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流体热力学的格子Boltzmann方法的理论分析
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作者 刘慕仁 何云 孔令江 《广西师范大学学报(自然科学版)》 CAS 1997年第3期7-11,共5页
对FJAlexander等人提出的流体热力学的格子Boltzmann方法,进行了研究,对模型相对应的宏观流体热力学方程组给出了理论分析的正确结果和清晰的推导过程.
关键词 流体热力学 格子B法 守恒量 平衡方程
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基于计算流体力学的送风模式对层装蜜桃差压预冷效果的影响 被引量:1
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作者 谌英敏 令狐博祥 +1 位作者 赵茗彰 宋海燕 《食品科学》 北大核心 2025年第7期292-302,共11页
本研究基于计算流体力学构建了不同预冷工况条件下的层装蜜桃差压预冷传热传质数值模型。通过实验和仿真数据分析,发现所构建数值模型与实验组间的最大均方根误差为0.7967℃,最大平均绝对百分比误差为6.74%,表明该建模方法具有可行性和... 本研究基于计算流体力学构建了不同预冷工况条件下的层装蜜桃差压预冷传热传质数值模型。通过实验和仿真数据分析,发现所构建数值模型与实验组间的最大均方根误差为0.7967℃,最大平均绝对百分比误差为6.74%,表明该建模方法具有可行性和真实性。通过对比分析两种送风模式下的预冷效果,发现与恒速相比,采用变速ΔP_(1)+ΔP_(2)的送风模式进行预冷时可改善果实预冷均匀性,也可缩短预冷时间,且ΔP_(2)与ΔP_(1)存在7倍的阈值关系。当ΔP_(2)>7ΔP_(1)(ΔP_(1)<35 Pa)后,果实预冷均匀性可稳定提高10%~20%,且预冷时间可缩短50%~75%,但能耗成本会至少增涨7倍以上,且与ΔP_(2)呈幂函数递增关系。由此可知,在选择送风模式时,若更注重预冷品质和冷藏转移时间,应选择变速送风模式,其中(15+105)Pa是变速模式中蜜桃预冷效果较优的环境参数组合;若更追求节能预冷,应选择恒速送风模式。本研究可为中小型果园合理选择送风模式以及精准掌控果实预冷效果提供理论参考依据。 展开更多
关键词 蜜桃 差压预冷 送风模式 计算流体热力学 数值计算
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基于流体—热力学耦合的大容量干式电抗器温度场研究 被引量:10
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作者 刘成柱 张猛 +3 位作者 奚晶亮 孙国华 韩艳丰 刘雪峰 《高压电器》 CAS CSCD 北大核心 2021年第4期84-89,共6页
针对加装防雨降噪装置的±800 kV/6 250 A大容量干式平波电抗器温度场分布问题,依托于输送容量为10 GW特高压直流输电工程,采用流体—热力学耦合的仿真方法与试验相结合的方式,文中研究了±800 kV/6 250 A干式平波电抗器温度场... 针对加装防雨降噪装置的±800 kV/6 250 A大容量干式平波电抗器温度场分布问题,依托于输送容量为10 GW特高压直流输电工程,采用流体—热力学耦合的仿真方法与试验相结合的方式,文中研究了±800 kV/6 250 A干式平波电抗器温度场分布特性。试验结果表明:一是平波电抗器温升试验与仿真结果吻合,验证了仿真模型的合理性和准确性;二是防雨降噪装置改变了电抗器上方空气的流动方向,增加了空气流动阻力,影响了电抗器的散热效果;三是800 kV/6 250 A干式平波电抗器实测热点温升为68.1 K(第14包封层),满足设计要求。上述研究成果可为干式平波电抗器温度场分布研究以及优化设计提供参考。 展开更多
关键词 干式 平波电抗器 温度场 流体-热力学耦合 仿真 试验
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用径向分布函数及Lennard-Jones位能模型计算真实流体的PVT性质 被引量:1
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作者 陈光进 郭天民 《高校化学工程学报》 EI CAS CSCD 北大核心 1999年第2期101-106,共6页
用顺序解析平衡法,结合Lennard-Jones(L-J)位能函数模型计算径向分布函数,然后直接代入统计热力学所给出的理论状态方程预测真实流体的PVT性质。L-J位能模型参数由临界温度Tc和临界压力P确定。结果表明该... 用顺序解析平衡法,结合Lennard-Jones(L-J)位能函数模型计算径向分布函数,然后直接代入统计热力学所给出的理论状态方程预测真实流体的PVT性质。L-J位能模型参数由临界温度Tc和临界压力P确定。结果表明该方法能成功地预测非极性和弱极性纯流体的PVT性质。当分子尺寸小于正己烷时,除临界温度附近之外,预测的饱和液体体积的平均相对误差一般小于5%,对于分子尺寸更大的流体,可应用象Kihara模型这样的三参数位能模型来提高预测精度。 展开更多
关键词 位能函数 径向分布函数 PVT性质 流体热力学
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流体相平衡研究的进展 被引量:4
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作者 胡英 《化工进展》 EI CAS CSCD 北大核心 1989年第1期1-8,共8页
本文介绍了国内外有关流体相平衡的理论及实验研究的新进展及展望,其中包活低压、高压汽液平衡及高压PVT关系的实验研究;状态方程、活度系数模型和基团贡献法等流体相平衡的理论研究。作者着重介绍了统计力学方法在这些研究中的应用以... 本文介绍了国内外有关流体相平衡的理论及实验研究的新进展及展望,其中包活低压、高压汽液平衡及高压PVT关系的实验研究;状态方程、活度系数模型和基团贡献法等流体相平衡的理论研究。作者着重介绍了统计力学方法在这些研究中的应用以及缔合状态方程和连续热力学等新的研究领域。此外,还对诸如高压与临界现象、电解质溶液、表面活性剂系统、含化学反应的相平衡等有希望的领域的研究作了介绍和展望,本文也用了一定的篇幅对近年来迅速发展的计算机模拟技术作了介绍。 展开更多
关键词 流体相平衡 流体热力学
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柴油机EGR冷却器温度场有限元仿真研究 被引量:6
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作者 王岩松 汤晓林 +1 位作者 李燕 吴大钰 《拖拉机与农用运输车》 北大核心 2008年第5期47-49,52,共4页
柴油机废气再循环(EGR)冷却器热力学性能对降低汽车NOx排放至关重要。应用ANSYS软件建立了EGR冷却器流体热力学有限元模型,对流体的温度场进行了仿真研究和试验验证,进而对不同散热器形状和不同管道数EGR冷却器的冷却效率进行了对比研... 柴油机废气再循环(EGR)冷却器热力学性能对降低汽车NOx排放至关重要。应用ANSYS软件建立了EGR冷却器流体热力学有限元模型,对流体的温度场进行了仿真研究和试验验证,进而对不同散热器形状和不同管道数EGR冷却器的冷却效率进行了对比研究。结果表明:带有圆锥散热器的冷却器可使冷却效率提高5%;适当增加冷却器内的管数可使冷却器的冷却效率提高13%。 展开更多
关键词 柴油机 EGR冷却器 有限元法 流体热力学模型 冷却效率
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MHD three-dimensional flow of Jeffrey fluid with Newtonian heating 被引量:6
