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Research on Performance Optimization of Liquid Cooling and Composite Phase Change Material Coupling Cooling Thermal Management System for Vehicle Power Battery
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作者 Gang Wu Feng Liu +3 位作者 Sijie Li Na Luo Zhiqiang Liu Yuqaing Li 《Journal of Renewable Materials》 SCIE EI 2023年第2期707-730,共24页
The serpentine tube liquid cooling and composite PCM coupled cooling thermal management system is designed for 18650 cylindrical power batteries,with the maximum temperature and temperature difference of the power pac... The serpentine tube liquid cooling and composite PCM coupled cooling thermal management system is designed for 18650 cylindrical power batteries,with the maximum temperature and temperature difference of the power pack within the optimal temperature operating range as the target.The initial analysis of the battery pack at a 5C discharge rate,the influence of the single cell to cooling tube distance,the number of cooling tubes,inlet coolant temperature,the coolant flow rate,and other factors on the heat dissipation performance of the battery pack,initially determined a reasonable value for each design parameter.A control strategy is used to regulate the inlet flow rate and coolant temperature of the liquid cooling system in order to make full use of the latent heat of the composite PCM and reduce the pump’s energy consumption.The simulation results show that the maximum battery pack temperature of 309.8 K and the temperature difference of 4.6 K between individual cells with the control strategy are in the optimal temperature operating range of the power battery,and the utilization rate of the composite PCM is up to 90%. 展开更多
关键词 Power battery thermal management phase change materials liquid cooling
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Effect of droplet characteristics on liquid-phase distribution in spray zone of internal mixing air-mist nozzle
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作者 Wei-li Wu Chang-gui Cheng +2 位作者 Yang Li Shi-fa Wei De-li Chen 《China Foundry》 SCIE EI CAS CSCD 2024年第2期185-196,共12页
In continuous casting production,droplet characteristics are important parameters for evaluating the nozzle atomization quality,and have a significant impact on the secondary cooling effect and the slab quality.In ord... In continuous casting production,droplet characteristics are important parameters for evaluating the nozzle atomization quality,and have a significant impact on the secondary cooling effect and the slab quality.In order to study the behavior of atomized droplets after reaching the slab surface and to optimize the spray cooling effect,the influence of droplet diameter and droplet velocity on the migration behavior of droplets in the secondary cooling zone was analyzed by FLUENT software.Results show that the droplets in the spray zone and on the slab surface are mainly concentrated in the center,thus,the liquid volume fraction in the center is higher than that of either side.As the droplet diameter increases,the region of high liquid volume fraction on the slab surface becomes wider,and the liquid phase distribution in the slab width direction becomes uneven.Although increasing the droplet velocity at the nozzle exit has little effect on droplet diffusion in the spray zone,the distribution becomes more uneven due to more liquid reaches the slab surface per unit time.A prediction formula of the maximum water flow rate on the slab surface for specific droplet characteristics was proposed based on dimensionless analysis and validated by simulated data.A nozzle spacing of 210 mm was recommended under the working conditions in this study,which ensures effective coverage of the spray water over the slab surface and enhances the distribution uniformity of water flow rate in the transverse direction. 展开更多
