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Numerical Simulation on the Flow Behavior of Ice Slurry in Piping Systems

机译:管道系统中冰浆流动特性的数值模拟

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摘要

The ice slurry, as a cool agent, is widely used in the refrigeration areas, such as the HVAC systems, foodcooling area and other fields due to the good quality of the ice slurry. The flow behavior for the ice slurry isanalyzed in piping systems to improve the application of the ice slurry in this paper. Three kinds of pipes,namely the straight pipe, the 90° elbow pipe and the T-pipe, are investigated by numerical simulation basedon kinetic theory of granular. It was found that for the flow in the straight tubes, the pressure descends downwith the increasing distance to the inlet, whose variation trends show good agreements with experimentaldata. For the flow in the 90° elbow, the image of the second flow is obtained in this paper to describe to thereverse flow super imposed to the main flow. For the flow in the T-pipe, the enthalpy descends down rapidly,which indicates that the energy is lost due to the corners. In addition, this model for the simulation of theflow of ice slurry in piping systems is validated to fit for the study of the pressure field, the velocity field andthe variation trends of the enthalpy etc.
机译:由于冰浆质量好,作为冷却剂的冰浆被广泛用于制冷领域,例如HVAC系统,食品冷却区和其他领域。在管道系统中分析了冰浆的流动特性,以改善冰浆的应用。基于颗粒动力学理论,通过数值模拟研究了直管,90°弯管和T形管三种管道。研究发现,对于直管中的流动,压力随着到入口距离的增加而下降,其变化趋势与实验数据吻合良好。对于90°弯头中的流动,本文获得了第二个流动的图像,以描述施加到主流动上的反向流动。对于T形管中的流动,焓迅速下降,这表明由于拐角而损失了能量。此外,该模型用于模拟管道系统中冰浆的流动,经过验证,适合于研究压力场,速度场和焓的变化趋势等。

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