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Measurement and prediction of heat transfer coefficient on ammonia flow boiling in a microfin plate evaporator

机译:微翅板蒸发器中氨流沸腾传热系数的测量与预测

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摘要

Thermal characteristics of ammonia flow boiling in a microfin plate evaporator are experimentally investigated. Titanium microfin heat transfer surface is manufactured to enhance boiling heat transfer. Longitudinally- and laterally-microfined surfaces are used and those performances are compared. Heat transfer coefficient of microfin plate evaporator is also compared with that of plain-surface plate evaporator. The effects of mass flux, heat flux, channel height, and saturation pressure on heat transfer coefficient are presented and discussed. The experiments are conducted for the range of mass flux (5 and 7.5 kg m~(-2) s~(-1)), heat flux (10, 15, and 20 kW m~(-2)), channel height (1, 2, and 5 mm), and saturation pressure (0.7 and 0.9 MPa). Heat transfer coefficient is compared with that predicted by available empirical correlations proposed by other researchers. Modified correlations using Lockhart-Martinelli parameter to predict heat transfer coefficient are developed and they cover more than 87% of the experimental data.
机译:实验研究了微翅片板蒸发器中氨流沸腾的热特性。钛微翅片传热表面经制造以增强沸腾传热。使用纵向和横向超细化表面,并比较这些性能。还将微翅片板式蒸发器的传热系数与平面板式蒸发器的传热系数进行了比较。提出并讨论了质量通量,热通量,通道高度和饱和压力对传热系数的影响。针对质量通量(5和7.5 kg m〜(-2)s〜(-1)),热通量(10、15和20 kW m〜(-2)),通道高度( 1、2和5毫米)以及饱和压力(0.7和0.9 MPa)。将传热系数与其他研究人员提出的可用经验相关性预测的传热系数进行比较。使用Lockhart-Martinelli参数预测传热系数的修正相关性得到了开发,它们涵盖了超过87%的实验数据。

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