关键词 continuous casting secondary cooling zone internal mixing air-mist nozzle droplet characteristics liquid phase distribution water flow rate
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Directional solidification casting technology of heavy-duty gas turbine blade with liquid metal cooling(LMC) process 被引量:3
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作者 Xiao-fu Liu Yan-chun Lou +5 位作者 Bo Yu Gui-qiao Su Chang-chun Li Xin-li Guo Biao Li Guo-yan Shui 《China Foundry》 SCIE 2019年第1期23-30,共8页
In this work, some important factors such as ceramic shell strength, heat preservation temperature, standing time and withdrawal rate, which influence the formability of directionally solidified large-size blades of h... In this work, some important factors such as ceramic shell strength, heat preservation temperature, standing time and withdrawal rate, which influence the formability of directionally solidified large-size blades of heavy-duty gas turbine with the liquid metal cooling(LMC) process, were studied through the method of microstructure analysis combining. The results show that the ceramic shell with medium strength(the high temperature flexural strength is 8 MPa, the flexural strength after thermal shock resistance is 12 MPa and the residual flexural strength is 20 MPa) can prevent the rupture and runout of the blade. The appropriate temperature(1,520 ℃ for upper region and 1,500 ℃ for lower region) of the heating furnace can eliminate the wide-angle grain boundary, the deviation of grain and the run-out caused by the shell crack. The holding time after pouring(3-5 min) can promote the growth of competitive grains and avoid a great deviation of columnar grains along the crystal orientation <001>, resulting in a straight and uniform grain structure. In addition, to avoid the formation of wrinkles and to ensure a smooth blade surface, the withdrawal rate should be no greater than the growth rate of grain. It is also found that the dendritic space of the blade decreases with the rise of solidification rate, and increases with the enlarging distance between the solidification position and the chill plate. 展开更多
关键词 liquid METAL cooling (LMC) HEAVY-DUTY gas turbine large-size blade directional SOLIDIFICATION microstructure
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Development of liquid-nitrogen-cooling friction stir spot welding for AZ31 magnesium alloy joints 被引量:2
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作者 Dong Wu Jun Shen +2 位作者 Meng-bing Zhou Liang Cheng Jia-xing Sang 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2017年第10期1169-1176,共8页
A liquid-nitrogen-cooling friction stir spot welding(C-FSSW) technology was developed for welding AZ31 magnesium alloy sheets. The liquid-nitrogen cooling degraded the deformability of the welded materials such that t... A liquid-nitrogen-cooling friction stir spot welding(C-FSSW) technology was developed for welding AZ31 magnesium alloy sheets. The liquid-nitrogen cooling degraded the deformability of the welded materials such that the width of interfacial cracks increased with increasing cooling time. The grain size of the stirred zone(SZ) and the heat-affected zone(HAZ) of the C-FSSW-welded joints decreased, whereas that of the thermomechanically affected zone(TMAZ) increased with increasing cooling time. The maximum tensile shear load of the C-FSSW-welded joints welded with a cooling time of 5 or 7 s was larger than that of the friction stir spot welding(FSSW)-welded joint, and the tensile shear load decreased with increasing cooling time. The microhardness of the C-FSSW-welded joints was greater than that of the FSSW-welded joint. Moreover, the microhardness of the SZ and the HAZ of the C-FSSW-welded joints increased, whereas that of the TMAZ decreased, with increasing cooling time. 展开更多
