首页> 外文期刊>Journal of Materials Research and Technology >CFD analysis for characterization of non-linear power law material in a channel driven cavity with a square cylinder by measuring variation in drag and lift forces
【24h】

CFD analysis for characterization of non-linear power law material in a channel driven cavity with a square cylinder by measuring variation in drag and lift forces

机译:通过测量阻力和提升力的变化,通过方形气缸表征沟道驱动腔中非线性功率法材料的CFD分析

获取原文
           

摘要

Current communication is manifested to investigate flowing features of power law material in a newly proposed physical configuration namely the channel driven cavity. Since power law fluid discloses the dynamical features of shear thinning, shear thickening and Newtonian materials so in present communication it is considered for depiction of flow attributes. To achieve the desired outcomes from the work, a unit length cavity is placed below the channel. The flow is induced with parabolic inlet velocity and a Neumann condition is applied at the outlet, while no slip condition is set at all other boundaries. A square cylinder is placed in the channel with varying positions giving rise to three computational grids named asG1,?G2andG3.Mathematical modelling is constructed by obliging fundamental conservation and rheological laws for power law fluid. Since the representative equations are complex in nature so an efficient computational procedure based on finite element method (FEM) is executed. A hybrid computational grid is generated at coarse level and then further refinement is done to improve the accuracy of the solution. The solution is approximated by adoptingP2?P1element based on second and first order polynomial shape functions. Graphical trends against involved parametric variables are adorned. In addition for more physical insight of problem velocity and pressure plots and line graphs are added. Furthermore, the hydrodynamical benchmark quantities like pressure drop, drag and lift coefficients are evaluated in tabular form around the outer surface of obstacle.
机译:目前的通信表现为在新提出的物理配置中调查电力法材料的流动特征即,即通道驱动腔。由于电力法流体公开了剪切稀化,剪切增稠和牛顿材料的动态特征,因此在当前的通信中被认为是对流动属性的描述。为了达到工作中所需的结果,单位长度腔被放置在通道下方。用抛物线入口速度诱导流动,并且在出口处施加Neumann条件,而在所有其他边界处没有滑动条件。方形圆筒放置在通道中,具有不同的位置,从而产生三个名为ASG1的计算网格,ΔG2andG3.Mohematical建模是通过促进电力法流体的基本保护和流变法来构建。由于代表方程在自然界中是复杂的,因此执行基于有限元方法(FEM)的有效计算过程。混合计算网格在粗级产生,然后进行进一步的改进以提高解决方案的准确性。基于第二和第一阶多项式形状函数,通过AdoptingP2Δp1Element来近似。涉及涉及参数变量的图形趋势是装饰的。另外,对于速度和压力图和压力图和线图,添加了更多的物理洞察力。此外,在障碍物外表面周围以表格形式评估像压降,拖曳系数的流体动力学基准量。

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