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Comparative Numerical Analysis of Heat and Mass Transfer Characteristics in Sisko Al_(2)O_(3)-Eg and TiO_(2)-Eg Fluids on a Stretched Surface
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作者 K.Jyothi Abhishek Dasore +3 位作者 R.Ganapati Sk.Mohammad Shareef Ali J.Chamkha V.Raghavendra Prasad 《Frontiers in Heat and Mass Transfer》 EI 2024年第1期79-105,共27页
In the current research,a thorough examination unfolds concerning the attributes of magnetohydrodynamic(MHD)boundary layer flow and heat transfer inherent to nanoliquids derived from Sisko Al_(2)O_(3)-Eg and TiO_(2)-E... In the current research,a thorough examination unfolds concerning the attributes of magnetohydrodynamic(MHD)boundary layer flow and heat transfer inherent to nanoliquids derived from Sisko Al_(2)O_(3)-Eg and TiO_(2)-Eg compositions.Such nanoliquids are subjected to an extending surface.Consideration is duly given to slip boundary conditions,as well as the effects stemming from variable viscosity and variable thermal conductivity.The analytical approach applied involves the application of suitable similarity transformations.These conversions serve to transform the initial set of complex nonlinear partial differential equations into a more manageable assembly of ordinary differential equations.Through the utilization of the FEM,these reformulated equations are solved,considering the specified boundary conditions.The outcomes attained are graphically depicted by means of plots and tables.These visual aids facilitate a comprehensive exploration of how diverse parameters exert influence over the distributions of velocity,temperature,and concentration.Furthermore,detailed scrutiny is directed towards the fluctuations characterizing pivotal parameters,viz.,Nusselt number,skin-friction coefficient,and Sherwood number.It is identified that the Nusselt number showcases a diminishing trend coinciding with increasing values of the volume fraction parameter(φ).This trend remains consistent regardless of whether the nanoliquid under consideration is Al_(2)O_(3)-Eg or TiO_(2)-Eg based.In contrast,both the skin-friction coefficient and Sherwood number assume lower values as the volume fraction parameter(φ)escalates.This pattern remains congruent across both classifications of nanoliquids.The findings of the study impart valuable insights into the complex interplay governing the characteristics of HMT pertaining to Sisko Al_(2)O_(3)-Eg and TiO_(2)-Eg nanoliquids along an extending surface. 展开更多
关键词 MHD boundary layer flow heat transfer Sisko Al_(2)O_(3)-Eg and TiO_(2)-Eg nanoliquids slip boundary conditions variable thermal conductivity nusselt number
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Mixed convective heat and mass transfer analysis for peristaltic transport in an asymmetric channel with Soret and Dufour effects 被引量:5
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作者 F.M.Abbasi A.Alsaedi T.Hayat 《Journal of Central South University》 SCIE EI CAS 2014年第12期4585-4591,共7页
The present investigation addresses the simultaneous effects of heat and mass transfer in the mixed convection peristaltic flow of viscous fluid in an asymmetric channel. The channel walls exhibit the convective bound... The present investigation addresses the simultaneous effects of heat and mass transfer in the mixed convection peristaltic flow of viscous fluid in an asymmetric channel. The channel walls exhibit the convective boundary conditions. In addition, the effects due to Soret and Dufour are taken into consideration. Resulting problems are solved for the series solutions. Numerical values of heat and mass transfer rates are displayed and studied. Results indicate that the concentration and temperature of the fluid increase whereas the mass transfer rate at the wall decreases with increase of the mass transfer Biot number. Furthermore, it is observed that the temperature decreases with the increase of the heat transfer Biot number. 展开更多
关键词 peristaltic transport heat and mass transfer Soret and Dufour effects convective boundary conditions
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General Solution for Unsteady Natural Convection Flow with Heat and Mass in the Presence of Wall Slip and Ramped Wall Temperature
