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Improving Heat Transfer in Parabolic Trough Solar Collectors by Magnetic Nanofluids
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作者 Ritesh Singh Abhishek Gupta +2 位作者 Akshoy Ranjan Paul Bireswar Paul Suvash C.Saha 《Energy Engineering》 EI 2024年第4期835-848,共14页
A parabolic trough solar collector(PTSC)converts solar radiation into thermal energy.However,low thermal efficiency of PTSC poses a hindrance to the deployment of solar thermal power plants.Thermal performance of PTSC... A parabolic trough solar collector(PTSC)converts solar radiation into thermal energy.However,low thermal efficiency of PTSC poses a hindrance to the deployment of solar thermal power plants.Thermal performance of PTSC is enhanced in this study by incorporating magnetic nanoparticles into the working fluid.The circular receiver pipe,with dimensions of 66 mm diameter,2 mm thickness,and 24 m length,is exposed to uniform temperature and velocity conditions.The working fluid,Therminol-66,is supplemented with Fe3O4 magnetic nanoparticles at concentrations ranging from 1%to 4%.The findings demonstrate that the inclusion of nanoparticles increases the convective heat transfer coefficient(HTC)of the PTSC,with higher nanoparticle volume fractions leading to greater heat transfer but increased pressure drop.The thermal enhancement factor(TEF)of the PTSC is positively affected by the volume fraction of nanoparticles,both with and without a magnetic field.Notably,the scenario with a 4%nanoparticle volume fraction and a magnetic field strength of 250 G exhibits the highest TEF,indicating superior thermal performance.These findings offer potential avenues for improving the efficiency of PTSCs in solar thermal plants by introducing magnetic nanoparticles into the working fluid. 展开更多
关键词 Parabolic trough solar collector(PTSC) magnetic nanofluid(MNF) heat transfer convective heat transfer coefficient(HTC) thermal enhancement factor(TEF)
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Experimental Study and Thermal Modelling of Cocoa Shell Convective Drying in an Indirect Solar Dryer
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作者 Siaka Touré Adjo Christelle Ogo Modibo Sidibé 《Modeling and Numerical Simulation of Material Science》 2024年第2期69-78,共10页
The concern of the present work is the convective drying of empty cocoa shells in an indirect solar dryer. Some drying experiments, using one sample, were carried out. During the experiments, the sample is introduced ... The concern of the present work is the convective drying of empty cocoa shells in an indirect solar dryer. Some drying experiments, using one sample, were carried out. During the experiments, the sample is introduced in the drying chamber. Then at steady time intervals, the sample is withdrawn from the drying chamber, for a rapid weighing. After each weighing, the sample is reintroduced in the dryer. At each time interval, the ambient temperature of the drying chamber and its relative humidity γ are measured by a thermo-hygrometer. From the experimental data, a theoretical determination of the moisture evaporated from the product was performed and a good agreement was found between the theoretical and experimental values, confirmed by the value of the RMSE. Those calculations used the constants in the Nusselt number found in literature. Then those constants were evaluated again, to get new values more suitable with the experimental data. The dimensionless numbers of Nusselt, Grashof and Prandtl were calculated. That allowed the calculation of the average value of the Nusselt number. The average convective heat transfer coefficient was determined. 展开更多
