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具有幂律纳米流体流动的导管内辐射热传递的计算评估
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作者 sohail rehman Syed Inayat Ali SHAH +1 位作者 HASHIM Sana Ben MOUSSA 《Journal of Central South University》 SCIE EI CAS CSCD 2023年第8期2642-2656,共15页
利用因热源作用而收缩和膨胀的导管研究一阶化学反应和热辐射对幂律Carreau流体热质传输的影响。考虑了以热辐射形式产生热量的流体流动的体积热源和非线性热辐射。采用基于射击简单算法的RK-4方法对径向模式下的质量、动量、能量和物... 利用因热源作用而收缩和膨胀的导管研究一阶化学反应和热辐射对幂律Carreau流体热质传输的影响。考虑了以热辐射形式产生热量的流体流动的体积热源和非线性热辐射。采用基于射击简单算法的RK-4方法对径向模式下的质量、动量、能量和物种浓度等基本守恒方程进行了重构和数值求解。考虑粒子的布朗性和热泳性,纳米粒子存在的模型是现象模型。将动量方程与扩展Jaffrey-Hamel问题的Carreau模型组合在一起。不同幂律指数对流体摩擦传热、传热量和传质的影响主要表现在流变性能上,说明剪切增稠型流体比剪切减薄型流体更有效。热传输率在热源处最大,在幂指数最大化时最小。这些研究可能有助于开发一种物理上合理的方法,用于系统化评估收缩/扩张通道中的流体流动和能量使用。 展开更多
关键词 热传导 热辐射 发热 Jaffrey-Hamel流 幂律Carreau流体 数值结果
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Dissipative flow features of Carreau nanofluid with thermal radiation inside plane wall channel:Jeffery-Hamel analysis 被引量:1
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作者 sohail rehman Hashim +2 位作者 Fuad A.MAl-Yarimi Sultan Alqahtani Mohammed Awade 《Propulsion and Power Research》 SCIE 2023年第2期253-272,共20页
The current article communicates a numerical investigation on laminar flow of dissipative generalized Newtonian Carreau nanofluid flowing through vertical conduit with converging and diverging plane walls.Thermal and ... The current article communicates a numerical investigation on laminar flow of dissipative generalized Newtonian Carreau nanofluid flowing through vertical conduit with converging and diverging plane walls.Thermal and concentration characteristics due to enthalpy change,activation energy,and non-linear thermal radiation have been examined in the presence of buoyancy forces.The channel walls for both temperature and volumetric fraction are assumed to be isothermal.The instability mechanism of nanofluids is reported using a two-phase nanofluid model,which works reasonably well for nanoparticle concentrations below a certain threshold.A Jeffery-Hamel(J-H)flow model is developed by assuming an incompressible purely radial flow of Carreau nanofluids with heat and mass transportation.Using the suitable non-dimensional variables,the resulting nonlinear partial differential equations are turned into a system of ordinary differential equations.The modified governing equations are then numerically solved using the built-in boundary value problem solver bvp4c,on the template form of commercial software MATLAB.The impacts of material,geometrical and thermophysical parameters governing the J-H problem are discussed and illustrated.Results indicate that higher buoyance forces incline the velocity profiles in converging enclosure,while a slight reduction is perceived in opposing forces.A significant decrease of wall heat transmission is reflected for larger values of activation energy and radiation parameter.For endorsing this communication,a comparison analysis is established with existing research and noticed a remarkable agreement.Practically,the flow inside converging and diverging channels are deployed in nuclear reactors that use plate-type nuclear energies,high heat-flux condensed heat exchangers,high-performance micro-electronic cooling systems,jets,rockets nozzles,and jet propulsion inlet. 展开更多
关键词 Nanofluids Buoyancy forces Converging/diverging channels Thermal radiation Activation energy Carreau fluid
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