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Today, latent heat storage technology has advanced to allow reuse of waste heat in the middle-temperature range. This paper describes an approach to develop a latent heat storage system using middle-temperature waste heat (~100oC - 200oC) from factories. Direct contact melting and solidification behavior between a heat-transfer fluid (oil) and a latent heat storage material mixture were observed. The mixture consisted of mannitol and erythritol (Cm = 70 mass %, Ce = 30 mass %) as a phase-change material (PCM). The weight of the PCM was 3.0 kg and the flow rate of the oil, foil, was 1.0, 1.5, or 2.0 kg/min. To decrease the solidified height of the PCM mixture during the solidification process, a perforated partition plate was installed in the PCM region in the heat storage vessel. PCM coated oil droplets were broken by the perforated partition plate, preventing the solidified height of the PCM from increasing. The solidification and melting processes were repeated using metal fiber. It was found that installing the metal fiber was more effective than installing the perforated partition plate to prevent the flow out problem of the PCM.
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篇名 Melting and Solidification Heat Transfer Characteristics of a Phase-Change Material in a Latent Heat Storage Vessel: Effects of a Perforated Partition Plate and Metal Fiber
来源期刊 电力能源(英文) 学科 医学
关键词 Heat Storage VESSEL SOLIDIFIED Height PHASE-CHANGE Material (PCM) Mixture Perforated PARTITION PLATE Metal Fiber
年,卷(期) 2017,(8) 所属期刊栏目
研究方向 页码范围 13-29
页数 17页 分类号 R73
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节点文献
Heat
Storage
VESSEL
SOLIDIFIED
Height
PHASE-CHANGE
Material
(PCM)
Mixture
Perforated
PARTITION
PLATE
Metal
Fiber
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期刊影响力
电力能源(英文)
月刊
2327-588X
武汉市江夏区汤逊湖北路38号光谷总部空间
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568
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0
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