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作者 S.A.Shehzad T.Hayat +1 位作者 M.S.Alhuthali S.Asghar 《Journal of Central South University》 SCIE EI CAS 2014年第4期1428-1433,共6页
The magnetohydrodynamic(MHD) three-dimensional flow of Jeffrey fluid in the presence of Newtonian heating is investigated. Flow is caused by a bidirectional stretching surface. Series solutions are constructed for the... The magnetohydrodynamic(MHD) three-dimensional flow of Jeffrey fluid in the presence of Newtonian heating is investigated. Flow is caused by a bidirectional stretching surface. Series solutions are constructed for the velocity and temperature fields. Convergence of series solutions is ensured graphically and numerically. The variations of key parameters on the physical quantities are shown and discussed in detail. Constructed series solutions are compared with the existing solutions in the limiting case and an excellent agreement is noticed. Nusselt numbers are computed with and without magnetic fields. It is observed that the Nusselt number decreases in the presence of magnetic field. 展开更多
关键词 three-dimensional flow Jeffrey fluid Newtonian heating
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Design and parametric optimization of thermal management of lithium-ion battery module with reciprocating air-flow 被引量:3
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作者 刘燕平 欧阳陈志 +1 位作者 江清柏 梁波 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第10期3970-3976,共7页
Single cell temperature difference of lithium-ion battery(LIB) module will significantly affect the safety and cycle life of the battery. The reciprocating air-flow module created by a periodic reversal of the air flo... Single cell temperature difference of lithium-ion battery(LIB) module will significantly affect the safety and cycle life of the battery. The reciprocating air-flow module created by a periodic reversal of the air flow was investigated in an effort to mitigate the inherent temperature gradient problem of the conventional battery system with a unidirectional coolant flow with computational fluid dynamics(CFD). Orthogonal experiment and optimization design method based on computational fluid dynamics virtual experiments were developed. A set of optimized design factors for the cooling of reciprocating air flow of LIB thermal management was determined. The simulation experiments show that the reciprocating flow can achieve good heat dissipation, reduce the temperature difference, improve the temperature homogeneity and effectively lower the maximal temperature of the modular battery. The reciprocating flow improves the safety, long-term performance and life span of LIB. 展开更多
关键词 lithium-ion battery thermal management reciprocating air-flow temperature difference orthogonal optimization SIMULATION
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Three-dimensional unsteady squeezing flow with irreversibility 被引量:2
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作者 HAYAT T AHMAD M Waqar +1 位作者 SHEHZAD S A ALSAEDI A 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第11期3368-3380,共13页
This exploration examines unsteady magnetohydrodynamic(MHD) three-dimensional flow of viscous material between rotating plates subject to radiation,Joule heating and chemical reaction.The non-linear partial differenti... This exploration examines unsteady magnetohydrodynamic(MHD) three-dimensional flow of viscous material between rotating plates subject to radiation,Joule heating and chemical reaction.The non-linear partial differential system is re-structured into the ordinary differential expressions by the implication of appropriate transformations.The developed differential