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作者 Saeed Ullah Jan Sami Ul Haq +2 位作者 Syed Inayat Ali Shah Ilyas Khan Muhammad Atif Khan 《Communications in Theoretical Physics》 SCIE CAS CSCD 2019年第6期647-657,共11页
This work is focused on the effect of heat and mass transfer with unsteady natural convection flow of viscous fluid along with ramped wall temperature under the assumption of the slip wall condition at the boundary. A... This work is focused on the effect of heat and mass transfer with unsteady natural convection flow of viscous fluid along with ramped wall temperature under the assumption of the slip wall condition at the boundary. Analytical solutions are obtained by using Laplace transformation to the non-dimensional set of governing equations containing velocity, temperature and concentration. Moreover, the expression for skin-friction is derived by differentiating the analytical solutions of fluid velocity. Numerical tables for Skin-friction, Sherwood number and Nusselt-number are examined. For the physical aspects of the flow, we use various values of involved physical parameters such as Prandtl number(Pr), slip parameter(η), Schmidt number(Sc), buoyancy ratio parameter(N), Sherwood number(Sh), and time(t). Additionally, the general solutions are plotted graphically and a comprehensive theoretical section of numerical discussions is included. 展开更多
关键词 SLIP boundary condition heat and mass transfer SKIN-FRICTION
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Analysis of 2D Flow and Heat Transfer Modeling in Fracture of Porous Media 被引量:9
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作者 GUO Chunsheng NIAN Xianbo +3 位作者 LIU Yong QI Chao SONG Jinsheng YU Wenhe 《Journal of Thermal Science》 SCIE EI CAS CSCD 2017年第4期331-338,共8页
Heat and mass transfer between porous media and fluid is a complex coupling process, which is widely used in various fields of engineering applications, especially for natural and artificial fractures in oil and gas e... Heat and mass transfer between porous media and fluid is a complex coupling process, which is widely used in various fields of engineering applications, especially for natural and artificial fractures in oil and gas extraction. In this study, a new method is proposed to deal with the flow and heat transfer problem of steady flow in a fracture. The fluid flow in a fracture was described using the same method as Mohais, who considered a fracture as a channel with porous wall, and the perturbation method was used to solve the mathematical model. Unlike previous studies, the shear jump boundary condition proposed by Ochoa-Tapia and Whitaker was used at the interface between the fluid and porous media. The main methods were perturbation analysis and the application of shear jump boundary conditions. The influence of permeability, channel width, shear jump degree and effective dynamic viscosity on the flow and heat transfer in the channel was studied by analysing the analytical solution. The distribution of axial velocity in the channel with the change of the typical parameters and the sensitivity of the heat transfer was obtained. 展开更多
关键词 heat and mass transfer FRACTURE Porous Media Stress Jump boundary condition Analytical Solution
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太阳能平板降膜再生过程的数值模拟 被引量:4
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作者 杜斌 施明恒 《东南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2005年第6期903-906,共4页
针对太阳能平板集热型再生器中辐射传热和对流传热边界条件,建立了传热传质过程的数学模型,对采用氯化钙溶液的再生过程进行了数值模拟分析,对影响再生过程的各种主要因素做了较详尽的分析.模拟结果表明,较低的溶液入口质量分数和空气... 针对太阳能平板集热型再生器中辐射传热和对流传热边界条件,建立了传热传质过程的数学模型,对采用氯化钙溶液的再生过程进行了数值模拟分析,对影响再生过程的各种主要因素做了较详尽的分析.模拟结果表明,较低的溶液入口质量分数和空气入口含湿量以及较高的溶液入口温度能够增大溶液表面和空气间的水蒸气压力差;而增大空气流动Re数和空气/溶液质量流量比可以提高空气、溶液间水分传质系数.采用这些措施都能够得到更好的再生效果. 展开更多
关键词 降膜 再生 边界条件 传热传质 数值分析
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第三类边界条件中对流换热系数对非稳态导热问题解的影响 被引量:2
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作者 吴兆春 车凌云 《上海应用技术学院学报(自然科学版)》 2001年第2期126-130,共5页
对第三类边界条件中所使用的对流换热系数应用于非稳态导热过程存在的问题从理论上进行探讨 ,通过计算分析表明 。
关键词 第三类边界条件 对流换热系数 非稳态导热
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第三类热湿传递边界条件下含混多孔体的非稳态传热过程
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作者 季杰 陈雁南 +1 位作者 葛新石 何立群 《中国科学技术大学学报》 CAS CSCD 北大核心 1996年第2期267-270,共4页
建立了第三类热湿传递边界条件下含湿多孔体的非稳态热传导物理模型并数值求解.
