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Heat and fluid flow in a scraped-surface heat exchanger containing a fluid with temperature-dependent viscosity

机译:刮板式换热器中的热量和流体流动,该换热器包含粘度随温度变化的流体

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摘要

Scraped-surface heat exchangers (SSHEs) are extensively used in a wide variety of industrial settings where the continuous processing of fluids and fluid-like materials is involved. The steady non-isothermal flow of a Newtonian fluid with temperature-dependent viscosity in a narrow-gap SSHE when a constant temperature difference is imposed across the gap between the rotor and the stator is investigated. The mathematical model is formulated and the exact analytical solutions for the heat and fluid flow of a fluid with a general dependence of viscosity on temperature for a general blade shape are obtained. These solutions are then presented for the specific case of an exponential dependence of viscosity on temperature. Asymptotic methods are employed to investigate the behaviour of the solutions in several special limiting geometries and in the limits of weak and strong thermoviscosity. In particular, in the limit of strong thermoviscosity (i.e., strong heating or cooling and/or strong dependence of viscosity on temperature) the transverse and axial velocities become uniform in the bulk of the flow with boundary layers forming either just below the blade and just below the stationary upper wall or just above the blade and just above the moving lower wall. Results are presented for the most realistic case of a linear blade which illustrate the effect of varying the thermoviscosity of the fluid and the geometry of the SSHE on the flow.
机译:刮板式热交换器(SSHE)广泛用于涉及对流体和类流体材料进行连续处理的各种工业环境中。研究了当在转子和定子之间的间隙上施加恒定的温差时,窄间隙SSHE中具有温度依赖性粘度的牛顿流体的稳定非等温流动。建立了数学模型,并获得了流体的热量和流体流动的精确解析解,该流体的热量和流体流动对于一般的叶片形状通常具有粘度对温度的依赖性。然后针对粘度与温度呈指数关系的特定情况介绍这些解决方案。渐近方法用于研究溶液在几种特殊的极限几何形状以及在弱和强热粘度范围内的行为。特别是,在强热粘度(即强加热或冷却和/或强粘度对温度的依赖性)的限制下,在整个流体流中,横向和轴向速度变得均匀,边界层或恰好形成在叶片下方且正好形成低于固定的上壁,或者刚好位于刀片上方,而位于移动的下壁上方。给出了最实际的线性叶片情况的结果,这些结果说明了改变流体的热粘度和SSHE的几何形状对流动的影响。

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