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Theoretical and Experimental Investigation of Flexural Vibration Transfer Properties of High-Pressure Periodic Pipe 被引量:5
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作者 魏振东 李宝仁 +1 位作者 杜经民 杨钢 《Chinese Physics Letters》 SCIE CAS CSCD 2016年第4期68-71,共4页
According to the theory of phononic crystals, the hydraulic pipeline is designed to be a periodic structure composed of steel pipes and hoses to suppress the vibration of the hydraulic system with band gaps. We presen... According to the theory of phononic crystals, the hydraulic pipeline is designed to be a periodic structure composed of steel pipes and hoses to suppress the vibration of the hydraulic system with band gaps. We present theoretical and experimental investigations into the flexural vibration transfer properties of a high-pressure periodic pipe with the force on the inner pipe wall by oii pressure taken into consideration. The results show that the vibration attenuation of periodic pipe decreases along with the elevation of working pressure for the hydraulic system, and the band gaps in low frequency ranges move towards high frequency ranges. The periodic pipe has good vibration attenuation performance in the frequency range below 1000 Hz and the vibration of the hydraulic system is effectively suppressed. A11 the results are validated by experiment. The experimental results show a good agreement with the numerical calculations, thus the flexural vibration transfer properties of the high- pressure periodic pipe can be precisely calculated by taking the fluid structure interaction between the pipe and oil into consideration. This study provides an effective way for the vibration control of the hydraulic system. 展开更多
关键词 of on in Theoretical and Experimental Investigation of Flexural Vibration transfer Properties of High-Pressure Periodic pipe IS
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Numerical investigation on flow and heat transfer characteristics of supercritical RP-3 in inclined pipe 被引量:4
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作者 Zhi TAO Liangwei LI +3 位作者 Jianqin ZHU Xizhuo HU Longyun WANG Lu QIU 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2019年第8期1885-1894,共10页
Numerical simulations of flow and heat transfer to supercritical RP-3 through the inclined tubes have been performed using LS k–e model embedded in Fluent. The physical properties of RP-3 were obtained using the gene... Numerical simulations of flow and heat transfer to supercritical RP-3 through the inclined tubes have been performed using LS k–e model embedded in Fluent. The physical properties of RP-3 were obtained using the generalized corresponding state laws based on the fourcomponent surrogate model. Mass flow rate is 0.3 g/s, system pressure is 3 MPa, inlet temperature is 373 K. Inclination of the inclined pipe varied from -90° to 90°, with heat flux varied from 300 k W/m^2 to 400 kW/m^2. Comparison between the calculated result and the experimental data indicates the range of error reasonable. The