关键词 MAGNESIUM alloy liquid nitrogen cooling FRICTION STIR SPOT welding microstructure mechanical property
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STABILITY OF MICROSTRUCTURES DURING COOLING PROCESSES OF Al LIQUID METAL 被引量:1
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作者 Liu, RS Li, JY +4 位作者 Zhou, Z Dong, KJ Peng, P Xie, Q Zheng, CX 《中国有色金属学会会刊:英文版》 CSCD 1998年第4期2-7,共6页
1INTRODUCTIONItiswelknownthatthemacroscopicpropertiesofmetalsandaloysaremainlydeterminedbytheirmicrostructu... 1INTRODUCTIONItiswelknownthatthemacroscopicpropertiesofmetalsandaloysaremainlydeterminedbytheirmicrostructures,andthemicrost... 展开更多
关键词 STABILITY microstructure liquid METAL rapid cooling COMPUTER simulation
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Directional Solidification Assisted by Liquid Metal Cooling 被引量:24
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作者 Jian ZHANG Langhong LOU 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2007年第3期289-300,共12页
发展和液体金属冷却帮助的 directionalsolidification 过程( LMC )的当前的地位的概述在 LMC 过程的快速的发展的这 paper.Thedriving 力量被给出被考虑 thedemands 分析了( 1 )能提供更高热的坡度为的更新的技术减轻了 segregationin... 发展和液体金属冷却帮助的 directionalsolidification 过程( LMC )的当前的地位的概述在 LMC 过程的快速的发展的这 paper.Thedriving 力量被给出被考虑 thedemands 分析了( 1 )能提供更高热的坡度为的更新的技术减轻了 segregationin 先进合金系统,并且( 2 )更好的生产产量大方向性地 industrializa 的 solidifiedsuperalloy components.The 展开更多
关键词 液态金属 冷却 直接凝固 超耐热合金 机械性能
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A p-version embedded model for simulation of concrete temperature fields with cooling pipes 被引量:5
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作者 Sheng Qiang Zhi-qiang Xie Rui Zhong 《Water Science and Engineering》 EI CAS CSCD 2015年第3期248-256,共9页
Pipe cooling is an effective method of mass concrete temperature control, but its accurate and convenient numerical simulation is still a cumbersome problem. An improved embedded model, considering the water temperatu... Pipe cooling is an effective method of mass concrete temperature control, but its accurate and convenient numerical simulation is still a cumbersome problem. An improved embedded model, considering the water temperature variation along the pipe, was proposed for simulating the temperature field of early-age concrete structures containing cooling pipes. The improved model was verified with an engineering example.Then, the p-version self-adaption algorithm for the improved embedded model was deduced, and the initial values and boundary conditions were examined. Comparison of some numerical samples shows that the proposed model can provide satisfying precision and a higher efficiency. The analysis efficiency can be doubled at the same precision, even for a large-scale element. The p-version algorithm can fit grids of different sizes for the temperature field simulation. The convenience of the proposed algorithm lies in the possibility of locating more pipe segments in one element without the need of so regular a shape as in the explicit model. 展开更多
关键词 混凝土温度控制 仿真模型 水管冷却 p型 自适应算法 数值模拟 混凝土结构 水温变化
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A LN2-based cooling system for a next-generation liquid xenon dark matter detector 被引量:2
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作者 Karl Ludwig Giboni Pratibha Juyal +2 位作者 Elena Aprile Yun Zhang Junji Naganoma 《Nuclear Science and Techniques》 SCIE CAS CSCD 2020年第8期24-34,共11页
