共查询到19条相似文献,搜索用时 140 毫秒
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对水力直径为2.5 mm的正方形小通道内的非牛顿流体-氮气的垂直向上两相流动流型进行了可视化实验,工质分别为:浓度0.2%的聚丙烯酰胺(PAM)和0.2%的黄原胶(XG)水溶液,表观气速0.1~100 m/s,表观液速0.01~6 m/s.观察到的典型流型有:弹状流、搅拌流、弹环状流和环状流,其中弹环状流未见于水-空气上升流动.在PAM-氮气实验中发现了一种新流型-泡状-弹状流.通过流型图对比,发现非牛顿流体的搅拌流区域较牛顿流体窄,弹状-搅拌流转变线也明显右移,非牛顿流体的黏性对流型转变的影响较大. 相似文献
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通过高速CCD可视化实验,在气体表观速度0.01~26.5m/s,液体表观速度0.01~1.2m/s范围内,对内径为1.931mm垂直向上圆管内液氮流动沸腾的流型特性进行了研究.所观测的主要流型为:泡状流,弹状流,搅拌流和环状流.并绘制了流型图,发现环状流占了大部分的区域,干度大于0.15的区域基本上都是环状流.分析了流量对流型转变的影响,流量越大,相应的流型转变干度越低,而且流量大于820kg/m2s时,没有发现泡状流.通过与相同水力直径的空气-水的流型图比较,发现本文中的弹状流区域要小很多.通用的流型转变模型预测结果与实验结果相差较大. 相似文献
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本文在8根水力直径均为186ìm的硅微平行通道的入口端加工了限制装置,抑制了通道间的相互作用,得到了稳定的气液两相流动,并借助于可视化技术,揭示了通道内部不同区段典型的流型特点.分析了经过通道的压降和局部换热系数的变化规律,并用经验关系式和试验结果进行了比较. 相似文献
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《工程热物理学报》2017,(10)
两相流系统中,流型会直接影响系统的摩擦阻力和传热等特性,而流型的转变过程会受到通道的形状和尺寸的影响。常温常压下,以空气和水为介质,对八种不同尺寸矩形通道中竖直向上泡状流向弹状流转变过程进行了研究。结果表明,矩形通道间隙大于2 mm时,随着通道水力直径的增大,泡状流向弹状流转换边界左移。在窄通道范围内,可采用Ishii(1977)提出的基于漂移流模型的判定准则计算流型转换边界;在常规矩形通道中,转换准则中的临界空泡份额与气泡初始尺寸有关,选用赵建福提出的方法计算临界空泡份额,转换边界预测结果与实验结果符合程度较好;在利用漂移流方法计算截面含气率时,对于窄矩形通道,分布系数可以用Ishii(1977)提出的方法计算,而对于常规矩形通道,分布系数为1.2。 相似文献
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水平管内油气水三相流分流型阻力特性实验研究 总被引:4,自引:0,他引:4
对水平管内油气水三相流的摩擦阻力压降特性进行了实验研究,水平管实验段由有机玻璃管制成,内径为40mm,所用的实验工质为:46#机械油,自来水和空气。油、气、水三相的折算速度范围分别为:0.05-0.51m/s、0.05-1.51m/s、0.02-50.6 m/s。按照气液界面总体特征将水平管内油气水三相流的流型分为泡状流、间歇流(段塞流和弹状流)、分层流及环状流。对各种典型流型下的摩擦阻力压降应用改进的Chisholm关系式及油水两相压降关系式进行分析,对Chisholm关系式中的参数C进行了重新定义。发现改进的Chisholm关系式能够较好地对管内油气水三相摩阻压降进行预测,因此改进Chisholm关系式可以作为摩擦压降计算的通用关系式。 相似文献
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为了充分反映吸引子结构随时间延迟的变化规律,在现有吸引子形态描述方法基础上定义了吸引子单元面积,通过仿真发现,吸引子单元面积随时间延迟变化曲线第一个波峰的高度和时间延迟主要由信号中大幅值波动的数量、频率决定,利用此规律对实验采集到的气液两相流电导波动信号进行分析,发现在固定液相流量条件下,改变气相流量会导致泡状流、段塞流和混状流中大幅值波动幅度的改变,但相同流型信号中大幅值波动的频率比较接近.将吸引子单元面积随时间延迟变化曲线第一个波峰的时间延迟和落差比作为特征量,可以实现泡状流、段塞流、混状流的流型分类. 相似文献
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The gas-liquid upward flow was studied in a rectangular minichannel of 1.75×3.8 mm and length of 0.7 m. The experiments were
carried out within the range of the gas superficial velocity from 0.1 to 10 m/s and the liquid superficial velocity from 0.07
to 0.7 m/s for the co-current H2O/CO2 flow under the conditions of saturation. The method for the two-beam laser scanning of structure and determination of statistic
characteristics of the two-phase flow was worked through. The slug-bubble, slug, transitional, churn, and annular flows were
distinguished. The statistics characteristics of liquid and gas phases motion in a minichannel were obtained for the first
time including the velocities of phase motion. 相似文献
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Convective heat transfer coefficients were measured experimentally for a tube immersed vertically in a circulating fluidized bed. Circulating fluidized beds operate in the dilute transport regime of two-phase (solid/gas) flow. The dominant mechanism for heat transfer to surfaces is particle-induced convection. In this study, experiments were carried out in a circulating fluidized bed of15 cm diameter and 11 m height. An instrumented tube of 9.5 mm diameter and 1.3 m length was placed vertically at the centeriine of the fluidized bed to measure convective heat transfer coefficients at several different elevations in the bed. Three types of particles, with mean diameters ranging from 68 to 2S1 urn, were used in the experiments at superficial gas velocities in the range of 1.3 to 8.2 m/s. Results showed that the convective heat transfer coefficients with solid/gas two-phase circulation were two to three times greater than those for single-phase gas convection at the same velocity. For a given gas velocity, the coefficients increased with increasing solid mass flux, but decreased with elevation. It was demonstrated that the heat transfer coefficients for the immersed tube and for the bed wall could be correlated with different functional dependence on the two-phase suspension density. 相似文献
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In this article, an experimental investigation is performed to measure the boiling heat transfer coefficient of water flow in a microchannel with a hydraulic diameter of 500 μm. Experimental tests are conducted with heat fluxes ranging from 100 to 400 kW/m2, vapor quality from 0 to 0.2, and mass fluxes of 200, 400, and 600 kg/m2s. Also, this study has modified the liquid Froude number to present a flow pattern transition toward an annular flow. Experimental results show that the flow boiling heat transfer coefficient is not dependent on mass flux and vapor quality but on heat flux to a certain degree. The measured heat transfer coefficient is compared with a few available correlations proposed for macroscales, and it is found that previous correlations have overestimated the flow boiling heat transfer coefficient for the test conditions considered in this work. This article proposes a new correlation model regarding the boiling heat transfer coefficient in mini- and microchannels using boiling number, Reynolds number, and modified Froude number. 相似文献
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