关键词 Shells of Cocoa Pods Indirect Solar Dryer Moisture Evaporated Constants of the Nusselt Number convective heat transfer coefficient
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Effect Analysis of Volume Fraction of Nanofluid Al2O3-Water on Natural Convection Heat Transfer Coefficient in Small Modular Reactor
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作者 Anwar Ilmar Ramadhan Ery Diniardi Rasma 《World Journal of Nuclear Science and Technology》 2016年第1期79-88,共10页
Development and use of nuclear energy is currently growing very rapidly, in order to achieve increasingly advanced technology, both in terms of design, economic factors and safety factors. Thermal-hydraulics aspects o... Development and use of nuclear energy is currently growing very rapidly, in order to achieve increasingly advanced technology, both in terms of design, economic factors and safety factors. Thermal-hydraulics aspects of nuclear reactors should be done with calculation and near-perfect condition. Including today began development of a nuclear reactor with low power below 300 MW, or commonly called the Small Modular Reactor (SMR). One is CAREM-25 developed by Argentina with a power of 25 MW, where in CAREM already using natural circulation system and the use of nanofluid as coolant fluid. In this research, analytic modeling of thermal-hydraulics nuclear reactor SMR CAREM-25, when the nanofluid Al<sub>2</sub>O<sub>3</sub>-Water used as cooling fluid in the cooling system of a nuclear reactor. Further to this analytic modeling will be done on CFD. Analytic modeling with CFD to determine the flow phenomena and distribution as well as the effect of nano-particles of Al<sub>2</sub>O<sub>3</sub>-Water based on the volume fraction (1% and 3%) of the coefficient of heat transfer by natural convection. 展开更多
关键词 NANofLUID NANO-PARTICLES Natural Convection THERMAL-HYDRAULIC coefficient of heat transfer
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SIMULATION OF STEEL COIL HEAT TRANSFER IN HPH FURNACE 被引量:3
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作者 M. Y. Gu G. Chen +1 位作者 M. C. Zhang X. C. Dai 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2005年第5期647-652,共6页
The mathematical model has been estublished for the simulation of steel coil's heat transfer during annealing thermal process in HPH (high performance hydrogen) furnace. The equivalent radial thermal conductivity i... The mathematical model has been estublished for the simulation of steel coil's heat transfer during annealing thermal process in HPH (high performance hydrogen) furnace. The equivalent radial thermal conductivity is adopted by statistical analysis regression approach through the combination of a large quantity of production data collected in practice and theoretical analyses. The effect of the number of coils on circulating flow gas is considered for calculating the convection heat transfer coefficient, The temperature within the coil is predicted with the developed model during the annealing cycle including heating process and cooling process. The good consistently between the predicted results and the experimental data has demonstrated that the mathematical model established and the parameters identified by this paper are scientifically feasible and the effective method of calculation for coil equivalent radial heat transfer coefficient and circulating gas flow has been identified successfully, which largely enhances the operability and feasibility of the mathematic- model. This model provides a theoretical basis and an effective means to conduct studies on the impact that foresaid factors may imposed on the steel coil's temperature field, to analyze the stress within coils, to realize online control and optimal production and to increase facilily output by increasing heating and cooling rates of coils without producing higher thermal stress. 展开更多
