首页> 外文会议>2002 ASME International Mechanical Engineering Congress and Exposition , Nov 17-22, 2002, New Orleans, Louisiana >NUMERICAL SOLUTION OF MELTING PROCESSES FOR UNFIXED PHASE CHANGE MATERIAL IN THE PRESENCE OF ELECTROMAGNETIC FIELD ―SIMULATION OF LOW GRAVITY ENVIRONMENT―
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NUMERICAL SOLUTION OF MELTING PROCESSES FOR UNFIXED PHASE CHANGE MATERIAL IN THE PRESENCE OF ELECTROMAGNETIC FIELD ―SIMULATION OF LOW GRAVITY ENVIRONMENT―

机译:电磁场存在下低相环境模拟的非固定相变材料熔化过程的数值解

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Electromagnetic simulation of low-gravity environment has been numerically investigated to study the transport phenomena associated with melting of an electrically conducting Phase Change Material (PCM) inside a rectangular enclosure. Electromagnetic fields are configured in such a way that the resulting Lorentz force can be used to damp and/or counteract the natural convection as well as the flow induced by sedimentation and/or floatation, and thereby simulating the low gravity environment of outer space. The governing equations are discretized using a control-volume-based finite difference scheme. Numerical solutions are obtained for true low-gravity environment as well as for the simulated-low-gravity conditions due to electromagnetic forces. The results show that when the Lorentz force is caused by the presence of magnetic field alone, the low-gravity condition is simulated by the damping effect, which is shown to have a profound effect on the flow field. On the other hand, it is shown that under electromagnetic field simulation, where the Lorentz force is caused by the transverse electric and magnetic fields, it is possible to minimize the flow field distortion caused by the high magnetic field and therefore achieving a much better simulation of low-gravity.
机译:对低重力环境的电磁仿真进行了数值研究,以研究与矩形外壳内的导电相变材料(PCM)熔化相关的传输现象。以这样的方式配置电磁场,使得所产生的洛伦兹力可用于阻尼和/或抵消自然对流以及由沉降和/或漂浮产生的流动,从而模拟外太空的低重力环境。使用基于控制量的有限差分方案离散控制方程。对于真实的低重力环境以及由于电磁力引起的模拟低重力条件,获得了数值解。结果表明,仅在磁场作用下产生洛伦兹力时,通过阻尼效应模拟了低重力条件,这对流场具有深远的影响。另一方面,表明在电磁场模拟中,由于横向电场和磁场引起的洛伦兹力,可以使由高磁场引起的流场畸变最小,因此可以实现更好的模拟。低重力。

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