目标是研究双扩散层的演化以及在不稳定性出现的条件附近分析扩散界面的行为。

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