results of ±45° show that temperature inhomogeneity in inclined pipe produce the secondary flow in its cross section due to the buoyancy force. Depending on the strength of the temperature inhomogeneity, there will be two different forms of secondary flow and both contribute to the convective heat transfer in the pipe. The secondary flow intensity decreases when the inhomogeneity alleviates and thermal acceleration will play a leading role. It will have a greater impact on the turbulent flow to affect the convective heat transfer in the pipe. When changing the inclination, it affects the magnitude of the buoyant component in flow direction. The angle increases, the buoyancy component decreases. And the peak temperature of wall dominated by the secondary flow will move forward and increase in height. 展开更多
关键词 Heat transfer HYDROCARBON FUEL Inclined pipe SUPERCRITICAL pressure Variable properties
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Energy Transfer Mechanism and Probability Analysis of Submarine Pipe Laterally Impacted by Dropped Objects 被引量:3
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作者 梁静 余建星 +3 位作者 余杨 W.Lam 赵羿羽 段晶辉 《China Ocean Engineering》 SCIE EI CSCD 2016年第3期319-328,共10页
Energy transfer ratio is the basic-factor affecting the level of pipe damage during the impact between dropped object and submarine pipe. For the purpose of studying energy transfer and damage mechanism of submarine p... Energy transfer ratio is the basic-factor affecting the level of pipe damage during the impact between dropped object and submarine pipe. For the purpose of studying energy transfer and damage mechanism of submarine pipe impacted by dropped objects, series of experiments are designed and carried out. The effective yield strength is deduced to make the quasi-static analysis more reliable, and the normal distribution of energy transfer ratio caused by lateral impact on pipes is presented by statistic analysis of experimental results based on the effective yield strength, which provides experimental and theoretical basis for the risk analysis of submarine pipe system impacted by dropped objects. Failure strains of pipe material are confirmed by comparing experimental results with finite element simulation. In addition, impact contact area and impact time are proved to be the major influence factors of energy transfer by sensitivity analysis of the finite element simulation. 展开更多
关键词 IMPACT pipe energy transfer quasi-static analysis FE simulation
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Maximum heat transfer capacity of high temperature heat pipe with triangular grooved wick 被引量:4
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作者 沈妍 张红 +2 位作者 许辉 于萍 白穜 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第1期386-391,共6页
