...
首页> 外文期刊>Military operations research >Simulative analysis of turbulent flow through a circular conduit with uniform wall temperature and constant heat flux boundary conditions
【24h】

Simulative analysis of turbulent flow through a circular conduit with uniform wall temperature and constant heat flux boundary conditions

机译:均匀壁温和恒定热通量边界条件下通过圆形管道的湍流模拟分析

获取原文
获取原文并翻译 | 示例
           

摘要

Purpose - This study aims to investigate numerically a two-dimensional fully developed mean turbulent fluid flow, and heat transfer in a circular duct is numerically investigated using FORTRAN 95 code that applies the finite difference method to solve the thermal problem for the two thermal boundary conditions, constant surface temperature, constant heat and steady, axisymmetric flow. Several important results have been drawn and discussed from thermal analysis. Finally, the numerical results of the model developed in the document have been validated in good accuracy by comparing them with some correlation results available in the specialized literature. Design/methodology/approach - The methodology of solving the thermal problem is based on the equation of energy for a fluid of constant properties while taking into consideration the hypothesis of the axisymmetric and fully developed pipe flow in steady state. The global equation and the initial and boundary conditions acting on the problem have been configured here in dimensionless form to predict the turbulent behavior of the fluid inside the tube. Thus, using Thomas' algorithm, a program in FORTRAN version 95 was developed to numerically solve the discretized form of the system of equations describing the problem. Findings - The profiles of the solutions are provided from which the authors infer that the numerical and literature correlation agreed very well. Another result that they obtained from this study is the number of Nusselt in the thermal entrance region to which a parametric study based on Reynolds and Peclet numbers, and the longitudinal coordinate, was carried out and discussed well for the impact of the scientific contribution. Originality/value - The novelty of the work is the application of the finite difference method programed on the FORTRAN code, as a sequential numerical method of an ODEs system, to determine the number of Nusselt in both uniform wall temperature and wall heat flux uniform.
机译:目的-本研究旨在对二维完全展开的平均湍流流动进行数值研究,并使用FORTRAN 95代码对圆形管道中的传热进行数值研究,该代码应用有限差分方法来解决两个热边界条件下的热问题,恒定的表面温度,恒定的热量以及稳定的轴对称流动。从热分析中得出了一些重要的结果并进行了讨论。最后,通过将它们与专业文献中提供的一些相关结果进行比较,已经很好地验证了文档中开发的模型的数值结果。设计/方法/方法-解决热问题的方法基于恒定性质的流体的能量方程,同时考虑到稳态时轴对称且充分展开的管道流动的假设。此处已以无量纲形式配置了作用于该问题的全局方程式以及初始条件和边界条件,以预测管内流体的湍流行为。因此,使用托马斯算法,开发了FORTRAN 95版中的程序,以数字方式求解描述问题的方程组的离散形式。结果-提供了解决方案的简介,从中作者推断出数值和文献的相关性非常好。他们从这项研究中获得的另一个结果是热入口区域的Nusselt数量,并基于雷诺兹和Peclet数以及纵向坐标对参数进行了参数研究,并对科学贡献的影响进行了很好的讨论。原创性/价值-这项工作的新颖性是应用在FORTRAN代码上编程的有限差分方法(作为ODEs系统的顺序数值方法)来确定均匀壁温和均匀壁热通量中的努塞尔数。

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