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Experimental study of falling film evaporation in tube bundles of doubly-enhanced, horizontal tubes

机译:双增强型水平管束中叶片蒸发的实验研究

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摘要

Falling film evaporation (FFE) involves complicated physical phenomena and mechanisms such as wavy liquid film, bubbly flow, capillary-driven evaporation and nucleate boiling. FFE heat transfer characteristics in four doubly-enhanced tube bundles were investigated experimentally with R134a. For single tube, heat transfer coefficient (HTC) first increases then decreases with increase in heat flux, the turning points occurs around 20 kW/m(2). Tubes with different positions in tube bundle own similar HTCs when tested individually. In tube bundle, with decreasing film Reynolds number (Ref), HTC firstly keeps a quasi -plateau stage (increasing or keeping constant for upper tubes, decreasing for lower tubes), then after a certain threshold film Reynolds number, HTC decreases sharply with Ref.. At lower heat fluxes (10 kW/m(2) and 20 kW/m(2)), tubes with different positions exhibit similar HTCs and threshold Rec. At higher heat fluxes (30 kW/m(2) and 40 kW/m(2)), bottom tubes own much smaller HTCs and larger threshold Ref than upper ones due to partial dryout occurrence. The tube bundle with top plate exhibits higher HTCs and lower threshold Rer than those of the open-ended tube bundle indicating that counter-current vapor flow can deteriorate the heat transfer of FFE. Effect of heat flux on the bundle -averaged HTC increases with tube pitch.
机译:脱落膜蒸发(FFE)涉及复杂的物理现象和机制,如波浪液体膜,起泡流动,毛细管驱动的蒸发和核心沸腾。用R134A实验研究了四种双增强管束中的FFE传热特性。对于单管,传热系数(HTC)首先增加随着热通量的增加而降低,转折点发生约20kW / m(2)。管束中具有不同位置的管在单独测试时拥有类似的HTC。在管束中,随着薄膜雷诺数(REF),HTC首先保持了准-PLateau阶段(增加或保持上部管的常数,下管的减小),然后在某个阈值膜雷诺数之后,HTC随着REF急剧下降在较低的热量通量(10kW / m(2)和20kW / m(2))处,具有不同位置的管表现出类似的HTC和阈值REC。在较高的热通量(30kW / m(2)和40kW / m(2))下,由于部分干沟发生,底管拥有更小的HTC和较大的阈值REF。具有顶板的管束具有比指示逆流蒸汽流量劣化FFE的热传递的开口端管束的HTCS和较低的阈值RER。热量通量对束的影响 - 用管间距增加。

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