A mathematical model was developed to predict the maximum heat transfer capacity of high temperature heat pipe with triangular grooved wick. The effects of the inclination angle and geometry structure were considered ... A mathematical model was developed to predict the maximum heat transfer capacity of high temperature heat pipe with triangular grooved wick. The effects of the inclination angle and geometry structure were considered in the proposed model.Maximum heat transfer capacity was also investigated experimentally. The model was validated by comparing with the experimental results. The maximum heat transfer capacity increases with the vapor core radius increasing. Compared with the inclination angle of0°, the maximum heat transfer capacity increases at the larger inclination angle, and the change with temperature is larger. The performance of heat pipe with triangular grooved wick is greatly influenced by gravity, so it is not recommended to be applied to the dish solar heat pipe receiver. 展开更多
关键词 high temperature heat pipe triangular grooved wick heat transfer capacity
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Analysis of Vibration of the Euler-Bernoulli Pipe Conveying Fluid by Dynamic Stiffness Method and Transfer Matrix 被引量:3
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作者 Yunfeng Li Yundong Li Naveed Akbar 《Journal of Applied Mathematics and Physics》 2020年第1期172-183,共12页
The dynamic stiffness method and Transfer method is applied to study the vibration characteristics of the Euler-Bernoulli pipe conveying fluid in this paper. According to the dynamics equation of the pipe conveying fl... The dynamic stiffness method and Transfer method is applied to study the vibration characteristics of the Euler-Bernoulli pipe conveying fluid in this paper. According to the dynamics equation of the pipe conveying fluid, the element dynamic stiffness is established. The vibration characteristic of the single-span pipe is analyzed under two kinds of boundary conditions. The results compared with the literature, which has a good consistency. Based on this method, natural frequency and the critical speed of the two types of multi-span pipe are deserved. This paper shows that the dynamic stiffness method and transfer matrix is an effective method to deal with the vibration problem of pipe conveying fluid. 展开更多
关键词 DYNAMIC STIFFNESS transfer Matrix Euler-Bernoulli pipe
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STUDIES ON HEAT TRANSFER OF FLUID OSCILLATED WITHIN PIPES
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作者 Cao Yuzhang, Zhu Gujun and Zhao LingdeBeijing University of Aeronautics and Astronautics 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 1991年第3期287-294,共8页
This paper is a brief summarization of research achievements about enhanced heat transfer of a fluid oscillated within pipes. Analytical solutions, numerical results and dimensional analyses are summarized and compare... This paper is a brief summarization of research achievements about enhanced heat transfer of a fluid oscillated within pipes. Analytical solutions, numerical results and dimensional analyses are summarized and compared with experimental data in the paper. Also, the mechanism of enhanced heat transfer is discussed. It is considered that increase in the effective area of heat conduction and increase in temperature gradient are the main reasons of enhanced heat transfer. 展开更多
