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[能源与动力工程] BaOH28H2O复合相变材料蓄热供热可行性研究

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admin 发表于 2025-1-18 20:57 | 查看全部 阅读模式

BaOH28H2O复合相变材料蓄热供热可行性研究
摘要:摘要针对传统太阳能供热系统储热水箱体积大、储热密度低、温度不恒定、热量损失大等缺点,开展以Ba(OH)28H2O为基体的相变蓄热/供热实验研究。在油封环境下,对Ba(OH)28H2O放热过程出现的过冷现象,选取了同晶型成核剂Sr(OH)28H2O、非同晶型成核剂Na2B4O710H2O;对Ba(OH)28H2O的相分层现象,选取增稠剂羧甲基纤维素、增稠剂明胶。实验表明,油封环境下向Ba(OH)28H2O中添加质量分数为3%的Na2B4O710H2O和质量分数为1%的羧甲基纤维素能够较好改善Ba(OH)28H2O的过冷现象和相分层。以该研究为基础,制备97 kg Ba(OH)28H2O复合相变材料,搭建相变蓄热/供热实验平台。蓄热实验中,温度曲线呈现明确的三阶段性,蓄热总时长1 185 min,相变过程首先从底部开始,并逐步向上蔓延。70 ℃以下蓄热时长为185 min,温升率高,蓄热量少。70 ~ 80 ℃蓄热时长为965 min,温升率低,蓄热量大;80 ~ 84 ℃蓄热时长为35 min,温升率高,蓄热量少。供热实验无过冷现象,供热总时长602 min,A、B、C三测点温度平缓下降。散热器供水温度范围为60 ~ 74 ℃,回水温度范围为53 ~ 65 ℃,供回水温度符合实际工程要求。供热实验表明Ba(OH)28H2O复合相变材料在应用于蓄热供热时具有较好应用价值。

Abstract::In view of the shortcomings of traditional solar heating systems, such as large volume of hot water storage tanks, low heat storage density, nonconstant temperature and large heat loss, experimental research on phase change heat storage/heating with Ba(OH)28H2O as the substrate was carried out. Under the oil sealing environment, the homocrystalline nucleating agent Sr(OH)28H2O and the nonhomocrystalline nucleating agent Na2B4O710H2O were selected for the overcooling phenomenon in the exothermic process of Ba(OH)28H2O, while the thickening agent gelatin and the thickening agent carboxymethylcellulose were selected for the phase delamination phenomenon of Ba(OH)28H2O. The experiments showed that the addition of Na2B4O710H2O with a mass fraction of 3% and carboxymethyl cellulose with a mass fraction of 1% to Ba(OH)28H2O could better improve the supercooling phenomenon and phase delamination of Ba(OH)28H2O. Based on this study, 97 kg of Ba(OH)28H2O composite phase change material was prepared to build the experimental platform for phase change heat storage/supply. In the heat storage experiment, the temperature and time curves showed a clear three-phase nature, with the length of the heat storage being 1 185 min, and the phase change process starts from the bottom and gradually spreads upward. The length of the heat storage below 70 oC was 185 min, with a high rate of temperature rise and a small amount of heat storage. The length of the heat storage between 70 oC and 80 oC was 965 min, with a low rate of temperature rise and a large amount of heat storage. The length of the heat storage between 80 oC and 84 oC was 35 min, with a high rate of temperature rise and a less amount of heat storage. There was no overcooling phenomenon during the heating experiments, the total length of heating was 602 min, the temperature of measuring points A, B and C dropped gently. The radiator's supply water temperature ranged from 60 oC to 74 oC, and the return water temperature ranged from 53 oC to 65 oC, supply and return water temperature in line with the actual project requirements. The heating experiment showed that Ba(OH)28H2O composite phase change material had good application value when applied to heat storage and heating.

中文标题:Ba(OH)28H2O复合相变材料蓄热供热可行性研究
英文标题:Feasibility Study of Heat Storage and Heating with Ba(OH)28H2O Composite Phase Change Material
发表时间:2023-08-21

作者:
张一澍, 张文庆
作者简介:
张一澍(1988-),男,博士,讲师,硕士生导师,主要从事太阳能发电、智慧能源、新能源动力系统等研究。张文庆(1997-),男,硕士研究生,主要从事相变储热研究。

关键词:Ba(OH)2&#x02219,8H2O,过冷现象,复合相变材料,蓄热实验,供热实验,
Key words:Ba(OH)28H2O,supercooling phenomena,composite phase change materials,heat storage experiments,heating experiments,
2025-1-18 20:57 上传
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