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Ice Generation and the Heat and Mass Transfer Phenomena of Introducing Water to a Cold Bath of Brine

机译:冰的产生与将水引入盐水冷浴的传热传质现象

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摘要

We demonstrate a method for the study of the heat and mass transfer and of the freezing phenomena in a subcooled brine environment. Our experiment showed that, under the proper conditions, ice can be produced when water is introduced to a bath of cold brine. To make ice form, in addition to having the brine and water mix, the rate of heat transfer must bypass that of mass transfer. When water is introduced in the form of tiny droplets to the brine surface, the mode of heat and mass transfer is by diffusion. The buoyancy stops water from mixing with the brine underneath, but as the ice grows thicker, it slows down the rate of heat transfer, making ice more difficult to grow as a result. When water is introduced inside the brine in the form of a flow, a number of factors are found to influence how much ice can form. Brine temperature and concentration, which are the driving forces of heat and mass transfer, respectively, can affect the water-to-ice conversion ratio; lower bath temperatures and brine concentrations encourage more ice to form. The flow rheology, which can directly affect both the heat and mass transfer coefficients, is also a key factor. In addition, the flow rheology changes the area of contact of the flow with the bulk fluid.
机译:我们演示了一种用于研究过冷盐水环境中的传热和传质以及冻结现象的方法。我们的实验表明,在适当的条件下,将水引入冷盐水浴中会产生冰。为了使冰形成,除了使盐水和水混合外,传热速率还必须绕过传质速率。当水以微小液滴的形式引入盐水表面时,传热和传质的方式是扩散。浮力阻止水与下方的盐水混合,但是随着冰层变厚,它会减慢传热速度,从而使冰层更加难以生长。当将水以流动形式引入盐水中时,发现许多因素会影响冰的形成量。盐水和热量分别是传热和传质的驱动力,会影响水冰的转化率。较低的浴温和盐水浓度鼓励形成更多的冰。可以直接影响传热和传质系数的流变学也是一个关键因素。另外,流变学改变了流与本体流体的接触面积。

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