关键词 HEAT STUDIES ON HEAT transfer OF FLUID OSCILLATED WITHIN pipeS
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Experimental Analysis of Heat Transfer Behavior inside Heat Pipe Integrated with Cooling Plates
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作者 Chen-Ching Ting Chien-Chih Chen 《Engineering(科研)》 2011年第9期959-964,共6页
This work used experimental methods to study heat transfer behavior inside a heat pipe and found that heat transfer behavior inside the heat pipe was changed due to its integration with cooling plates. This change cau... This work used experimental methods to study heat transfer behavior inside a heat pipe and found that heat transfer behavior inside the heat pipe was changed due to its integration with cooling plates. This change caused the heat pipe to have copper-like heat transfer behavior. Experimental performances first built a CPU simulator with maximum heat power 300 W in accordance with the ASTM standard as heat source and measured temperature distribution by using infrared thermography and thermocouple thermometer. Observation of heat transfer behavior inside heat pipe influenced by its integration with cooling plates used color schlieren technique. A commercial CPU heat pipe cooler was also used as reference object in this work. Integration of the heat pipe with cooling plates causes the heat pipe to have the copper-like heat transfer behavior. The results indicate that rebuilding the bare heat pipe’s heat transfer behavior is the best solution for improving cooling efficiency of the heat pipe cooler. 展开更多
关键词 HEAT transfer BEHAVIOR HEAT pipe Color SCHLIEREN Infrared THERMOGRAPHY HEAT pipe COOLER
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Simulation of Heat Transfer in a Tubular Pipe Using Different Twisted Tape Inserts
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作者 Md. Moniruzzaman Bhuyan Ujjwal K. Deb +1 位作者 M. Shahriar Simul Acherjee 《Open Journal of Fluid Dynamics》 2017年第3期397-409,共13页
This paper performs a simulation study of the heat transfer phenomena in a tubular U-loop pipe. We have investigated the enhancement of heat transfer with mass flow in a pipe without insert, with full length and short... This paper performs a simulation study of the heat transfer phenomena in a tubular U-loop pipe. We have investigated the enhancement of heat transfer with mass flow in a pipe without insert, with full length and short length twisted tape inserts. The length of the pipe is approximately 2436.80 mm long with 29 mm inner and 33 mm outer diameter respectively. A constant heat flux is taken which generated the boundary layer of the pipe close to the flowing fluid around the boundary. The simulations are considered for the stationary and the time dependent module for 35 seconds with different length of inserts. The comparisons are made among the results. We observed that the transfer of heat is enhanced significantly with the increase of the length of inserts inside the computational domain. We also found that, full length twisted tape inserts are more effective than comparing with the short length inserts and without insert. 展开更多
