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梯形细壁隧道内传热和非稳态粘性流的数学检验。

Mathematical inspection of heat transfer and unsteady viscous flow in a tunnel with trapezoidal shaped slender wall.

机构信息

Department of Mathematics, University of Gujrat, Gujrat, 50700, Pakistan.

Department of Mechanical Engineering, College of Engineering, Imam Mohammad Ibn Saud Islamic University (IMSIU), Riyadh, Saudi Arabia.

出版信息

Sci Rep. 2023 Jul 4;13(1):10830. doi: 10.1038/s41598-023-37816-4.

Abstract

An exploration is made to investigate numerically and theoretically the time dependent flow of blood along with heat transfer through abnormal artery having trapezoidal shaped plaque. The flow is taken to be Newtonian, laminar, unsteady and incompressible. A suitable geometrical model is constructed to simulate the trapezoidal stenosis affected artery. The governed 2-dimensional momentum and heat transfer equations are conventionalized by assuming mild trapezoidal stenosis. The renovate partial differential equations are further converted into ordinary differential equations by assist of transformations. The novelty of the work is to consider unsteady blood flow through trapezoidal shape stenosed artery. A technique of finite difference is used to discretize the updated dimensionless model numerically. Comprehensive graphical outcomes for a flow of blood are obtained. The effect of trapezoidal plaque on blood velocity, pressure and temperature are shown by surface graph inside the artery and also shown with the help of line graph.

摘要

对具有梯形斑块的异常动脉中随时间变化的血液流动及传热进行数值和理论研究。假设流动为牛顿型、层流、非稳态和不可压缩的。构建了一个合适的几何模型来模拟梯形狭窄动脉。通过假设轻度梯形狭窄,对控制二维动量和传热方程进行了常规化。通过变换进一步将更新的偏微分方程转换为常微分方程。这项工作的新颖之处在于考虑了通过梯形形状狭窄动脉的非稳态血流。使用有限差分技术对更新的无量纲模型进行数值离散化。获得了血液流动的全面图形结果。通过在动脉内部的表面图以及通过线图的帮助,显示了梯形斑块对血流速度、压力和温度的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/98d3/10319819/82a65fec1166/41598_2023_37816_Fig1_HTML.jpg

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