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Unsteady bioconvection squeezing flow in a horizontal channel with chemical reaction and magnetic field effects

机译:具有化学反应和磁场作用的水平通道中非稳态生物对流挤压流动

摘要

The time-dependent mixed bioconvection flow of an electrically conducting fluid between two infinite parallel plates in the presence of a magnetic field and a first-order chemical reaction is investigated. The fully coupled nonlinear systems describing the total mass, momentum, thermal energy, mass diffusion, and microorganisms equations are reduced to a set of ordinary differential equations via a set of new similarity transformations. The detailed analysis illustrating the influences of various physical parameters such as the magnetic, squeezing, and chemical reaction parameters and the Schmidt and Prandtl numbers on the distributions of temperature and microorganisms as well as the skin friction and the Nusselt number is presented. The conclusion is drawn that the flow field, temperature, and chemical reaction profiles are significantly influenced by magnetic parameter, heat generation/absorption parameter, and chemical parameter. Some examples of potential applications of such bioconvection could be found in pharmaceutical industry, microfluidic devices, microbial enhanced oil recovery, modeling oil, and gas-bearing sedimentary basins.
机译:研究了在存在磁场和一级化学反应的情况下,两个无限平行板之间的导电流体随时间的混合生物对流。通过一组新的相似变换将描述总质量,动量,热能,质量扩散和微生物方程的完全耦合非线性系统简化为一组常微分方程。进行了详细的分析,阐明了各种物理参数(如磁,挤压和化学反应参数)以及施密特和普朗特数对温度和微生物分布以及皮肤摩擦和努塞尔数的影响。得出的结论是,流场,温度和化学反应曲线受磁参数,生热/吸收参数和化学参数的影响很大。这种生物对流的潜在应用的一些例子可以在制药工业,微流体装置,微生物强化采油,模拟石油和含气沉积盆地中找到。

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