关键词 Heat transfer NON-ISOTHERMAL Flow TUBULAR pipe TWISTED Tape INSERTS SIMULATION
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基于Fe_(3)O_(4)纳米流体热管的动力电池散热特性模拟研究
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作者 张云峰 蒋杜伟 +2 位作者 董志博 张学文 谭淑玉 《汽车工程师》 2026年第1期17-24,共8页
针对锂离子电池在有限空间内的散热及均温性需求,提出一种基于热管的动力电池散热结构,包括铝板和热管,并以40 A·h锂离子电池为研究对象,建立电池产热模型,采用数值模拟的方法探究了不同工质及热管数量对动力电池温度的影响,结果表... 针对锂离子电池在有限空间内的散热及均温性需求,提出一种基于热管的动力电池散热结构,包括铝板和热管,并以40 A·h锂离子电池为研究对象,建立电池产热模型,采用数值模拟的方法探究了不同工质及热管数量对动力电池温度的影响,结果表明:热管数量为6个时,基于去离子水工质的热管和基于Fe_(3)O_(4)纳米流体工质的热管散热结构均表现出较好的散热性能,以Fe_(3)O_(4)纳米流体为工质的热管对电池模组的散热效果更佳;在工质采用Fe_(3)O_(4)纳米流体的条件下,热管数量为9个时,与热管数量为6个时相比,在1 C、2 C和3 C放电倍率下,电池模组的最高温度分别降低了0.5℃、1.77℃和2.24℃。 展开更多
关键词 动力电池 热管 纳米流体 强化换热 数值模拟
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3D打印高温钛水热管的传热性能实验和仿真
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作者 王慧志 卢帅婷 +3 位作者 郭元东 黄金印 苗建印 林贵平 《空间科学学报》 北大核心 2026年第1期239-246,共8页
未来星际航行对高温工况下的废热排散提出了更高的要求.当前辐射器设计越来越依赖热管,高温环境下具有高导热性的钛水热管,可以有效传递热量,并且最大限度缩减辐射器的面积.本文针对3D打印的钛水热管进行了传热性能实验与仿真研究.在100... 未来星际航行对高温工况下的废热排散提出了更高的要求.当前辐射器设计越来越依赖热管,高温环境下具有高导热性的钛水热管,可以有效传递热量,并且最大限度缩减辐射器的面积.本文针对3D打印的钛水热管进行了传热性能实验与仿真研究.在100~225℃的工作温度范围内,通过向热管施加不同的加热功率,研究钛水热管的传热能力.实验结果表明,钛水热管的最大传热温差随加热功率的增大而增加,钛水热管在200℃时最大传热功率为893.9 W.在实验测试的基础上开展仿真研究,得到钛水热管的等效换热系数随温度的变化规律,并预测250℃下其等效换热系数为3650 W·m^(-2)·K^(–1),传热温差为29.22℃. 展开更多
关键词 3D打印 高温热管 传热性能 实验研究
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新型化学吸附热管传热性能研究
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作者 闫宏业 刘晓贺 +3 位作者 朱丙龙 于洋 陈晓欧 王丽伟 《化工学报》 北大核心 2026年第1期228-239,共12页
针对传统热管受毛细/携带极限制约、难以长距离传热的问题,提出并研究一种耦合固-气化学吸附与气-液相变的化学吸附热管,建立稳态传热模型并开展变工况实验。结果表明,装置在不同冷热源条件下响应稳定;在冷凝温度20℃、加热温度90℃时,... 针对传统热管受毛细/携带极限制约、难以长距离传热的问题,提出并研究一种耦合固-气化学吸附与气-液相变的化学吸附热管,建立稳态传热模型并开展变工况实验。结果表明,装置在不同冷热源条件下响应稳定;在冷凝温度20℃、加热温度90℃时,传热量达697 W、轴向热通量为772.24 kW/m^(2);热阻分解显示壁面导热与对流为主导,复合吸附剂床层热阻占比较小。研究结果表明,该热管可用于中低温热源驱动的长距离连续传热,具有广阔应用前景。 展开更多
关键词 传热 化学吸附 热管 多相反应 氨吸附 复合吸附剂
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自动钻机钻杆转运过程故障诊断方法
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作者 肖玉清 《煤矿机械》 2026年第2期177-181,共5页
为了监测自动钻机钻杆转运过程中机械手、钻杆箱及双夹持器的工作状态和配合状况,提出一种基于融合多源异构数据的故障诊断方法。首先,利用不同类型的传感器采集一维振动信号和二维图像信号;其次,对所采集的信号实施预处理:把机械臂图... 为了监测自动钻机钻杆转运过程中机械手、钻杆箱及双夹持器的工作状态和配合状况,提出一种基于融合多源异构数据的故障诊断方法。首先,利用不同类型的传感器采集一维振动信号和二维图像信号;其次,对所采集的信号实施预处理:把机械臂图像信号转化为轨迹信号,并将机械臂一维运动感知信号转化为图像信号,进而有效地提取全局、局部特征;最后,使用一维卷积神经网络(1DCNN)、二维卷积神经网络(2DCNN)提取同一信号源的自特征,使用具有注意力机制的互特征融合网络以融合2个传感器的故障信号,实现高精度的故障诊断。采用某型自动钻机作为试验对象,对其钻杆转运过程进行故障诊断测试。结果表明,对于抓取失效、转运失效、递送失效3种不同类型的故障诊断,准确率分别为99.46%、99.48%、98.69%,满足自动钻机钻杆转运过程故障诊断需求。 展开更多
关键词 自动钻机 故障诊断 钻杆转运 CNN YOLOv5
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预应力锚索钢锚管劈裂注浆加固技术试验研究
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作者 杨勇 周文皎 +3 位作者 徐勇 刘睿迪 刘骏 李知军 《铁道建筑》 北大核心 2026年第2期106-111,共6页