equations are computed by homotopy analysis technique.Numerical consequences have been accomplished by various values of emerging parameters.Coefficients of skin friction and heat and mass transfer rates have been scrutinized.Irreversibility analysis is carried out.Influence of various prominent variables on entropy generation is presented.Moreover,the temperature increases for higher Dufour number and concentration distribution reduces against Soret number.Higher squeezing parameter enhances velocity while concentration reduces with an increment in squeezing parameter.Both entropy rate and Bejan number increase against higher diffusion parameter. 展开更多
关键词 Joule heating viscous dissipation magnetohydrodynamic(MHD)flow chemical reaction entropy generation
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Peristaltic flow in an asymmetric channel with convective boundary conditions and Joule heating 被引量:5
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作者 Abbasi Fahad Munir Hayat Tasawar Ahmad Bashir 《Journal of Central South University》 SCIE EI CAS 2014年第4期1411-1416,共6页
The peristaltic transport of viscous fluid in an asymmetric channel is concentrated. The channel walls exhibit convective boundary conditions. Both cases of hydrodynamic and magnetohydrodynamic(MHD) fluids are conside... The peristaltic transport of viscous fluid in an asymmetric channel is concentrated. The channel walls exhibit convective boundary conditions. Both cases of hydrodynamic and magnetohydrodynamic(MHD) fluids are considered. Mathematical analysis has been presented in a wave frame of reference. The resulting problems are non-dimensionalized. Long wavelength and low Reynolds number approximations are employed. Joule heating effect on the thermal equation is retained. Analytic solutions for stream function and temperature are constructed. Numerical integration is carried out for pressure rise per wavelength. Effects of influential flow parameters have been pointed out through graphs. 展开更多
关键词 peristaltic flow convective conditions Joule heating
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Numerical investigation of optimal geometry parameters for ejectors of premixed burner
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作者 刘凤国 张蕊 +2 位作者 刘文博 翟军 郑斌 《Journal of Central South University》 SCIE EI CAS 2014年第3期1011-1016,共6页
An ejector of low NO~ burner was designed for a gas instantaneous water heater in this work. The flowing and mixing process of the ejector was investigated by computational fluid dynamics (CFD) approach. A comprehen... An ejector of low NO~ burner was designed for a gas instantaneous water heater in this work. The flowing and mixing process of the ejector was investigated by computational fluid dynamics (CFD) approach. A comprehensive study was conducted to understand the effects of the geometrical parameters on the static pressure of air and methane, and mole fraction uniformity of methane at the outlet of ejector. The distribution chamber was applied to balance the pressure and improve the mixing process of methane and air in front of the fire hole. A distribution orifice plate with seven distribution orifices was introduced at the outlet of the ejector to improve the flow organization. It is found that the nozzle exit position of 5 mm and nozzle diameter d 〉1.3 mm should be used to improve the flow organization and realize the well premixed combustion for this designed ejector. 展开更多
关键词 EJECTOR computational fluid dynamics (CFD) bumer distribution orifice premixed combustion
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