In recent years, cooling technology for liquid xenon(LXe) detectors has advanced driven by the development of dark matter(DM) detectors with target mass in the 100–1000 kg range. The next generation of DM detectors b... In recent years, cooling technology for liquid xenon(LXe) detectors has advanced driven by the development of dark matter(DM) detectors with target mass in the 100–1000 kg range. The next generation of DM detectors based on LXe will be in the 50,000 kg(50 t)range requiring more than 1 k W of cooling power. Most of the prior cooling methods become impractical at this level.For cooling a 50 t scale LXe detector, a method is proposed in which liquid nitrogen(LN2) in a small local reservoir cools the xenon gas via a cold finger. The cold finger incorporates a heating unit to provide temperature regulation. The proposed cooling method is simple, reliable, and suitable for the required long-term operation for a rare event search. The device can be easily integrated into present cooling systems, for example the ‘‘Cooling Bus’ ’employed for the Panda X I and II experiments. It is still possible to cool indirectly with no part of the cooling or temperature control system getting in direct contact with the clean xenon in the detector. Also, the cooling device can be mounted at a large distance, i.e., the detector is cooled remotely from a distance of 5–10 m. The method was tested in a laboratory setup at Columbia University to carry out different measurements with a small LXe detector and behaved exactly as predicted. 展开更多
关键词 Noble liquid detectors(scintillation ionization double-phase) Dark matter detectors(WIMPs axions etc.) Large detector systems for particle and astroparticle physics Very low-energy charged particle detectors Time projection chambers Cryogenics Detector cooling and thermo-stabilization
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Liquid phase separation of Cu-Cr alloys during rapid cooling 被引量:4
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作者 孙占波 王宥宏 郭娟 《中国有色金属学会会刊:英文版》 EI CSCD 2006年第5期998-1002,共5页
The ribbons of Cu-Cr alloys with high Cr content (15%- 35%, mass fraction) were prepared by rapid solidification. The microstructures of solidified samples were analyzed by scanning electron microscopy and transmissio... The ribbons of Cu-Cr alloys with high Cr content (15%- 35%, mass fraction) were prepared by rapid solidification. The microstructures of solidified samples were analyzed by scanning electron microscopy and transmission electron microscopy. The results reveal that a representative liquid phase separation microstructures are observed in Cu75Cr25 ribbons solidified at a cooling rate of about 104K/s. The liquid phase separation is not restrained when the cooling rate is enhanced to about 107K/s. However, the size of Cr particles solidified from Cr-rich liquid or Cr-rich regions in alloy melts could be refined by increasing the cooling rates. The size of Cr particles increases with increasing Cr contents when the ribbons contain 15% to 35%Cr. 展开更多
关键词 CU-CR 铜合金 液相分离 快速冷却 凝固
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CUTTING REGULARITY AND DISCHARGE CHARACTERISTICS BY USING COMPOSITE COOLING LIQUID IN WIRE CUT ELECTRICAL DISCHARGE MACHINE WITH HIGH WIRE TRAVELING SPEED 被引量:11
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作者 LIU Zhidong 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2008年第5期41-45,共5页