关键词 FURNACE equivalent radial thermal conductivity convection heat transfer coefficient SIMULATION
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Experimental Investigation on Flow and Heat Transfer of Jet Impingement inside a Semi-Confined Smooth Channel 被引量:2
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作者 张靖周 刘波 徐华胜 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2014年第1期16-25,共10页
Experimental investigation is conducted to investigate the flow and heat transfer performances of jet impingement cooling inside a semi-confined smooth channel.Effects of jet Reynolds number(varied from 10 000to 45000... Experimental investigation is conducted to investigate the flow and heat transfer performances of jet impingement cooling inside a semi-confined smooth channel.Effects of jet Reynolds number(varied from 10 000to 45000),orifice-to-target spacing(zn=1d—4d)and jet-to-jet pitches(xn=3d—5d,yn=3d—5d)on the convective heat transfer coefficient and discharge coefficient are revealed.For a single-row jets normal impingement,the impingement heat transfer is enhanced with the increase of impingement Reynolds number or the decrease of spanwise jet-to-jet pitch.The highest local heat transfer is achieved when zn/dis 2.For the double-row jets normal impingement,the laterally-averaged Nusselt number distributions in the vicinity of the first row jets impinging stagnation do not fit well with the single-row case.The highest local heat transfer is obtained when zn/dis 1.A smaller jetto-jet pitch generally results in a lower discharge coefficient.The discharge coefficient in the double-row case is decreased relative to the single-row case at the same impingement Reynolds number. 展开更多
关键词 jet impingement semi-confined channel convective heat transfer discharge coefficient
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Heat Transfer Process of Bubble during the Occurrence of Cavitation in Hydraulic System
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作者 姜继海 张健 +2 位作者 李艳杰 罗念宁 于安才 《Journal of Donghua University(English Edition)》 EI CAS 2014年第3期229-234,共6页
Thermal characteristic of cavitation has great influence on the process of occurrence,development and collapse of bubble in hydraulic system. By choosing the stage of bubble growth as the research object,combining wit... Thermal characteristic of cavitation has great influence on the process of occurrence,development and collapse of bubble in hydraulic system. By choosing the stage of bubble growth as the research object,combining with the characteristic of the process of bubble occurrence and development in hydraulic system, and ignoring the impact of thermal radiation,the heat transfer situation of bubble growth was analyzed under appropriate assumptions of thermodynamic conditions in the bubble generation and development process. The mathematical expression of the temperature change of bubble was deduced using thermodynamic principle. Through combining the expression with classic Rayleigh-Plesset Equation,numerical calculation was carried out and the temperature variation over time( or bubble radius) was obtained. The influences of convective heat transfer coefficient of bubble and polytropic exponent on the thermodynamic process of bubble were analyzed. Finally,the thermal characteristic of bubble growth after cavitation occurrence was summarized. 展开更多
关键词 hydraulic system CAVITATION convective heat transfer coefficient of bubble polytropic exponent THERMODYNAMICS
