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首页> 外文期刊>Heat transfer >Nonlinear usual convection flow of couple stress micropolar nanofluids over isothermal sphere with non-Fourier's heat and non-Fick's mass fluxes under high classify slip states
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Nonlinear usual convection flow of couple stress micropolar nanofluids over isothermal sphere with non-Fourier's heat and non-Fick's mass fluxes under high classify slip states

机译:非线性常用对流流动对等温球体的颈部压力微柱纳米流体,在高分性滑动状态下具有非傅立叶热和非Fick的群众助熔剂

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The goal of this study is to examine the influences of couple stress, the ratio of buoyancy forces, and thermal and solutal relaxation time constraints on two state line sheet flow of nonlinear movement flow of couple stress micropolar nanofluid past the isothermal ball. The mathematical modeling for the flow problem has been made with appropriate likeness change with non-dimensional variables. The goal of nonlinear state line value problems were implied in combined high classifies nonlinear ordinary degree of difference equations. The equations were calculated by using the technique bvp4c from Matlab software for numerous quantities of main constraints. Influences of constraints on velocities, thermal, and solutal profiles are displayed from side to side of the charts. The junction test has been continued; for spots larger than apposite web spots, the meticulousness is not affected. Moreover, a comparison with previous papers reachable in the literature has been reported as well as an excellent agreement is presented. The results show that enhancing thermal relaxation time parameter Fo agree to reduce micro-inertia density that improve velocity profile f(η), temperature distribution θ(η), Nusselt number - θ'(η) and Sherwood number -(9)'(0), and reduce concentration distribution (9)(η), coefficient of skin friction and wall couple stress -f"(0) and h'(0) respectively.
机译:本研究的目的是研究夫妻应力,浮力力的比例,以及对夫妻胁迫下纳米流体的两个状态线纸张流动对等温球的两个状态线纸流量的影响。使用非维变量的适当相似变化进行了流动问题的数学建模。非线性状态线值问题的目标暗示高分类非线性普通差方程。通过使用来自MATLAB软件的技术BVP4C为许多主要约束来计算方程。限制对速度,热和岩石谱的影响从图表的侧面显示。结转测试已继续;对于大于施加网斑的斑点,细致不受影响。此外,已经报告了与文献中可达的先前纸张的比较,并提出了一个很好的协议。结果表明,增强的热弛豫时间参数FO同意降低微惯性密度,从而提高速度曲线F(η),温度分布θ(η),NUSERET号 - θ'(η)和舍伍德号 - (9)'( 0),并减少浓度分布(9)(η),皮肤摩擦系数和壁耦合应力-F“(0)和H'(0)。

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