关键词 含湿多孔体 热湿传递 非稳态传热 传热 建筑物
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小空间热源群绕体自然对流传热及三维特性 被引量:5
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作者 战乃岩 李灿 +1 位作者 梁润昌 王治云 《中国科学:技术科学》 EI CSCD 北大核心 2015年第6期661-668,共8页
以小型电子设备散热技术为背景,通过运用具有QUICK差分格式的SIMPLE算法,借助FORTAN语言,对小空间热源群绕体自然对流进行三维仿真模拟,分析研究腔体几何尺寸,热源几何尺寸、位置、数量等因子对换热的影响及三维特性.结果表明:随着腔体... 以小型电子设备散热技术为背景,通过运用具有QUICK差分格式的SIMPLE算法,借助FORTAN语言,对小空间热源群绕体自然对流进行三维仿真模拟,分析研究腔体几何尺寸,热源几何尺寸、位置、数量等因子对换热的影响及三维特性.结果表明:随着腔体长高比率增加,换热效果先增强再减弱,高温热源的影响范围具有区域性,其范围主要集中在水平方向4倍热源宽度,垂直方向2倍热源高度;随着热源几何尺寸的增加,换热逐渐加强;当热源位置由边缘逐渐移动到中心,换热逐渐加强.在中间散热效果最好,位于边缘散热效果较差;在小Rayleigh数时,无论边界条件如何变化,方形空间的换热效果均较好;在高温热源的主要影响范围内,研究三维问题可用二维模型代替. 展开更多
关键词 小空间 热源群 传热 三维特性 边界条件
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不同保温形式下典型热桥的热湿传递研究 被引量:1
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作者 李魁山 张旭 《建筑科学》 北大核心 2008年第12期63-66,共4页
为了研究建筑热桥在室内外热湿条件综合作用下墙体内部温湿度分布,本文以Henry提出的热湿传递模型为基础,建立了建筑热桥二维热湿传递数学模型,并以上海地区冬季室外典型年气象参数作为计算条件,计算了L形建筑热桥在该条件周期作用下墙... 为了研究建筑热桥在室内外热湿条件综合作用下墙体内部温湿度分布,本文以Henry提出的热湿传递模型为基础,建立了建筑热桥二维热湿传递数学模型,并以上海地区冬季室外典型年气象参数作为计算条件,计算了L形建筑热桥在该条件周期作用下墙体内部温湿度分布和热流密度变化,对热桥局部保温提出了建议。 展开更多
关键词 建筑热桥 热湿迁移 周期性边界条件
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Magnetohydrodynamic convective-radiative oscillatory flow of a chemically reactive micropolar fluid in a porous medium
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作者 Dulal Pal Sukanta Biswas 《Propulsion and Power Research》 SCIE 2018年第2期158-170,共13页
This paper deals with the investigation of double-diffusive heat and mass transfer characteristics of an oscillatory viscous electrically conducting micropolar fluid over a moving plate with convective boundary condit... This paper deals with the investigation of double-diffusive heat and mass transfer characteristics of an oscillatory viscous electrically conducting micropolar fluid over a moving plate with convective boundary condition and chemical reaction.The non-linear partial differential equations are first converted into nonlinear ordinary differential equations by means of perturbation analysis and the governing equations are solved analytically.The effects of magnetic field,chemical reaction,permeability parameter,Prandtl number,Schmidt number,thermal radiation and viscosity parameter are analyzed on skin friction,Nusselt number,velocity,and temperature&concentration distributions.It is observed that the concentration profiles decrease with increase in the dimensionless time and increase with increase in the chemical reaction parameter.It is also observed that the velocity profile increases with increase in time but reverse effects are found by increasing the value of the viscosity ratio parameter.Further,it is seen that the effect of magnetic field parameter is to increase the micro-rotational velocity profiles but reverse effect is observed by increasing time. 展开更多
关键词 Chemical reaction Convective boundary condition heat and mass transfer Micropolar fluid Magnetohydrodynamics Porous medium thermal radiation
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