利用注入盐水线性分层技术研究太阳池盐度梯度的形成与维持

R. Yousaf, Syed Irtiza Ali Shah
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引用次数: 1

摘要

太阳池是一个分层区域,在其盐水储存区以热能的形式储存太阳能,温度高达95°C。这种能源用于各种工业应用,从发电和海水淡化到制冷和热水消耗。池塘在蓄水区收集和储存热能的能力依赖于有效的分层来抑制自然热对流。扩散和高温梯度导致对流区域的侵入和内部额外对流区域的发展。这导致分层退化,从而降低了太阳能池的热效率。在这种情况下,盐度梯度的维持需要监测分层区域的不同参数,并通过反馈控制机制控制的扩散器注入流体。在过去的几十年里,人们开发了各种方法来优化分层区域的维护。本研究深入分析了梯度维持技术,重点研究了注入介质及其对盐度梯度维持的影响。对注入介质的两种配置进行了详细的分析和比较,即向均匀对流区注入高湍流柱状射流和通过圆盘状扩散器注入低出口弗劳德数流体(最常见的)。此外,还深入分析了喷油器槽的大小和形状以及喷油器的流体速度对喷射介质流出流型的影响。分析比较了不同的梯度维持和成井技术,结果表明:在层状区,采用弗鲁德1号12 ~ 18槽的半盘形扩压器排流效果最佳。通过对优化注入机制的分析,可以在非对流区(NCZ)形成并维持线性分布的分层区域,从而在低对流区(LCZ)收集更多的热量。
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Formation and maintenance of salinity gradient in a solar pond using brine injection technique for linear stratification
Solar pond is a stratified region which stores solar energy in the form of thermal energy up to 95°C in its saline storage zone. This energy is used in various industrial applications ranging from electricity generation and desalination to refrigeration and hot water consumption. The ability of a pond to collect and store thermal energy in storage zone is dependent on effective stratification to suppress natural thermal convection. Diffusion and high temperature gradients result in encroachment of convective zones and development of additional internal convective zones. This results in degradation of stratification hence reducing the thermal efficiency of solar pond. In this scenario, maintenance of salinity gradient comes into play which involves monitoring of different parameters of the stratified region and injecting the fluid through diffusers controlled by feedback and control mechanism. Over the past few decades various methodologies have been developed for optimized maintenance of the stratified region. This research has thoroughly analyzed the gradient maintenance techniques, specifically focusing on injection mediums and their effects on the salinity gradient maintenance. The two configurations of injection medium i.e. injection of highly turbulent columnar jets into homogeneous convective zones and the injection of low exit Froude number fluid through a disk-shaped diffuser (most common) are elaborately analyzed and compared. Moreover, the effect of size & shape of the injector slots and followed by fluid velocity of injector on the flow pattern exiting the injection medium has been thoroughly analyzed. The analysis and comparison of different gradient maintenance and formation techniques show that flow discharge through a half disc shaped diffuser with rectangular slots at Froude No ranging from 12–18 is optimum for the stratified region. The analysis of an optimized injection mechanism has enabled formation and maintenance of a linearly distributed stratified region in the non-convective zone (NCZ) resulting in more heat collection in the lower convective zone (LCZ).
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