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Review of low-GWP refrigerant pool boiling heat transfer on enhanced surfaces

机译:低全球升温潜能值的制冷剂池沸腾强化表面上的传热

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Global warming mitigation efforts have stimulated investigations of a new generation of low-GWP refrigerants. Because some of the proposed low-GWP refrigerants have unfavorable characteristics (e.g., flammability and toxicity), a small refrigerant charge is desirable. Compact heat exchangers with enhanced surfaces facilitate small refrigerant charge by having a large heat exchanger surface area to heat exchanger volume ratio. This paper reviews the current state-of-the-art for pool boiling heat transfer of low-GWP refrigerants on enhanced surfaces. An overview for the enhanced surface manufacturing technique is given along with detailed reviews of the heat transfer measurements and predictions for many of the low-GWP refrigerants, including the hydrofluoroolefin (HFO) class, the hydrocarbon (HC) class, carbon dioxide (CO2), and ammonia (NH3). The overview of the predictive methods includes mechanistic models and correlations for pool boiling on enhanced surfaces. Based on the surveyed literature, existing shortfalls are identified and suggestions for future studies are proposed. Published by Elsevier Ltd.
机译:减轻全球变暖的努力刺激了对新一代全球升温潜能值低的制冷剂的研究。由于一些建议的低全球升温潜能值的制冷剂具有不利的特性(例如,易燃性和毒性),因此需要少量制冷剂。具有增强的表面的紧凑型热交换器通过具有大的热交换器表面积与热交换器的体积比而促进了少量的制冷剂充注。本文回顾了目前在增强表面上低全球升温潜能值制冷剂池沸腾传热的最新技术。概述了增强的表面制造技术,并对许多低GWP制冷剂的传热测量和预测进行了详细的回顾,包括氢氟烯烃(HFO)类,碳氢化合物(HC)类,二氧化碳(CO2)和氨(NH3)。预测方法的概述包括用于增强表面上池沸腾的力学模型和相关性。根据调查的文献,找出存在的不足,并提出进一步研究的建议。由Elsevier Ltd.发布

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