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FLUSHING OF NON-CONDENSABLE GASES BY SATURATED STEAM

机译:饱和蒸汽冲洗不凝性气体

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This paper presents a study of flushing non-condensable (NC) gases out of a chamber by a saturated steam flow. During the flushing and mixing process, significant heat transfer occurs among the NC gases, steam and the chamber wall, with a coupled steam condensation. The flushing effectiveness hence is strongly dependent upon the mixing, condensation characteristics, the steam feeding rate as well as the thermal capacity of wall. The objective of this study is to explore modeling approaches on such a process which would be applied to assist the optimization of the process design and operation. An experimental system has been developed to provide a set of data for model validations. A simple mechanistic model based has also been developed to show the "equilibrium based" flushing characteristics. However, to account for finite rate of heat and mass transfer and non-uniform mixing, a more complicated full-field computational fluid dynamics modeling and simulation must be involved. The typical boundary conditions in most commercial CFD codes (such as FLUENT) cannot be directly applied to the flushing processes due to the coupled surface condensation. Hence, in this paper, we have also proposed the condensation-based boundary conditions for the CFD simulations. Full-field CFD simulations with those boundary conditions are being investigated.
机译:本文介绍了一种通过饱和蒸汽流将不可冷凝(NC)气体冲洗出腔室的研究。在冲洗和混合过程中,大量的热传递发生在NC气体,蒸汽和腔室壁之间,并伴有蒸汽凝结。因此,冲洗效率在很大程度上取决于混合,冷凝特性,蒸汽进给速度以及壁的热容量。这项研究的目的是探索有关此过程的建模方法,这些方法可用于协助优化过程设计和操作。已经开发了实验系统以提供一组用于模型验证的数据。还开发了一种基于简单的机械模型来显示“基于平衡”的冲洗特性。但是,要考虑有限的传热和传质速率以及不均匀的混合,必须涉及更复杂的全场计算流体动力学建模和模拟。由于耦合的表面凝结,大多数商业CFD代码(例如FLUENT)中的典型边界条件无法直接应用于冲洗过程。因此,在本文中,我们还为CFD仿真提出了基于冷凝的边界条件。正在研究具有这些边界条件的全场CFD模拟。

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