首页> 外文会议>ASME international heat transfer conference;IHTC14 >EXPERIMENTAL STUDY ON CHF CHARACTERISTICS OF R134a FLOW BOILING IN HORIZONTAL HELICALLY-COILED TUBES
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EXPERIMENTAL STUDY ON CHF CHARACTERISTICS OF R134a FLOW BOILING IN HORIZONTAL HELICALLY-COILED TUBES

机译:水平螺旋管内R134a流动沸腾CHF特性的实验研究

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An experimental study of critical heat flux (CHF) was performed to investigate the CHF characteristics of R134a flow boiling in horizontal helically-coiled tubes. The test sections made of stainless steel were directly heated by high-power DC power sources to maintain constant heat-fluxes. The experimental parameters are the outlet pressures of 0.30-1.10 MPa, mass fluxes of 60-480 kg/m~(2)s, inlet qualities of-0.32-0.36 and heat fluxes of 6-90 kW/m2. Thirteen helically-coiled tubes were tested with the outer diameters of 6-14 mm, inner diameters of 3.8-11 mm, coil diameters of 135-370 mm, helical pitches of 40-105 mm and valid heated lengths of 0.85-7.54 m. The detection for CHF occurrence was based on the event-driven method of Agilent BenchLink Data Logger Pro with a total of thirty-two 0.2mm T-type thermocouples set in every coil to measure the wall temperatures accurately. It was found that the wall temperatures jumped abruptly once the CHF occurred. The magnitude of CHF decreases with increasing valid heated length, coil diameter and inner diameter to some extent, while the DNB (departure from nucleate boiling) CHF seems independent when length-to-diameter L/di>200. Coil-to-diameter ratio is considered more important for CHF than length-to-diameter ratio in helically coiled tubes. The helical pitch has little effect on CHF. While CHF value increases much with increasing mass flux and decreases little with increasing absolute pressure, it decreases nearly linearly with increasing inlet qualities and critical qualities in different levels. But the CHF values at x_(cr)<0.5 vary acutely than those at higher critical qualities. New experimental correlations for the DNB and the dry-out CHF of R134a flow boiling in horizontal helically-coiled tubes were developed.
机译:进行了临界热通量(CHF)的实验研究,以研究水平螺旋盘管中R134a流动沸腾的CHF特性。由不锈钢制成的测试部件通过大功率直流电源直接加热,以保持恒定的热通量。实验参数为出口压力0.30-1.10 MPa,质量通量60-480 kg / m〜(2)s,入口质量-0.32-0.36和热通量6-90 kW / m2。测试了13个螺旋盘管,其外径为6-14 mm,内径为3.8-11 mm,盘管直径为135-370 mm,螺旋节距为40-105 mm,有效加热长度为0.85-7.54 m。 CHF发生的检测基于Agilent BenchLink Data Logger Pro的事件驱动方法,每个线圈中总共设置了三十二个0.2mm T型热电偶,以精确地测量壁温。发现一旦发生CHF,壁温突然跳升。 CHF的大小会随着有效加热长度,线圈直径和内径的增加而有所降低,而当直径长L / di> 200时,DNB(脱离核沸腾)CHF似乎是独立的。对于CHF,认为盘管直径比比螺旋盘管的长度直径比更重要。螺旋螺距对CHF影响很小。 CHF值随质量通量的增加而增加很多,而随绝对压力的增加而几乎没有减少,但随着不同级别的入口质量和临界质量的增加,CHF值几乎呈线性下降。但是,x_(cr)<0.5时的CHF值与临界质量较高时的CHF值有很大差异。开发了新的实验相关性,用于DNB和水平螺旋盘管中R134a流动沸腾的干CHF。

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