首页> 外文OA文献 >Numerical investigation of models for drag, lift, wall lubrication and turbulent dispersion forces for the simulation of gas-liquid two-phase flow
【2h】

Numerical investigation of models for drag, lift, wall lubrication and turbulent dispersion forces for the simulation of gas-liquid two-phase flow

机译:用于模拟气液两相流的阻力,升力,壁面润滑和湍流弥散力模型的数值研究

摘要

In order to qualify CFD codes for accurate numerical predictions of transient evolution of flow regimes in a vertical gas–liquid two-phase flow in a pipe, suitable closure models (inter-phase forces) for the momentum exchange between the continuous and dispersed phases are needed. In this study, under the assumption of monodisperse bubbles, a consistent set of inter-phase force models have been investigated. The effect of Drag Force, Lift Force, Wall Lubrication Force and Turbulent Dispersion Force has been assessed. The predicted local radial distributions of four primitive variables: gas volume fraction, interfacial area concentration, gas velocity and liquid velocity, are validated against experimental data of Monrós-Andreu et al. (2013, EPJ Web Conf. 45, 01105). New parameters have been introduced in the wall lubrication force models of Antal et al. (1991, Int. J. Multiphase Flow 7, 635) and Frank et al., (2004, Proc. of the Third Int. Symposium on Two-Phase Modelling and Experimentation, Pisa, Italy, 2008, Nucl. Eng. and Des. 238, 647) as well as implementing additional drag coefficient models using CFX expression language (CEL). In general, the predictions from the sets of inter-phase closure models presented in this paper yielded satisfactory agreement with the experimental results. Based on the result of the validation of different inter-phase force models, a set of Grace drag coefficient model, Tomiyama lift coefficient model, Antal et al.’s wall force model, and Favre averaged turbulent dispersion force was found to provide the best agreement with the experimental data.
机译:为了使CFD代码能够对管道中垂直气液两相流中流态的瞬态演变进行准确的数值预测,需要使用合适的封闭模型(相间力),以进行连续相和分散相之间的动量交换。需要。在这项研究中,在单分散气泡的假设下,研究了一致的相间力模型集。评估了阻力,升力,壁润滑力和湍流分散力的影响。根据Monrós-Andreu等人的实验数据验证了四个原始变量(气体体积分数,界面面积浓度,气体速度和液体速度)的预测局部径向分布。 (2013,EPJ Web Conf.45,01105)。在Antal等人的壁润滑力模型中引入了新参数。 (1991,国际J. Multiphase Flow 7,635)和弗兰克(Frank)等人(2004,第三届国际两相建模与实验研讨会论文集,意大利比萨,2008,核工程与设计(238、647),以及使用CFX表达语言(CEL)实施其他阻力系数模型。一般而言,本文提出的相间闭合模型集的预测与实验结果令人满意。根据不同相间力模型的验证结果,发现一组格雷斯阻力系数模型,富山升力系数模型,安塔尔等人的壁力模型和Favre平均湍流弥散力提供了最好的与实验数据一致。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

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