...
首页> 外文期刊>Journal of Thermal Science and Technology >Formulation of steady-state void fraction through the principle of minimum entropy production
【24h】

Formulation of steady-state void fraction through the principle of minimum entropy production

机译:通过最小熵生产原理制定稳态空隙分数

获取原文

摘要

The complexity of the actual operation of thermal engineering systems comprises multiphase interfacial phenomena evolving out of equilibrium. Therefore, their generalised formulation can contribute towards better understanding and control of these phenomena, eventually pushing the existing related technologies beyond the state-of-the-art. In this respect, variational principles are significant for a more comprehensive physical representation and for closing the problem, while obtaining relatively simpler mathematical formulations. In this study, a general variational formulation of dissipative two-phase flows based on the minimum entropy production is developed. In particular, this study provides a general expression of the entropy generation rate, which introduces interfacial contributions due to surface tension between different phases, and is used to estimate two-phase flow fraction based on Prigogine's theorem of minimum entropy generation. Subsequently, this formulation is investigated in terms of different assumptions and pressure drop models, and employed to clarify the implementation of Prigogine's theorem to obtain the widely-accepted Zivi's expression of void fraction and the effect of different assumptions on the deviation from his expression. A new expression is finally obtained to cover laminar flow conditions, which are implicitly excluded from the applicability of Zivi’s expression.
机译:热工程系统的实际操作的复杂性包括不平衡的多相界面现象。因此,他们的广义配方可以有助于更好地理解和控制这些现象,最终推动现有的相关技术超出最先进的现有技术。在这方面,变分原理对于更全面的物理表示和关闭问题是重要的,同时获得相对更简单的数学制剂。在该研究中,开发了基于最小熵产生的耗散两相流的一般变分制剂。特别地,该研究提供了熵产生率的一般表达,这引起了由于不同阶段之间的表面张力引起的界面贡献,并且用于估计基于Progogine的最小熵生成定理的两相流程。随后,在不同的假设和压力下降模型方面研究了该制剂,并采用了阐明了普罗宾定理的实施,以获得广泛接受的Zivi对空隙分数的表达和不同假设对与他表达偏差的影响。最终获得了一种新的表达以覆盖层流的条件,隐含地排除在Zivi表达的适用性之外。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号