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Experimental study of a fin-and-tube heat exchanger working as evaporator in subatmospheric conditions

机译:翅片管热交换器在蒸发器中蒸发器在子系统条件下的实验研究

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摘要

Evaporation of water at sub-atmospheric pressures, close to its triple point, is gaining attention for the wide range of engineering applications. However, the mechanism and boiling regimes are still not completely clear and a correlation between operating conditions, geometric features of the evaporator and achievable heat transfer is still missing. In this context, the present paper aims at the study of a fin-and-tube heat exchanger working as an evaporator in the pressure range of 1-7 kPa. The experimental study analyses the effect of the main operating parameters (temperature of the heat transfer fluid, superheat, inclination of the heat exchanger) and attempts to find correlations suitable for the engineering design of evaporator under the investigated conditions. The results allowed the identification of the main factors influencing the heat transfer, i.e. the temperature of the heat transfer fluid and, secondarily, the logarithmic mean temperature difference, as well as the derivation of expressions that correlate the evaporation power and the heat transfer coefficients with operating conditions.
机译:在亚大气压下蒸发水,接近其三重点,是对各种工程应用的关注。然而,机制和沸腾制度仍然没有完全清晰,操作条件之间的相关性,蒸发器的几何特征和可实现的热传递仍然缺失。在这种情况下,本文旨在研究作为蒸发器的蒸发器在1-7kPa的压力范围内的蒸发器。实验研究分析了主要操作参数(传热流体的温度,热交换器的温度,热交换器的温度)的效果,并试图在研究条件下寻找适用于蒸发器工程设计的相关性。结果允许识别影响传热的主要因素,即传热流体的温度,并且,对数,对数平均温差,以及表达的推导,与蒸发功率和传热系数相关的表达式运行条件。

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