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Development of a heat transfer correlation for a Scraped-Surface Heat Exchanger

机译:刮板式换热器传热相关性的开发

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摘要

Heat transfer in presence of high viscosity fluids may be substantially enhanced using heat exchangers supported by a mechanical agitation system; sometimes, to improve the process conditions, agitators can also "scrape" the exchange surface (Scraped-Surface Heat Exchanger, SSHE). Heat transfer efficiency depends on: the geometry of heat exchanger and agitator; agitation methods; fluid characteristics and heat exchange conditions. Correlations used to represent the phenomenon are closely related to the above parameters and, generally, are hardly employable out of the context. In this work two correlations for determining the heat transfer coefficients of three evaporators used in soft ice-cream production are presented. They have been obtained from the application of a dimensional analysis method [1] to the data supplied by an experimental circuit; a new geometrical dimensionless number has been introduced in the second correlation. In this first stage, in order to minimize the uncertainty on the fluid characteristics, a mixture of water and glycol at two different concentrations (40% and 60%) is used as heat transfer secondary fluid instead of the actual ice-cream mixture. The predictions of two correlations respect to experimental data are also presented.
机译:使用由机械搅拌系统支撑的热交换器可以大大提高在高粘度流体存在下的传热。有时,为改善工艺条件,搅拌器还可以“刮擦”交换表面(刮面热交换器,SSHE)。传热效率取决于:热交换器和搅拌器的几何形状;搅拌方法;流体特性和热交换条件。用于表示现象的相关性与上述参数密切相关,并且通常在上下文中几乎不可采用。在这项工作中,给出了两个相关性,用于确定软冰淇淋生产中使用的三个蒸发器的传热系数。它们是通过将尺寸分析方法[1]应用于实验电路提供的数据而获得的;在第二种相关中引入了新的几何无量纲数。在第一阶段中,为了使流体特性的不确定性最小化,将两种浓度(40%和60%)的水和乙二醇的混合物用作传热二级流体,而不是实际的冰淇淋混合物。还提供了关于实验数据的两个相关性的预测。

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