The analysis of cutting regularity is provided through using and comparing two typical cooling liquids.It is proved that cutting regularity is greatly affected by cooling liquid's washing ability.Discharge charact... The analysis of cutting regularity is provided through using and comparing two typical cooling liquids.It is proved that cutting regularity is greatly affected by cooling liquid's washing ability.Discharge characteristics and theoretic analysis between two electrodes are also discussed based on discharge waveform By using composite cooling liquid which has strong washing ability, the efficiency in the first stable cutting phase has reached more than 200 mm^2/min,and the roughness of the surface has reached R_a<0.8μm after the fourth cutting with more than 50 mm^2/min average cutting efficiency.It is pointed out that cutting situation of the wire cut electrical discharge machine with high wire traveling speed(HSWEDM)is better than the wire cut electrical discharge machine with low wire traveling speed(LSWEDM)in the condition of improving the cooling liquid washing ability.The machining indices of HSWEDM will be increased remarkably by using the composite cooling liquid. 展开更多
关键词 放电性能 机械性能 冷却工程 移动速度
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Studying Cu Alloy Corrosion Products in Cooling Liquid
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作者 A.A .El-Meligi National Research Centre, Physical Chem. Dept., Dokki, Cairo, Egypt 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2001年第5期507-510,共4页
The effect of cooling liquid used for heat exchangers on the Cu alloy corrosion products has been examined using potential-time measurements under applied current condition (anodizing), potentiodynamic polarization, X... The effect of cooling liquid used for heat exchangers on the Cu alloy corrosion products has been examined using potential-time measurements under applied current condition (anodizing), potentiodynamic polarization, X-ray diffraction (XRD) and infrared spectroscopy (IR) The corrosion products formed on the Cu alloy surface during anodizing, are Cu2O, Cu2(OH)3Cl, and Cu2S. NaCl is detected in the corrosion products. The film formation depends on the applied current and the shift of potential to nobler direction indicates its formation progress. 展开更多
关键词 CU Studying Cu Alloy Corrosion Products in cooling liquid
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Thermal Simulation for Two-Phase Liquid Cooling 3D-ICs
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作者 Hong-Wen Chiou Yu-Min Lee 《Journal of Computer and Communications》 2016年第15期33-45,共13页
This work presents an algorithm for simulating more accurate temperature distribution in two-phase liquid cooling for three-dimensional integrated circuits than the state of-the-art methods by utilizing local multi-li... This work presents an algorithm for simulating more accurate temperature distribution in two-phase liquid cooling for three-dimensional integrated circuits than the state of-the-art methods by utilizing local multi-linear interpolation techniques on heat transfer coefficients between the microchannel and silicon substrate, and considering the interdependence between the thermal conductivity of silicon and temperature values. The experimental results show that the maximum and average errors are only 9.7% and 6.7% compared with the measurements, respectively. 展开更多
关键词 Thermal Simulation MICROCHANNEL Two-Phase liquid cooling
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Microstructural Transitions during the Rapid Cooling Process of Liquid Metal Al 被引量:5
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作者 Li, Jiyong Liu, Rangsu +2 位作者 Xie, Quan Peng, Ping Zhou, Zheng 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 1998年第5期461-464,共4页
From a molecular-dynamics simulation study on the rapid cooling process of liquid metal Al, it is demonstrated that the microscopic structure transitions is mainly determined by the changes of various microstructural ... From a molecular-dynamics simulation study on the rapid cooling process of liquid metal Al, it is demonstrated that the microscopic structure transitions is mainly determined by the changes of various microstructural configurations. There are tWo obvious phase transition points during the rapid cooling process. The first transition point is consistent with the well-known glass transition. The second one is a new weaker transition at low temperature. The cluster having 7-fold symmetry still exists in the supercooled liquid metal Al, though it occupies only 0.1% of the total number of clusters in the system and disappears below 550K, namely, it can not exist in the glassy state. These results will give us a new way to understand the structural transition at microscopic level. 展开更多