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Heat transfer analysis of the bent cooling channels in SSRF light-blocked components
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作者 JIN Jianfeng CHEN Haibo +2 位作者 XIAO Weiling CHENG Wenlong WANG Naxiu 《Nuclear Science and Techniques》 SCIE CAS CSCD 2012年第6期321-327,共7页
The front end light-blocked components of the third generation of synchrotron radiation facility,which are subjected to high heat load,are cooled with flowing water through the cooling channels.The convective heat tra... The front end light-blocked components of the third generation of synchrotron radiation facility,which are subjected to high heat load,are cooled with flowing water through the cooling channels.The convective heat transfer coefficient and the flow resistance(or pressure drop) are two important parameters for evaluating the heat transfer performance of the cooling channels and should be strictly quantified.In this research,two typical bent cooling channels in Shanghai Synchrotron Radiation Facility(SSRF) were modeled and their in-pipe turbulent flows were simulated.The two criteria obtained under different channel water velocities met the SSRF technical requirements.To reduce the total pressure drop,arc transitions were proposed to replace the right angle transitions in the cooling channels.At the same time,an experiment was performed to measure the convective heat transfer coefficient of a typical bent channel unit.The experimental results were in good agreement with the simulation ones. 展开更多
关键词 冷却通道 SSRF 弯曲通道 传热分析 上海同步辐射装置 对流换热系数 光阻 流动阻力
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重力热管基于VOF模型的传热特性研究
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作者 战洪仁 于胜利 +2 位作者 王立鹏 才月 吴霖 《沈阳化工大学学报》 CAS 2023年第3期260-265,282,共7页
采用Fluent软件选用VOF模型,并加载自定义函数(UDF),实现重力热管内部的相变传热过程,对重力热管进行数值模拟分析.研究结果表明:Fluent可以将重力热管内部相变过程较好地呈现出来.当加热功率为60 W时,换热系数达到最大值;当加热功率继... 采用Fluent软件选用VOF模型,并加载自定义函数(UDF),实现重力热管内部的相变传热过程,对重力热管进行数值模拟分析.研究结果表明:Fluent可以将重力热管内部相变过程较好地呈现出来.当加热功率为60 W时,换热系数达到最大值;当加热功率继续增加到80 W时,换热系数逐渐下降.当充液率在0.20~0.24范围时,随着充液率的增加,等效对流换热系数也增加;当充液率在0.24~0.32时,等效对流换热系数逐渐降低;充液率为0.24时,等效对流换热系数最大.当倾角在30°~60°时,等效对流换热系数随倾角增大而增大;当倾角在60°~90°时,等效对流换热系数随倾角增大而减小;倾角为60°时等效对流换热系数最大. 展开更多
关键词 重力热管 Vof模型 数值模拟 对流换热系数
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Comparative Experimental Study on Heat Transfer Characteristics of Building Exterior Surface at High and Low Altitudes
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作者 JIA Yonghong GUO Shurui +5 位作者 LI Jin GUO Lei CHENG Zhu ZHANG Yin YANG Hanyu LONG Enshen 《Journal of Thermal Science》 SCIE EI CAS CSCD 2024年第3期1119-1131,共13页
The external surface heat transfer coefficient of building envelope is one of the important parameters necessary for building energy saving design,but the basic data in high-altitude area are scarce.Therefore,the auth... The external surface heat transfer coefficient of building envelope is one of the important parameters necessary for building energy saving design,but the basic data in high-altitude area are scarce.Therefore,the authors propose a modified measurement method based on the heat balance of a model building,and use the same model building to measure its external surface heat transfer coefficient under outdoor conditions in Chengdu city,China at an altitude of 520 m and Daocheng city at an altitude of 3750 m respectively.The results show that the total heat transfer coefficient(h_(t))of building surface in high-altitude area is reduced by 34.48%.The influence of outdoor wind speed on the convective heat transfer coefficient(h_(c))in high-altitude area is not as significant