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Effects of thermal radiation parameter and magnetic field on the peristaltic motion of Williamson nanofluids in a tapered asymmetric channel

机译:热辐射参数和磁场对锥形不对称通道中Williamson纳米流体蠕动的影响

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This paper deals with a theoretical investigation of the peristaltic transport of a Williamson nanofluid in a tapered asymmetric channel under the action of a thermal radiation parameter. In general, the nanofluids are electrically conducting nature. A model of wall-induced fluid flow within an infinite tapered channel has been developed to simulate the transport phenomena due to asymmetric wall displacements. This problem has plentiful applications. Moreover, it may serve as a model for the intrauterine fluid motion in a sagittal cross-section of the uterus under cancer therapy and drug analysis. The analytical solution has been obtained for the temperature and concentration of the nanofluid. The expressions for the axial velocity, stream function and pressure gradient were also obtained by a regular perturbation technique. Numerical computations have been performed for the pressure rise and the effect of various emerging parameters on the flow characteristics are shown and discussed with the help of graphs. The numerical results shown that the trapped bolus was increased in size and more trapped bolus were also occurred near the right wall with increasing Weissenberg number and thermophoresis parameter but that got decreased for large values of local temperature Grashof number.
机译:本文研究了在热辐射参数作用下,锥形不对称通道中威廉姆森纳米流体的蠕动传输的理论研究。通常,纳米流体是导电的。已经开发了无限锥形通道内壁诱导流体流动的模型,以模拟由于非对称壁位移而引起的传输现象。这个问题有很多应用。而且,它可以用作在癌症治疗和药物分析下子宫的矢状横截面中子宫内流体运动的模型。已经获得了纳米流体的温度和浓度的分析溶液。还通过常规的扰动技术获得了轴向速度,流函数和压力梯度的表达式。已经对压力升高进行了数值计算,并借助图形显示和讨论了各种新兴参数对流动特性的影响。数值结果表明,随着Weissenberg数和热泳参数的增加,捕获的团块的尺寸增加,并且在右壁附近也出现了更多的捕获团块,但是对于较大的局部温度Grashof值,捕获的团块减少了。

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