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Dynamics of lock-release crystalline gravity currents

机译:释放晶体重力流的动力学

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摘要

Coastal and marine environments are impacted by inflows of varying types and chemical compositions. This novel study experimentally investigated the dynamics of a particular type of inflow—crystalline gravity currents (CGC ) produced by the lock release of over-saturated brine solutions (i.e., they contain a proportion of suspended salt crystals) into a non-stratified ambient. Such flows may occur from desalination and chemical plant discharges. CGCs were found to show two distinguishing characteristics from normal under-saturated gravity currents (UGC ). One was that CGCs have longer slumping distances than UGC while the other was that during the self-similar phase, CGCs have a decreasing trend in their velocities, and the current’s height is no longer constant. These differences result because the CGCs drop crystals onto the bed as they advance. Their flow behaviour was also found to be dependent on the flow head density or local density; whereas, UGC flow is a function of the initial fluid density. This unique study gives a significant insight into crystalline gravity currents showing how they can impact the coastal environments they are encountered in, e.g., the discharge vicinity of desalination and chemical plants.
机译:沿海和海洋环境受到不同类型和化学成分的流入的影响。这项新颖的研究通过实验研究了一种特定类型的流入动力学-晶体的重力流( CGC),它是由过饱和盐溶液的锁定释放所产生的(即,它们包含一定比例的悬浮盐晶体)进入非分层环境。这样的流量可能来自脱盐和化工厂的排放。发现CGC与正常的欠饱和重力流(UGC)表现出两个区别特征。一个原因是 CGC的塌落距离比 UGC长,而另一个是在自相似阶段, CGC的速度呈下降趋势,并且当前的高度不再恒定。之所以产生这些差异,是因为CGC在前进时会将晶体滴到床上。还发现它们的流动行为取决于流头密度或局部密度。然而,UGC流量是初始流体密度的函数。这项独特的研究为结晶重力流提供了重要的见解,显示了它们如何影响在海水淡化和化工厂附近遇到的沿海环境。

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