as that in low-altitude area.The fitting relation between convection heat transfer coefficient and outdoor wind speed is also obtained.Under the same heating power,the average temperature rise of indoor and outdoor air at highaltitude is 41.9%higher than that at low altitude,and the average temperature rise of inner wall is 25.8%higher than that at low altitude.It shows that high-altitude area can create a more comfortable indoor thermal environment than low-altitude area under the same energy consumption condition.It is not appropriate to use the heat transfer characteristics of the exterior surface of buildings in low-altitude area for building energy saving design and related heating equipment selection and system terminal matching design in high-altitude area. 展开更多
关键词 ALTITUDE heat transfer characteristics convective heat transfer coefficient(h_(c)) radiative heat transfer coefficient(h_(r)) external building envelope
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Quantitative Visualization of the Thermal Boundary Layer of Forced Convection on a Heated or Cooled Flat Plate with a 30°Leading Edge Using a Mach-Zehnder Interferometer
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作者 Jun Liu Atsuki Komiya 《Journal of Flow Control, Measurement & Visualization》 CAS 2022年第4期99-116,共18页
This study focuses on the experimental measurements of the heat transfer coefficient over a flat plate with a 30° leading edge. Under forced convection by a hot/cold air and flow over a cooled/heated flat plate, ... This study focuses on the experimental measurements of the heat transfer coefficient over a flat plate with a 30° leading edge. Under forced convection by a hot/cold air and flow over a cooled/heated flat plate, the thermal boundary layer and its thickness are quantitatively visualized and measured using a Mach-Zehnder interferometer. In addition, the variation in the local heat transfer coefficient is evaluated experimentally with respect to the air flow velocity and temperature. Differences within the heat transfer performance between the plates are confirmed and discussed. As a result, the average heat transfer performance is about the same for the heated plate and the cooled plate under all air velocity conditions. This contrasts with the theoretical prediction in the case of low air velocity, the reason considered was that the buoyancy at the 30° leading edge blocked air from flowing across the surface of the plate. 展开更多
关键词 Thermal Boundary Layer Forced Convection heat transfer coefficient VISUALIZATION Mach-Zehnder Interferometer
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Experimental Study on the Thermal Performances of a Tube-Type Indirect Evaporative Cooler
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作者 Tiezhu Sun Huan Sun +2 位作者 Tingzheng Tang Yongcheng Yan Peixuan Li 《Fluid Dynamics & Materials Processing》 EI 2023年第10期2519-2531,共13页
The so-called indirect evaporative cooling technology is widely used in air conditioning applications.The thermal characterization of tube-type indirect evaporative coolers,however,still presents challenges which need... The so-called indirect evaporative cooling technology is widely used in air conditioning applications.The thermal characterization of tube-type indirect evaporative coolers,however,still presents challenges which need to be addressed to make this technology more reliable and easy to implement.This experimental study deals with the performances of a tube-type indirect evaporative cooler based on an aluminum tube with a 10 mm diameter.In particular,the required tests were carried out considering a range of dry-bulb temperatures between 16℃ and 18℃ and a temperature difference between the wet-bulb and dry-bulb temperature of 2℃∼4℃.The integrated convective heat transfer coefficient inside the tube in the drenching condition has been found to lie in the range between 36.10 and 437.4(W/(m^(2)⋅K)). 展开更多