关键词 Microstructural Transitions during the Rapid cooling Process of liquid Metal Al LI WANG
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Superelastic Radiative Cooling Metafabric for Comfortable Epidermal Electrophysiological Monitoring
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作者 Jiancheng Dong Yidong Peng +6 位作者 Yiting Zhang Yujia Chai Jiayan Long Yuxi Zhang Yan Zhao Yunpeng Huang Tianxi Liu 《Nano-Micro Letters》 SCIE EI CAS CSCD 2023年第10期449-462,共14页
Epidermal electronics with superb passive-cooling capabilities are of great value for both daytime outdoor dressing comfort and low-carbon economy. Herein, a multifunctional and skinattachable electronic is rationally... Epidermal electronics with superb passive-cooling capabilities are of great value for both daytime outdoor dressing comfort and low-carbon economy. Herein, a multifunctional and skinattachable electronic is rationally developed on a porous all-elastomer metafabric for efficient passive daytime radiative cooling(PDRC) and human electrophysiological monitoring. The cooling characteristics are realized through the homogeneous impregnation of polytetrafluoroethylene microparticles in the styrene–ethylene–butylene–styrene fibers, and the rational regulation of microporosity in SEBS/PTFE metafabrics, thus synergistically backscatter ultraviolet–visible–near-infrared light(maximum reflectance over 98.0%) to minimize heat absorption while efficiently emit human-body midinfrared radiation to the sky. As a result, the developed PDRC metafabric achieves approximately 17℃ cooling effects in an outdoor daytime environment and completely retains its passive cooling performance even under 50% stretching. Further, high-fidelity electrophysiological monitoring capability is also implemented in the breathable and skin-conformal metafabric through liquid metal printing, enabling the accurate acquisition of human electrocardiograph, surface electromyogram, and electroencephalograph signals for comfortable and lengthy health regulation. Hence, the fabricated superelastic PDRC metafabric opens a new avenue for the development of body-comfortable electronics and low-carbon wearing technologies. 展开更多
关键词 Passive radiative cooling Human electrophysiological monitoring Superelastic metafabrics Spectrally selective reflecting microfibers liquid metals
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Research on Thermal Management Control Strategy of Electric Vehicle Liquid Cooling Battery Pack
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作者 Zhenhua Li 《Modern Electronic Technology》 2021年第2期36-40,共5页
Due to the risk of thermal runaway in the charging and discharging process of a soft packed lithium battery pack for electric vehicles,a stamping channel liquid cooling plate cooling system is designed,and then the he... Due to the risk of thermal runaway in the charging and discharging process of a soft packed lithium battery pack for electric vehicles,a stamping channel liquid cooling plate cooling system is designed,and then the heat dissipation problem of the battery pack is solved through reasonable thermal management control strategy.Using computational fluid dynamics simulation software star-CCM+,the thermal management control strategy is optimized