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Saturated R134a flow boiling inside a 4.3mm inner diameter microfin tube

机译:饱和R134A流沸腾内部4.3mm内径微素管

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摘要

The refrigerant charge minimization in refrigerating and air-conditioning systems represents a challenging issue due to the new environmental national and international regulations. The use of smaller smooth tubes, such as with the outer diameter around 5mm, is becoming more and more common in many applications. More recently, the microfin tubes have also started to be reduced in size to cope with the continuously increasing demand of new, efficient, and compact heat exchangers for air-conditioning and refrigeration equipment. This work investigates the performance of R134a during saturated flow boiling inside a microfin tube with internal diameter at the fin tip of 4.3mm. Boiling heat transfer coefficients, frictional pressure drops, and critical vapor qualities were measured at 30 degrees C of saturation temperature, by varying the refrigerant mass velocity between 100 and 800 kg m(-2) s(-1) and the vapor quality from 0.1 to 0.95 at four different heat fluxes: 15, 30, 60, and 90 kW m(-2). Moreover, the reliability of several models for flow boiling heat transfer and pressure drop estimations was assessed by comparing the experimental results with the calculations.
机译:由于新的环境国家和国际法规,制冷剂和空调系统中的制冷剂充电最小化代表了一个具有挑战性的问题。在许多应用中,使用较小的光滑管,例如在5mm左右的外径约为5mm。最近,微素管也开始减少尺寸以应对用于空调和制冷设备的新型,高效和紧凑的热交换器的不断增加的需求。该工作研究了R134a在饱和流沸点内的饱和流动管内的性能,在微素管内,内径为4.3mm。通过改变100至800kg M(-2)(-1)之间的制冷剂质量速度和0.1的蒸汽质量,在30摄氏度下测量沸腾的传热系数,摩擦压降和临界蒸汽品质。在四种不同的热通量下至0.95:15,30,60和90 kW m(-2)。此外,通过将实验结果与计算进行比较来评估用于流沸热传热和压降估计的多种模型的可靠性。

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