共查询到19条相似文献,搜索用时 203 毫秒
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1引言微型结构由于其巨大的应用潜力,作为热控制和冷却的有效手段已被引入电子集成电路、生物医学、航天、高效紧凑式与微型换热器、材料加工等现代高新技术领域。由于相交换热能传递更多的热量,微结构中的流动沸腾受到了日益重视。但微通道中流体流动和换热的特性当然与所用工质有关。微通道内液体混合物的流动沸腾至今极少见到公开报道[‘]。彭和王等人l‘-‘]报道了对微通道和微槽结构内单组元液体流动沸腾的研究,发现起始沸腾点所需壁面过热度比常规尺度槽道内的低得多,没有明显的部分核沸腾现象,同时发现微槽尺寸对流动沸腾的… 相似文献
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实验研究了制冷剂-润滑油混合流体在内嵌泡沫金属圆管内流动沸腾的换热特性。泡沫金属为10ppi、90%孔隙率;制冷剂为R410A,润滑油为VG68,油浓度为0~5%。实验结果表明:纯制冷剂工况下,泡沫金属强化流动沸腾换热系数,换热系数提高30%~120%;含油工况下,泡沫金属只强化流动沸腾换热系数20%以下,在低质流密度或者高质流密度的高干度情况下出现恶化换热的情况。润滑油总是恶化制冷剂在内嵌泡沫金属圆管内流动沸腾的换热系数,换热系数最多恶化71%,且在低质流密度下对换热的恶化比在高质流密度工况下严重。 相似文献
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针对常规闭式并联微通道内流动沸腾换热存在气泡生长受限产生的堵塞效应以及不同通道内气泡核化生长不同步导致的并联通道传热不稳定性等问题,设计了一种顶部联通型开式并联微通道蒸发器。采用无水乙醇为工质,在入口过冷度为15℃、质量流速为175 kg·m~(-2)·s~(-1)及热流密度270~761 kW·m~(-2)条件下,开展了该新型微通道冷却器中流动沸腾换热的实验研究,发现了传热系数随干度的增加呈现三类典型趋势,即传热系数单调上升、传热系数先上升后下降再上升、传热系数先上升再保持基本不变;结合高速可视化流型研究,发现了与流型密切关联的三类传热机理,即:1)以气泡核化为主的核态沸腾换热;2)上游核态沸腾为主,下游两相强制对流换热主导;3)偏离核态沸腾后的膜态沸腾换热。分析表明,沸腾数Bo是主导三类传热模式的主要无量纲数。 相似文献
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高功率电子芯片的安全运行需要高效的散热技术。流动沸腾换热由于高换热系数受到广泛关注。为精确模拟微通道内流动沸腾复杂两相流过程,本文提出了耦合VOF方法的在相界面处迭代求解能量源项的相变模型。针对单微柱微通道内流动沸腾换热过程进行了数值模拟,分析了瞬态两相流过程及温度场演变规律,查明了热流密度及进口过冷度的影响机制。结果表明,由于局部蒸汽的覆盖,不同工况下微通道内流动沸腾存在热阻的转折点,高热流密度对应更高的气泡生长速度和成核面积,高过冷度会延缓转折点,但整体热阻将升高。 相似文献
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本文实验研究了非共沸混合制冷剂R134a/R245fa(质量比为0.7/0.3)在长度为45 mm、65 mm的平行微通道内的流动沸腾特性。微通道由30个截面为0.5 mm×0.5 mm矩形微通道组成。得到了质量流速在542.22~995.56kg·m~(-2)·s~(-1)、热流密度在4.9~100.2 W·cm~(-2)时的流动沸腾传热系数,并对R134a/R245fa和R134a的换热系数进行对比,结果表明热流密度、质量流速、通道长度对换热系数均有影响。考虑R134a/R245fa相变时的附加传质阻力对换热的影响下,在纯工质关联式中引入混合物影响因子,得到了适用于本实验工况下R134a/R245fa的关联式。 相似文献
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FC-72在竖直壁面上及微小三角型通道内的沸腾传热 总被引:1,自引:0,他引:1
本文对浸在FC-72液池中的竖直壁面及两个微小三角形通道进行了沸腾实验研究,考虑了管道尺寸对沸腾传热特性的影响。两个微小三角形通道的边长分别为1.5和2.5 mm,水力直径分别为0.87和1.44 mm,长度50 mm,采用铜块上开V型沟槽,再覆盖上透明的玻璃片构成。热流密度由贴在铜块背后的膜状加热器提供。实验得到了沸腾曲线和传热系数,并用DV摄影机拍摄到了沸腾状况。实验结果显示,管道尺寸对沸腾传热特性有显著的影响,CHF值随通道尺寸的减小而减小,小通道在低热流密度时传热系数较大。 相似文献
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This study presents new data on nucleate boiling heat transfer obtained in compact horizontal tube bundles with small tube gaps. The experiment investigates the heat transfer enhancement effects by the restricted spaces comprising the compact tube bundles and the enhanced heat transfer tubes for nucleate boiling heat transfer of R-11 at atmospheric pressure. A roll-worked tube was used as a new type of enhanced heat transfer tube. The experimental results show that the small tube gaps can greatly enhance boiling heat transfer in a smooth tube bundle, while enhancement effects of small gaps were not quite significant for the enhanced tube bundle. There is a compound effect from the enhanced surface and the restricted space only for the enhanced tube bundle with the tube gap of 0.5 mm. The effects of the tube positions within both compact tube bundles on the boiling heat transfer were minor. 相似文献