针对破碎岩土体及易塌孔地层中锚索施工困难、加固效果有限的问题,结合多次分段控制注浆钢锚管工艺,提出了一种预应力锚索钢锚管劈裂注浆复合边坡加固新技术。基于锚索锚固原理,研究了复合结构工作状态下的力学响应特征,并评估其加固效... 针对破碎岩土体及易塌孔地层中锚索施工困难、加固效果有限的问题,结合多次分段控制注浆钢锚管工艺,提出了一种预应力锚索钢锚管劈裂注浆复合边坡加固新技术。基于锚索锚固原理,研究了复合结构工作状态下的力学响应特征,并评估其加固效果。结果表明:由2束、3束、4束预应力钢绞线与钢锚管组成的复合边坡加固结构,其极限承载力分别为380、465、580 kN,较传统预应力锚索显著提升,锚固效果更优;若先张拉钢锚管后张拉钢绞线则钢锚管预应力损失严重,无法实现预应力叠加;工程实践中可只张拉钢绞线,无需对钢锚管施加预应力;长期监测表明,该结构预应力损失约15%,可稳定提供370~390 kN的锚固力,工作状态正常,具备良好的长期稳定性。 展开更多
关键词 边坡加固 预应力钢锚管锚索 传递规律 加固机理 现场试验
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煤矿非对称段比重力热管回风换热应用案例分析
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作者 李强 叶磊 +4 位作者 郝锟 刘明 岳旭东 魏石豪 胡兆坤 《节能》 2026年第1期124-127,共4页
在矿井进回风重力式热管换热系统的设计中,由于蒸发段与冷凝段长度比在各工况下基本一致,难以满足性能优化需求。基于非对称段比思路,建立重力热管回风换热数学模型,并在高寒条件下对陕西某煤矿的重力式热管系统进行现场试验。结果表明... 在矿井进回风重力式热管换热系统的设计中,由于蒸发段与冷凝段长度比在各工况下基本一致,难以满足性能优化需求。基于非对称段比思路,建立重力热管回风换热数学模型,并在高寒条件下对陕西某煤矿的重力式热管系统进行现场试验。结果表明,预测值与实测值的相对误差均小于6%;流速对蒸发段和冷凝段传热性能影响明显,蒸发/冷凝段比优化至1.9∶2.6~2.1∶2.4时,可获得最佳进风加热效果与单管换热量。 展开更多
关键词 矿井回风 换热量 重力式热管 传热特性
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太阳墙与地埋管耦合制冷技术模拟及应用研究
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作者 孙培竣 郭清华 +2 位作者 夏斐 吕希萌 王思佳 《建筑节能(中英文)》 2026年第2期20-28,共9页
农村地区住宅夏季空调能耗较大,选择绿色节能的制冷方式,对农宅的节能减排具有重要意义。将太阳墙系统与地埋管系统相结合,设计出一种新型通风系统,该系统不仅能够有效解决太阳墙白天吸热多、夜间散热快的问题,而且具有良好的制冷效果... 农村地区住宅夏季空调能耗较大,选择绿色节能的制冷方式,对农宅的节能减排具有重要意义。将太阳墙系统与地埋管系统相结合,设计出一种新型通风系统,该系统不仅能够有效解决太阳墙白天吸热多、夜间散热快的问题,而且具有良好的制冷效果。选取典型的夏季晴天工况,采用Fluent数值模拟和实物实验相结合的方法,分析耦合系统的制冷性能和经济效益,并提出应用于胶东地区农宅的节能改造方案。研究表明:夏季系统运作期间,室内平均温度保持在20.8~24.2℃,较对照房间降低6.15℃左右;7:00-17:00时段,系统出风口温度稳定在22.2℃左右,平均温降和最高温降分别为5.52℃和6.8℃。研究结果对于当前新能源利用、节能减排、改善室内舒适度、节能改造农宅和新建农宅具有较好的参考价值。 展开更多
关键词 太阳墙 地埋管 夏季制冷 通风换热 农宅改造
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Thermal performance of heat pipe with different micro-groove structures 被引量:1
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作者 白鹏飞 汤勇 +1 位作者 唐彪 陆龙生 《Journal of Central South University》 SCIE EI CAS 2008年第S2期240-244,共5页
Four kinds of micro heat pipe of trapezoidal groove wick structure with different numbers of grooves or aspect ratios were studied and compared about thermal transfer performances in order to optimize the manufacture ... Four kinds of micro heat pipe of trapezoidal groove wick structure with different numbers of grooves or aspect ratios were studied and compared about thermal transfer performances in order to optimize the manufacture of micro heat pipe with groove wick structure. The results show that these micro heat pipes have excellent performance in heat transfer; the equivalent thermal conductivity coefficient is two orders of magnitude compared with that of copper; the number and aspect ratio of grooves have a prominent effect on the performance of such thermal transfer. The optimum number of grooves is lower than 60 and the best aspect ratio is near to 1.5. The temperature and thermal transport rate are almost directly proportional relationship, but this relationship will be broken up suddenly when the critical heat flux is reached. 展开更多
关键词 HEAT pipe micro CHANNEL ELECTRONIC HEAT DISSIPATION HEAT transfer
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局部多热源下拓扑优化通道平板脉动热管的传热特性 被引量:2