关键词 Tubular indirect evaporative cooler integrated convection heat transfer coefficient evaporative cooling thermal engineering calculation energy saving
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基于能量流向的变压器饼式绕组散热分析及试验研究
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作者 李欢 刘云鹏 +3 位作者 毕瀚文 李东阳 黎晏霖 范晓舟 《中国电机工程学报》 EI CSCD 北大核心 2024年第8期3327-3336,I0033,共11页
变压器热点温度作为运行经济性、安全性的关键指标,是设备在线监测及状态评估中的重点。该文对变压器内部散热进行研究,着眼于饼式绕组及其油道结构,基于能量流向建立绕组温度变化的物理模型。基于这一模型,在一台内置分布式传感光纤的1... 变压器热点温度作为运行经济性、安全性的关键指标,是设备在线监测及状态评估中的重点。该文对变压器内部散热进行研究,着眼于饼式绕组及其油道结构,基于能量流向建立绕组温度变化的物理模型。基于这一模型,在一台内置分布式传感光纤的110kV三相ONAN变压器上开展试验研究,使用分布式光纤测温(distributed temperature sensing,DTS)技术对运行状况下的绕组整体温度分布进行实时监测,分析绕组在ONAN冷却方式下的散热状况。在变压器启动初期,绕组各处散热量较低,温升速率较快。约2 h后,各饼散热量基本与损耗相一致,散热率可达98%以上,因此将这一阶段称为准稳态。准稳态阶段,绕组整体散热率基本一致。负载变化前期不同位置散热量的差异是温度梯度形成的主要原因。基于DTS手段及散热器进出口处油温,提出绕组每饼平均对流换热系数的计算方法,基于无量纲数建立绕组内外表面局部对流换热系数的计算方法,对不同位置、负载率下两种对流换热系数的变化规律进行分析获得了绕组运行过程中对流换热系数分布规律及变化趋势。 展开更多
关键词 变压器 饼式绕组 散热分析 对流换热系数 分布式光纤传感
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基于电化学-热-力耦合模型的锂离子电池热失控研究
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作者 张赛 汪振毅 胡世旺 《安全与环境学报》 CAS CSCD 北大核心 2024年第2期551-559,共9页
为提升锂离子电池的安全性能,减少由热失控导致的安全事故,分析电池温升的原因并有效降低其温度,依据电化学反应中浓度、电势与热模型中温度的相互影响关系,建立电化学-热-力耦合模型。通过模拟单电池和电池组温度分布的实时情况,分析... 为提升锂离子电池的安全性能,减少由热失控导致的安全事故,分析电池温升的原因并有效降低其温度,依据电化学反应中浓度、电势与热模型中温度的相互影响关系,建立电化学-热-力耦合模型。通过模拟单电池和电池组温度分布的实时情况,分析单电池温度不均匀分布和电池组温度正态分布情况的原因,探讨换热面积和流通量对散热量的影响,研究电池组中单体电池的位置分布及不同传热介质的散热情况。研究结果显示:低温和相对高温环境下,欧姆热、极化热及电化学反应热产热占比不同,但产热最高温度未达到电极材料与电解液分解反应的临界温度420 K;高温环境下,电池温度持续升高接近临界温度,出现热失控趋势,对流换热系数对电池影响较大。电池组间隙为10 mm和20 mm时,整体温度比间隙为0时分别降低了1.1%和1.8%;与无间隙电池组相比,以铜板和铝板为传热介质的电池组温度分别降低了2.0%和1.6%。 展开更多
关键词 安全工程 电化学-热-力耦合 间隙电池组 对流换热系数 热失控
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复合绝缘子无溢流覆冰增长数值模拟及自然覆冰试验验证
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作者 迟明辰 胡玉耀 +3 位作者 蒋兴良 刘宗源 咸日常 刘晓阳 《高电压技术》 EI CAS CSCD 北大核心 2024年第4期1694-1703,共10页
绝缘子覆冰对电力系统的安全可靠运行构成了严重威胁。目前,主要从试验角度定性解释伞裙结构对绝缘子覆冰形态、覆冰量的影响,少有基于覆冰增长机理的冰形数值模拟研究。因此以FXBW-35/70为研究对象,基于流体力学和热力学原理,计算分析... 绝缘子覆冰对电力系统的安全可靠运行构成了严重威胁。目前,主要从试验角度定性解释伞裙结构对绝缘子覆冰形态、覆冰量的影响,少有基于覆冰增长机理的冰形数值模拟研究。因此以FXBW-35/70为研究对象,基于流体力学和热力学原理,计算分析了绝缘子表面冻结系数和对流换热系数的变化规律,建立了绝缘子无溢流覆冰增长三维数值模型,并进行了自然覆冰试验验证。结果表明,冻结系数随着温度、水滴直径和液态水含量的升高而降低;对流换热系数随着风速的增大而增大。绝缘子无溢流覆冰增长方向与位置有关,杆径覆冰主要沿径向增长,而伞裙边缘覆冰沿径向和轴向2个方向增长。模型计算得到的绝缘子覆冰特征参数与试验的误差均在15%以内,验证了模型的有效性。 展开更多
关键词 无溢流湿增长覆冰 数值计算 对流换热系数 冻结系数 绝缘子
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场协同扭转螺杆热输运性能的研究
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作者 代瑞 潘威 +4 位作者 黄士争 朱家威 曾宪奎 杨卫民 鉴冉冉 《中国塑料》 CAS CSCD 北大核心 2024年第3期109-115,共7页
应用Polyflow软件,采用数值模拟的方法对创新提出的场协同扭转螺杆在不同转速下的热输运特性进行了仿真分析,结合温度分布、对流换热系数、黏度、压力等参数对其热输运性能进行了系统研究,并与常规螺杆进行对比。结果表明,设置有扭转结... 应用Polyflow软件,采用数值模拟的方法对创新提出的场协同扭转螺杆在不同转速下的热输运特性进行了仿真分析,结合温度分布、对流换热系数、黏度、压力等参数对其热输运性能进行了系统研究,并与常规螺杆进行对比。结果表明,设置有扭转结构的场协同扭转螺杆温度均匀性得到改善,对流换热系数提高,强化了整个体系的传热效果,其中扭转元件串联排布的螺杆换热性能更优。并以三元乙丙橡胶(EPDM)为原料,采用扭转挤出技术结合机头径向温差、换热系数等参数对常规螺杆与场协同扭转螺杆的传热性能进行了实验研究。所得结果与仿真一致,证明了场协同扭转螺杆具有强化传热、改善塑化均匀性的特性。 展开更多
关键词 扭转元件排布 换热性能 对流换热系数 塑化均匀性 压力特性
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油浸式变压器的全域热网络模型
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作者 鲁非 苏翔 +2 位作者 李化 林福昌 卢仰泽 《计量学报》 CSCD 北大核心 2024年第1期9-17,共9页