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Pool boiling characteristics on horizontal tubes with diameter lying between wires and industrial tubes have been investigated experimentally. Boiling experiments are carried out at near atmospheric pressures with water and R-123 as boiling liquids. The experimental results show quite a different boiling behavior compared to larger tubes or plates. The commonly used correlations are found to be ineffective over this range of diameters. A developing sliding bubble mechanism can be attributed to such behavior which shows a strong diameter effect. The heat transfer is found to increase with diameter which is contrary to that on industrial size tubes. Useful boiling data are presented in this range of diameters in which experimental data are scarce. The need for more investigations is stressed in view of emerging applications in this area. 相似文献
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Subcooled flow boiling heat transfer experiments were performed with water and ethylene glycol/water mixtures at five flow velocities and four fluid inlet temperatures. Both turbulent flow and laminar flow were tested in a special test facility with its experimental test section heated from the bottom surface only. Boiling curves and subcooled flow boiling heat transfer coefficients of the tested fluids were determined from the experimental measurements. Predictive correlations of the subcooled flow boiling heat transfer coefficients were developed based on the experimental data. Comparisons are presented of wall temperatures between the experimental measurements and the correlation predictions. 相似文献
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Subcooled flow boiling heat transfer experiments were performed with a 50/50 ethylene glycol/water mixture in a finned aluminum channel. The channel represented a hybrid electric vehicle power electronic cold plate receiving a 50/50 mixture from the radiator at 105°C and 2 atmospheres. Experiments used a range of mixture flow rates and both top- and bottom-heating situations. Boiling curves were generated, and subcooled flow boiling heat transfer coefficients were determined including the test channel fin effects. Subcooled flow boiling heat transfer coefficients showed a 25–30% increase compared to single-phase convection. 相似文献
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1引言微小空间内的沸腾在电子器件冷却、航天热控、微型换热器以及核反应堆的冷却等领域中有着广泛的应用,因此对其沸腾机理的研究具有重要的意义。过去微小空间内的沸腾研究主要是针对光滑表面[‘-‘1,已证明在微小空间里,沸腾换热受空间尺寸的影响要比大空间大。对于多孔表面在微小空间内的沸腾研究则相对较少。本文对矩形槽道表面和烧结型多孔表面在微小空间里的沸腾进行了实验研究。2实验装置实验装置如图1,实验段是3O0mm长的紫铜管(包括矩形槽道管和烧结型的多孔管),内插不同外径的不绣钢管,形成不同间隙的环形小空间。在内… 相似文献