Using Experimental Fluid Dynamics and Computational Fluid Dynamics for Evaluating Periodic Mixing

J. Bamberger, L. Pease, K. Recknagle, C. Enderlin, M. Minette
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引用次数: 0

Abstract

Periodic mixing using pulse jet mixers is being developed and applied for processing unique slurries of radioactive waste that depending upon the slurry properties may possess either Newtonian or non-Newtonian characteristics. To investigate the performance of these mixing systems, scaled experimental fluid dynamics (EFD) experiments have been conducted and in addition, for certain investigations, computational fluid dynamics (CFD) simulations have been applied. The purpose of this paper is to describe the periodic mixing processes, elaborate regarding the types of scaled experiments that were conducted, and present examples of computational investigations conducted to further define the mixing system performance. The experimental investigations showed the ability to track visual metrics such as cloud height and cavern size. The computational investigations demonstrated the ability to model full-scale experiments with Newtonian slurries.
用实验流体力学和计算流体力学评价周期性混合
使用脉冲喷射混合器进行周期性混合正在被开发并应用于处理放射性废物的独特浆料,根据浆料的性质,这些浆料可能具有牛顿或非牛顿特性。为了研究这些混合系统的性能,已经进行了规模实验流体动力学(EFD)实验,此外,对于某些研究,还应用了计算流体动力学(CFD)模拟。本文的目的是描述周期性混合过程,详细说明所进行的尺度实验的类型,并提供计算研究的例子,以进一步定义混合系统的性能。实验调查显示了跟踪云高度和洞穴大小等视觉指标的能力。计算研究证明了用牛顿泥浆模拟全尺寸实验的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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