...
首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Multidimensional Predictions of In-Cylinder Turbulent Flows: Contribution to the Assessment of k-Turbulence Model Variants for Bowl-in-Piston Engines
【24h】

Multidimensional Predictions of In-Cylinder Turbulent Flows: Contribution to the Assessment of k-Turbulence Model Variants for Bowl-in-Piston Engines

机译:缸内湍流的多维预测:对碗内活塞式发动机的k湍流模型变体的评估做出贡献

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Multidimensional computational fluid dynamics (CFD) codes with reliable turbulence models are useful investigation and design tools for internal combustion engines, in-cylinder flow phenomena being critical to the combustion process and related emission sources. Although a variety of turbulence models has long been proposed, the assessment of even the most widely used k-ε model is still lacking, especially for bowl-in-piston engines. This paper provides a survey of k-ε turbulence model variants and their numerical implementation for in-cylinder flow analysis. Mean motion and turbulence quantities were simulated in the axisymmetric combustion chamber of a motored model engine featuring one centrally located valve and each of a flat-piston and cylindrical bowl-in-piston arrangements. A noncommercial CFD code developed by the authors was applied for calculation, using a finite-volume conservative implicit method and applying various order-of-accuracy numerical schemes. Simulation results are presented at the engine speed of 200 rpm throughout the whole engine cycle. These were obtained using three k-ε turbulence model versions, standard, renormalization group (RNG) and two scale, each of which focuses on one main engine flow feature, i.e., compressibility, anisotropy, and high unsteadiness, respectively. Modified boundary conditions with respect to conventional logarithmic wall functions were applied. Effects of equation-differencing scheme and computational-grid spacing effects on flow predictions were tested. The numerical results were compared to those of laser Doppler velocimetry measurements and the influence of the k-ε model variants on the flow-field features was examined during the induction stroke and around compression top dead center. For the flat-piston case, a comparison between the homemade and commercial STAR-CD code results was also made.
机译:具有可靠湍流模型的多维计算流体动力学(CFD)代码对于内燃机是有用的研究和设计工具,缸内流动现象对于燃烧过程和相关排放源至关重要。尽管长期以来已经提出了各种湍流模型,但仍缺乏对最广泛使用的k-ε模型的评估,特别是对于活塞碗式发动机。本文提供了k-ε湍流模型变体及其在缸内流动分析中的数值实现的概述。在电动模型发动机的轴对称燃烧室中模拟了平均运动量和湍流量,该模型具有一个位于中央的气门,以及扁平活塞和圆柱形活塞碗式布置。由作者开发的非商业CFD代码用于计算,使用了有限体积的保守隐式方法并应用了各种精度的数值方案。在整个发动机循环中以200 rpm的发动机转速显示仿真结果。这些是使用三种k-ε湍流模型版本,标准,重归一化组(RNG)和两种比例获得的,每种模型分别关注一个主要的发动机流动特征,即可压缩性,各向异性和高度不稳定。相对于常规对数壁函数,应用了修改后的边界条件。测试了方程差分方案和计算网格间距对流量预测的影响。将数值结果与激光多普勒测速仪的测量结果进行了比较,并在感应冲程和压缩上止点附近检查了k-ε模型变量对流场特征的影响。对于扁平活塞箱,还对自制和商用STAR-CD代码结果进行了比较。

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