热点温度是衡量变压器绝缘性能和安全裕度的重要指标,对其进行快速准确计算具有重要的意义。对油浸式变压器内部的产热和传热机理进行了分析,得到自然对流边界层中速度和温度分布与流体普朗特数Pr的关系,考虑到局部自然对流换热系数的... 热点温度是衡量变压器绝缘性能和安全裕度的重要指标,对其进行快速准确计算具有重要的意义。对油浸式变压器内部的产热和传热机理进行了分析,得到自然对流边界层中速度和温度分布与流体普朗特数Pr的关系,考虑到局部自然对流换热系数的沿程变化以及不同区域传热特性的差异,对油浸式变压器进行了分区分层处理。基于热电类比法定义了多种热阻类型,构建了油浸式变压器的全域热网络模型;通过有限元仿真对比了热网络模型的计算结果。二者所得绕组温度变化趋势相同,热点温度相差约1.9%,热点位置相差约7.7%。相比于有限元仿真,热网络模型在求解时间和效率上更有优势,能够实现油浸式变压器运行状态的在线监测、实时分析和动态评估。 展开更多
关键词 温度测量 变压器热点温度 自然对流 局部对流 换热系数 热网络模型 有限元仿真
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热辐射特征参数对快堆锥形顶盖空间换热特性影响的研究
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作者 冯佳琪 陆道纲 +1 位作者 张钰浩 于宗玉 《核科学与工程》 CAS CSCD 北大核心 2024年第1期55-62,共8页
池式钠冷快堆的钠池内充满高温液态钠,其上方覆盖有氩气,高温液态钠主要通过辐射换热及对流换热的方式向快堆主容器上部结构及氩气空间传递热量,其换热特性及其影响因素十分复杂。辐射发射率及液态钠蒸发形成的气溶胶层对主容器上部结... 池式钠冷快堆的钠池内充满高温液态钠,其上方覆盖有氩气,高温液态钠主要通过辐射换热及对流换热的方式向快堆主容器上部结构及氩气空间传递热量,其换热特性及其影响因素十分复杂。辐射发射率及液态钠蒸发形成的气溶胶层对主容器上部结构的热工水力特性会造成一定影响。因此,为保证主容器上部结构在不同温度载荷下的安全性与稳定性,十分必要获取不同辐射发射率及不同气溶胶层分布下的温度分布。本研究建立大型池式钠冷快堆主容器上部锥形顶盖空间(以下简称“锥顶盖”)数值计算模型,开展数值模拟计算,得到不同发射率及气溶胶层厚度影响下锥顶盖的温度场。研究结果表明,发射率越高,锥顶盖斜肩及氩气空间温度越高;当气溶胶层存在于靠近钠液面的高度范围时(0~0.2 m),增加其厚度可使氩气空间局部温度升高,但对锥顶盖斜肩温度影响有限。发射率增高53%,则辐射换热量增加31.47%,格拉晓夫数(Gr)减少19.29%,辐射换热效果增强,自然对流效果减弱;气溶胶层高度由0增加到0~0.1 m时,对辐射换热量的吸收增加22.68%,格拉晓夫数(Gr)减少19.29%,气溶胶层高度由0~0.1 m增加到0~0.2 m时,透过气溶胶层的辐射换热量减少了0.04%,格拉晓夫数(Gr)增加了0.9%,辐射换热效果减弱,自然对流效果加强。 展开更多
关键词 快堆锥形顶盖空间 辐射换热 自然对流 发射率 吸收系数
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面向回流焊工艺过程质量控制的温度场仿真技术研究
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作者 侯文静 何非 胡子翔 《制造技术与机床》 北大核心 2024年第3期126-133,共8页
针对回流焊工艺过程中的质量控制问题,文章提出了一种创新的回流焊温度场仿真方法。该方法综合考虑热对流和热辐射的影响,以单温区炉腔作为回流炉,PCB组件作为被焊物体,借助Ansys Icepak软件模拟回流焊接过程,并搭建炉温测试平台用于监... 针对回流焊工艺过程中的质量控制问题,文章提出了一种创新的回流焊温度场仿真方法。该方法综合考虑热对流和热辐射的影响,以单温区炉腔作为回流炉,PCB组件作为被焊物体,借助Ansys Icepak软件模拟回流焊接过程,并搭建炉温测试平台用于监控PCB组件温度曲线,以分析其焊接质量。结果表明,仿真模型成功模拟了工艺参数组A~C的回流温度分布。仿真与实测温度曲线吻合较好,其中工艺参数组A实现了更高的焊接质量。文章提出的创新方法能够顺利实现回流焊工艺过程的质量控制,得到合理的回流温度曲线,为优化回流焊工艺提供了理论依据,有助于快速调整工艺参数以提高焊接质量和生产效率;同时该方法也可为其他类似工艺的温度场控制提供参考。 展开更多
关键词 回流焊 PCB组件 对流换热系数 回流温度曲线
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关于立式石化设备裙座热分析边界条件的讨论
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作者 李宇 《一重技术》 2024年第2期14-17,13,共5页
以某石化设备为例,详细介绍裙座处热分析的真实边界条件,重点介绍热箱处热辐射的计算方法,对比真实边界条件模型与工程简化模型的热分析结果,证明工程中合理简化是可行的,建议采用真实边界条件以获得更准确的结果。
关键词 热边界 等效对流传热系数 热辐射
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Experimental study of heat transfer coefficient with rectangular baffle fin of solar air heater 被引量:3
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作者 Foued CHABANE Nesrine HATRAF Noureddine MOUMMI 《Frontiers in Energy》 SCIE CSCD 2014年第2期160-172,共13页
This paper presents an experimental analysis of a single pass solar air collector with, and without using baffle fin. The heat transfer coefficient between the absorber plate and air can be considerably increased by u... This paper presents an experimental analysis of a single pass solar air collector with, and without using baffle fin. The heat transfer coefficient between the absorber plate and air can be considerably increased by using artificial roughness on the bottom plate and under the absorber plate of a solar air heater duct. An experimental study has been conducted to investigate the effect of roughness and operating parameters on heat transfer. The investigation has covered the range of Reynolds number Re from 1259 to 2517 depending on types of the configuration of the solar collectors. Based on the experimental data, values of Nusselt number Nu have been determined for different values of configurations and operating parameters. To determine the enhancement in heat transfer and increment in thermal efficiency, the values of Nusselt have been smooth duct under similar flow compared with those of conditions. 展开更多
关键词 Nusselt number flow rate heat transfer heat transfer coefficient thermal efficiency forced convection
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