错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

A Numerical Investigation of Hybrid Ag-Cu/Blood MHD Flow in a Constricted Porous Arterial Conjecture Under the Influence of Radiation

  • Karishma Karam Ahmed,
  • Sahin Ahmed

摘要

The current article investigates the hybridized version of nanofluid blood flow in a stenotic arterial system under the influence of radiation and an external magnetic field over a porous media. The current geometric study is unusual because, in the presence of heat radiation, it conducts a numerical analysis of the blood flow data collected from the sick artery system under examination over a horizontal porous surface. Consideration is given to the hybridized system of copper and silver nanoparticles using blood as the basis fluid. Using similarity transformations, the gubernatorial equations of the biofluid flow archetype are translated into partial differential equations that are then transformed into assemblages of ordinary differential equations. The principal characteristics of the MHD flow of blood in the arterial system are presented distinctly by depicting binate solutions obtained for velocity and temperature of the biofluid. The effects of the bio-fluid’s variables with varied parameters like magnetic drag force (M), volume fraction of silver ( \(\phi _1\) ) and volume fraction of copper ( \(\phi _2\) ), porosity parameter ( \(K_p\) ), flow parameter( \(\gamma \) ), Prandtl number (Pr), and radiation(Rd) are demonstrated and described using MATLAB software’s bvp4c solver and graphs. Comparing numerical summaries of the classified results with numerical analyses of previously published work, it is determined that they are appropriate. This study is beneficial in analysis of pulsatile muscle movements, hyperthermia treatments, simple flow movements, phenomenon of vasoconstriction, lipolytic treatments, medication delivery arrangements based on nanotechnology and pulsatile blood flow analysis for certain medical treatments, etc.