through simulation technology,and the temperature field distribution of battery pack is obtained.Finally,an experimental platform is built,combined with experiments,the effectiveness of the thermal management control strategy of the cooling system is verified.The results show that when the battery pack is in the environment of 25℃,the maximum temperature of the cooling system can be lower than 40℃,the maximum temperature difference between all single batteries is within 5℃,and the maximum temperature difference between inlet and outlet coolant is 3℃,which can meet the heat dissipation requirements of the battery pack and prevent out of control heat generation. 展开更多
关键词 Electric vehicle Power battery liquid cooling system Computational fluid dynamics Analogue simulation
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基于Hessian局部线性嵌入和MLP-Mixer的液体火箭发动机涡轮泵轻量化故障诊断框架
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作者 窦唯 赵东方 +1 位作者 张宏利 刘树林 《振动与冲击》 EI CSCD 北大核心 2024年第2期156-165,共10页
作为液体火箭发动机推进剂输送系统的关键部件,涡轮泵的运行状态直接影响着整个运载系统的性能,然而,现有的故障诊断方法往往面临特性参数选择片面及计算复杂度高等问题。针对上述局限,提出了面向涡轮泵的轻量化故障诊断框架。所提方法... 作为液体火箭发动机推进剂输送系统的关键部件,涡轮泵的运行状态直接影响着整个运载系统的性能,然而,现有的故障诊断方法往往面临特性参数选择片面及计算复杂度高等问题。针对上述局限,提出了面向涡轮泵的轻量化故障诊断框架。所提方法利用Hessian局部线性嵌入算法对信号时域、频域及时频特征进行降维,并引入一种轻量化的深度学习模型MLP-Mixer作为分类器,进而实现不同故障状态的辨识。采用某型号涡轮泵试车数据验证了所提方法的有效性,结果表明,该方法能够在保障诊断精度的同时有效降低计算复杂度,提高诊断效率。 展开更多
关键词 液体火箭发动机涡轮泵 故障诊断 Hessian局部线性嵌入 MLP-Mixer
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动力电池温度集成控制系统设计与研究
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作者 宋杰 辛海明 陈娟 《内燃机与配件》 2024年第6期35-37,共3页
本文以非公路机械动力锂电池为研究对象,围绕动力电池低温加热与高温散热两大关键环节,开展动力电池温度集成控制系统设计与研究。鉴于温度对电池性能及寿命的影响,本文采用挤压成型的铝制型材液冷板,长圆形冷却液道截面,并行布置于模... 本文以非公路机械动力锂电池为研究对象,围绕动力电池低温加热与高温散热两大关键环节,开展动力电池温度集成控制系统设计与研究。鉴于温度对电池性能及寿命的影响,本文采用挤压成型的铝制型材液冷板,长圆形冷却液道截面,并行布置于模组底部与侧面的方式,实现电池模组的多方向冷却。同时,在电池模组两侧加装电阻式加热片,可使低温下的电池快速升温至适宜温度,确保动力电池发挥良好的充放电性能。动力电池温度集成控制系统能够有效解决电池模组单体电芯温差过大等问题,为动力电池安全高效工作提供强有力保障。 展开更多
关键词 动力电池 热管理 液体冷却
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两种直升机多舱油箱惰化系统代偿损失比较
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作者 王俊杰 范菊莉 +3 位作者 郭晨阳 刘宇萌 段伟杰 冯诗愚 《海军航空大学学报》 2024年第2期266-274,共9页
针对某型直升机多舱油箱,设计了冷却空气控温和燃油热沉控温的2种多舱油箱惰化系统。基于AMESim平台搭建了这2种系统模型,研究了这2种系统的控温效果和各舱油箱参数变化规律,并且引入代偿损失指标对这2种系统性能进行评估。仿真结果表... 针对某型直升机多舱油箱,设计了冷却空气控温和燃油热沉控温的2种多舱油箱惰化系统。基于AMESim平台搭建了这2种系统模型,研究了这2种系统的控温效果和各舱油箱参数变化规律,并且引入代偿损失指标对这2种系统性能进行评估。仿真结果表明:2种惰化系统均能控制膜前温度维持在90℃;燃油热沉控温的多舱油箱惰化系统在整个飞行过程中,各舱油箱中最高燃油温度小于32℃,没有超过许用限制;对于直升机而言,由于油箱相比大型客机而言体积较小,通过计算可得,冷却空气控温的多舱油箱惰化系统的燃油代偿损失小于燃油热沉控温的多舱油箱惰化系统的燃油代偿损失。仿真结果为多舱油箱惰化系统的设计和优化提供了参考依据。 展开更多
关键词 中空纤维膜惰化 多舱油箱 液体冷却系统 AMESIM仿真 燃油代偿损失
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两相流振荡流动特性的可视化实验研究
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作者 朱海荣 肖旭 +2 位作者 张凯伦 李林 王钊 《河北科技大学学报》 CAS 北大核心 2024年第1期35-43,共9页
为了解决活塞内冷油腔中气液两相流的振荡传热问题,设计并搭建了由柴油机改装的往复振荡实验装置,利用高速摄像技术对内冷油腔实验件中气液两相流的振荡流动过程进行了可视化观测实验,分析在不同转速和液体填充率下实验件中气液两相流... 为了解决活塞内冷油腔中气液两相流的振荡传热问题,设计并搭建了由柴油机改装的往复振荡实验装置,利用高速摄像技术对内冷油腔实验件中气液两相流的振荡流动过程进行了可视化观测实验,分析在不同转速和液体填充率下实验件中气液两相流在起振阶段和充分振荡阶段的振荡流动形态。结果表明:在起振阶段,气液两相的分界面明显,没有强烈的湍流混合运动,在充分振荡阶段,液体的运动规律及流动形态呈周期性变化;转速主要影响气液两相流的湍流强度,填充率主要影响气液两相流的流动形态。研究结果揭示了内冷油腔中气液两相流的振荡流动规律,可为高强化活塞的结构优化设计提供参考。 展开更多
关键词 内燃机工程 内冷油腔 气液两相流 振荡流动 可视化
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车载雷达液冷源的模块化设计方法研究
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作者 刘晓红 李晓峰 张帅旗 《电子机械工程》 2024年第2期39-42,52,共5页
文中分析了车载雷达液冷源设计中存在非标定制、种类多样的问题,根据液冷源的产品特点,重点针对高度受限的液冷源开展模块化设计方法研究。研制了一种基于R410a制冷剂的30 k W标准制冷模块,并开展了制冷模块的性能测试、环境适应性测试... 文中分析了车载雷达液冷源设计中存在非标定制、种类多样的问题,根据液冷源的产品特点,重点针对高度受限的液冷源开展模块化设计方法研究。研制了一种基于R410a制冷剂的30 k W标准制冷模块,并开展了制冷模块的性能测试、环境适应性测试和集成验证。该标准制冷模块可通用、可互换、数量可编辑、可扩展,适配于不同规格的液冷源,可大大缩短液冷源的研制周期,降低研制和维护成本,为液冷源的标准化和系列化设计提供借鉴。 展开更多
关键词 液冷源 模块化设计 应用验证
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