基于CFD的高静水压力数值研究

Ghani Albaali, F. Al-Naima
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引用次数: 0

摘要

食品的高静水压力(HHP)被认为是一种有吸引力的替代加热方法。在这一领域工作的工程师试图填补消费者对获得高营养质量的需求与高标准生产之间的差距。本文给出并研究了高压高压过程中充满水的圆柱体的温度、压力和速度的剖面。在灭菌过程中,模拟了自然对流加热,假定压力从大气压力(AP)上升到500mpa。利用计算流体动力学(CFD)求解了能量守恒、动量和连续性的naver Stocks方程。模拟结果清楚地表明,由于自然对流加热的影响很小,高压高压压缩结束时的换热过程主要以传导加热为主。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Numerical Study of High Hydrostatic Pressure Using CFD
High Hydrostatic Pressure (HHP) of food is regarded as an attractive alternative method to the heating method. The engineers working in this area try to fill the gap between the demand of consumers in obtaining high nutritional quality and a high standard of production. The profile contours of temperature, pressure, and velocity for a cylinder full of water during a HHP process are presented and studied in this work. The natural convection heating was also simulated for the sterilization process, where the pressure is presumed to rise from the Atmospheric Pressure (AP) to 500 MPa. The Naiver Stocks equations for the energy conservation, momentum, and continuity were solved using Computational Fluid Dynamics (CFD). The simulations showed clearly that the process of heat transfer during the HHP at the end of compression is particularly dominated by conduction heating, due to the little effects of natural convection heating.
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