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作者 孙芹 周国庆 +3 位作者 翟万领 高山 罗倩倩 屈健 《化工学报》 北大核心 2025年第3期1006-1017,共12页
借助湿刻技术在合金铜材上制作了传统蛇形结构和拓扑结构平板脉动热管,以R141b为工质,比较了上述两种热管在局部加热(加热面积15 mm×15 mm,20 mm×20 mm和25 mm×25 mm)情况下的启动与传热性能差异及变化规律。实验结果表... 借助湿刻技术在合金铜材上制作了传统蛇形结构和拓扑结构平板脉动热管,以R141b为工质,比较了上述两种热管在局部加热(加热面积15 mm×15 mm,20 mm×20 mm和25 mm×25 mm)情况下的启动与传热性能差异及变化规律。实验结果表明,传统型和拓扑型脉动热管的启动和传热性能均随着局部加热面积的增大而增强。相比于传统平板脉动热管,拓扑优化设计能够将热管通道集中分布在局部热源内,有效增大加热段蒸发/沸腾区域的面积,从而弱化热源面积对其启动和传热性能的影响。传统型脉动热管在多局部热源加热条件下的启动可分为“突变”和“平缓变化”两种方式,与单一均匀热源加热的启动方式相似,但拓扑型脉动热管在所有工况下的启动过程中均无温度突变行为。拓扑结构设计能够有效提高热管整体的均温性和传热极限,尤其是可以改善较小热源面积和中低加热功率下脉动热管的传热性能,在热源面积为15 mm×15 mm和加热功率约为75 W时,其有效热导率比传统热管提高约41.8%。具有拓扑优化通道的脉动热管能够弥补传统脉动热管在局部多热源散热应用中的不足,并表现出良好的均温性和传热极限,从而拓宽脉动热管的应用领域。 展开更多
关键词 脉动热管 拓扑优化 传热 启动 多热源
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长输蒸汽管网关键部件节能提效研究 被引量:1
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作者 何海军 王乃继 +1 位作者 赵静 霍达 《化学工业与工程》 北大核心 2025年第3期173-182,共10页
长输蒸汽管网散热主要包含管道表面散热和支架散热2方面,支架散热损失在管网散热中占比15%~30%,降低支架热损失可以有效提高能源利用率。建立了1个包括混凝土支墩在内的管道支架三维传热数值模型,通过实验验证了模型的准确性。模拟了不... 长输蒸汽管网散热主要包含管道表面散热和支架散热2方面,支架散热损失在管网散热中占比15%~30%,降低支架热损失可以有效提高能源利用率。建立了1个包括混凝土支墩在内的管道支架三维传热数值模型,通过实验验证了模型的准确性。模拟了不同蒸汽温度下非隔热支架和常规隔热支架的散热量变化,并从结构和材料2方面对常规隔热支架进行了改进。研究表明,常规隔热支架的散热量比非隔热支架少37.2%~55.3%。基于常规隔热支架结构,通过调整肋板高度、管夹厚度和硬质保温层,提高了支架的保温性能,散热量降低28.7%。通过对支架的保温材料研究显示,单独替换硬质保温材料散热量降低29.1%~30.9%,同时替换硬、软质保温材料,散热量降低34.9%。经过结构和材料改进的隔热支架,比常规隔热支架散热量降低49.4%,比非隔热支架散热量降低71.4%,节能效果显著。 展开更多
关键词 管道支架 传热 隔热性能 数值模拟 改进研究
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体内融合热管的通风刹车盘传热数值计算 被引量:1
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作者 夏侯国伟 王瑞麒 +4 位作者 乔妮 刘豪 龙葵 顾小松 穆康 《交通运输工程学报》 北大核心 2025年第1期211-220,共10页
为强化现有通风刹车盘(VBD)的散热,防止其发生热衰退,提高车辆的刹车安全性,提出了一种体内融合整体热管的新型通风刹车盘,即热管盘(HPD);为检验HPD的传热性能及其改进效果,在相同工况的条件下对HPD、VBD进行了基于FLUENT的详细的传热... 为强化现有通风刹车盘(VBD)的散热,防止其发生热衰退,提高车辆的刹车安全性,提出了一种体内融合整体热管的新型通风刹车盘,即热管盘(HPD);为检验HPD的传热性能及其改进效果,在相同工况的条件下对HPD、VBD进行了基于FLUENT的详细的传热数值模拟计算,通过数值计算探究了HPD的传热性能与3个影响因素,即充液率、热流密度、转速的内在关系,并将HPD、VBD的传热性能进行对比。研究结果表明:HPD的最佳充液率在小热流密度下(不大于4700 W·m^(-2))为35%,在大热流密度下(大于4700 W·m^(-2))为40%;HPD的热阻会随热流密度增加而下降,随转速的升高而增加;HPD传热效果较VBD有显著提升,譬如在充液率为35%、转速为23.1 rad·s^(-1)、热流密度为5839 W·m^(-2)时,HPD的盘面平均温度及盘面最高温度较VBD可分别下降49和53 K,同时热阻可降低28%;HPD的盘面平均温度偏差虽略高于VBD,但因其强大的散热能力,HPD的局部超温反而得到改善;HPD联通空间设置的承压块保证了其结构强度和承压能力,且其预测失效循环次数较VBD还可增加269次。可见,提出的新型热管盘从强化传热着手,可明显降低其工作温度,从而提高通风刹车盘的寿命与刹车安全性。 展开更多
关键词 汽车工程 通风刹车盘 数值模拟 热管 两相流 传热
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不同断面冷却通道内超临界RP-3对流换热数值研究
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作者 赵金辉 魏延龙 +1 位作者 徐政 布一凡 《热科学与技术》 北大核心 2025年第4期375-383,共9页
超临界状态下碳氢燃料的热物性将随着温度发生剧烈的改变,研究微小通道内超临界碳氢燃料的对流换热特性对主动再生冷却技术的发展具有重要意义。通过数值模拟方法,以超临界碳氢燃料航空煤油(RP-3)在不同微小冷却通道内的对流换热过程为... 超临界状态下碳氢燃料的热物性将随着温度发生剧烈的改变,研究微小通道内超临界碳氢燃料的对流换热特性对主动再生冷却技术的发展具有重要意义。通过数值模拟方法,以超临界碳氢燃料航空煤油(RP-3)在不同微小冷却通道内的对流换热过程为研究对象,对比分析了圆形冷却通道与内螺纹冷却通道内,流体壁面温度、主流速度及主流温度、沿程平均换热系数的分布规律。研究发现,增加内螺纹后,流体出口处平均流速、出口处平均温度相比圆形冷却通道有一定程度的降低,冷却通道壁面峰值温度平均降低240 K左右。内螺纹在一定程度上可以扰乱近壁面处流体流动,影响温度边界层和速度边界层的形成,且管内流体因内螺纹的存在做旋转流动,有效抑制了冷却通道内传热恶化的发生。 展开更多
关键词 微小通道 碳氢燃料 内螺纹管 传热恶化 对流换热
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