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 共查询到10条相似文献,搜索用时 234 毫秒
1.
水平管降膜蒸发器传热优化研究   总被引:1,自引:0,他引:1  
基于分布参数方法,对大型制冷系统中的水平管外降膜蒸发进行了传热优化数值模拟计算.在计算中,分析了饱和的液态制冷剂R134a在水平的铜管束外流动蒸发的换热特性.模型考虑了不同的管子类型和2流程不同管程布置对蒸发器换热特性的影响,结果表明,蒸发器采用Turbo-EHP管的性能高于其它管;不同管程布置对蒸发器性能的影响比较大,其中,下进上出管程布置的换热性能优于其它管程布置.同时,本文考虑了传热管外"干斑"对换热的影响.本文结论对于大型制冷系统中的降膜蒸发器传热优化设计具有指导性意义.  相似文献   

2.
This study reports an experimental investigation of evaporative heat transfer and pressure drop of R-134a flowing downward inside vertical corrugated tubes with different corrugation pitches. The double tube test section is 0.5 m long with refrigerant flowing in the inner tube and hot water flowing in the annulus. The inner tubes are comprised of one smooth tube and three corrugated tubes with different corrugation pitches of 6.35, 8.46, and 12.7 mm. The test runs are performed at evaporating temperatures of 10°C, 15°C, and 20°C; heat fluxes of 20, 25, and 30 kW/m2; and mass fluxes of 200, 300, and 400 kg/m2s. The experimental data obtained from the smooth tube are plotted with flow pattern map for vertical flow. Comparisons between smooth and corrugated tubes on the heat transfer and pressure drop are also discussed. It is observed that the heat transfer coefficient and frictional pressure drop obtained from the corrugated tubes are higher than those from the smooth tube. Furthermore, the heat transfer coefficient and frictional pressure drop increase as the corrugation pitch decreases. The maximum heat transfer enhancement factor and penalty factor are up to 1.22 and 4.0, respectively.  相似文献   

3.
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   

4.
细圆管内流动凝结换热的实验研究   总被引:2,自引:1,他引:1  
通过实验,分析细圆管的倾斜角度和管径对管内蒸气流动凝结换热的影响。利用实测的管壁温度变化。估计凝结液沿周向的分布。探讨不同倾角和管径条件下;重力作用影响凝结换热的机制。研究表明,在小尺度下,重力的影响受蒸气剪切力和表面张力作用而削弱,现有通行的关联式不适用于细圆管内的凝结换热。  相似文献   

5.
螺旋折流片换热器壳侧传热与流动的数值模拟   总被引:9,自引:1,他引:8  
提出了一种强化管壳式换热器壳侧传热的螺旋折流片式换热器新方案,该方案在部分管子上套上螺旋折流片,不仅强化传热,而且对相邻管子形成支撑;利用FLUENT流体计算软件对同心套管螺旋折流片式换热段的壳侧流场、温度场进行了数值模拟,并讨论了螺旋角对其强化传热和阻力性能的影响。结果显示螺旋折流片诱导的涡旋流动对于减薄边界层,促进近壁流体与主流区流体的动量和质量交换进而强化传热有明显的作用,传热系数可比光管提高约40%-100%,但其流动阻力也将增大。  相似文献   

6.
R134a在水平三维内微肋管内的沸腾换热   总被引:7,自引:0,他引:7  
本文以 R134a为工质,在外径为 16 mm的两种不同几何结构的水平三维微肋管内进行了沸腾换热实验,研究了质量流率、热流密度、蒸汽干度等因素对沸腾换热系数的影响。与相同工况下的水平光管比较, 1#微肋管的换热强化因子在1.5~2.1之间,2#微肋管的换热强化因子在1.9~2.8之间。两种三维微肋管的比较结果显示,单位内表面积上具有更多的微肋数目的 2#管的平均沸腾换热系数比 1#管增加了 28~43%。  相似文献   

7.
1引言行化行业大量的立、卧式重沸器等中都涉及沸腾相变传热。超大规模集成电路的正常工作需要具有10’W/m’量级甚至更高的散热能力山,航天热环境控制也同样要求在小温差下具有极高的散热强度问。对于这些高热流、低温差传热问题,往往也采用沸腾相变的方法解决。沸腾强化技术研究有很长历史,已发展出许多有效的方法,Thome问对过去数十年的工作做了系统的综述。具有烧结多孔表面薄展的HIGHFLUX管则,机加工扩展表面的THERMOEXEC-E管问,西德研制的GEWA-T管问,虽然在强化池沸腾时具有优异性能,很少用于强化流动沸腾。在…  相似文献   

8.
本文应用界面化学理论研究表面作用对分离式热管小螺旋管蒸发段管内流动和换热特性的影响。通过实验及分析,提出通过在一定范围内提高热管工作温度和添加润湿剂以降低水的表面张九提高管内壁的粗糙度以增强液膜的铺展性能。利用这两种方法可以有效地增强小螺旋管内壁面的润湿性能,从而提高管内换热性能.  相似文献   

9.
The effect of thermal environment on boiling heat transfer performance in a section of a horizontal tube bundle was investigated using R-113 as the working fluid. The in-line tube bundle has five columns and 27 rows with a pitch-to-diameter ratio of 1.3. Heal transfer coefficients obtained from the instrumented tube in the tube bundle with only one tube heated while the other tubes remained unhealed and with all the lubes in the bundle heated are reported for a range of heat flux, pressure, mass flow rate, and quality. The results showed that heat transfer coefficient of a tube in a heated bundle is slightly higher than that in an unhealed bundle, with the variation of heat transfer coefficient decreasing as heat flux, mass flow rate, or pressure increased. It was also found that higher quality would tend to improve the heat transfer. However, the effect of quality disappeared as heat flux, mass flow rate, and pressure increased. Based on the experimental data, the mechanism of the heat transfer augment due to thermal environment was analyzed. It was proposed that fluid agitation and thin liquid film formation are two main factors for a heated bundle to have better transfer performance than an unhealed bundle,  相似文献   

10.
FC-72在浸泡于液池中的微小圆管内的沸腾传热   总被引:3,自引:0,他引:3  
本文对浸泡于FC-72液池中的两个微小圆管进行了沸腾实验研究,得到了沸腾曲线和传热系数,并用DV摄像机拍摄到了圆管出口处的沸腾状况,研究了管道尺寸对沸腾传热特性的影响。实验结果显示,管道尺寸对沸腾传热特性有显著的影响。传热系数和CHF随着管道尺寸的缩小而减小.直径为1.10mm的圆管出口处在低热负荷加热时发生了汽泡阻塞,并导致了剧烈的沸腾滞后现象。  相似文献   

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