水合盐相变储能材料在太阳能融冰雪实验系统中的应用研究
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TB34

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国家自然科学基金项目(51106177);军队重点科研项目(BY114C006);重庆市基础与前沿研究计划项目(CSTC2015cyjBX0059)。


Study on application of salt hydrates phase change materials in solar melting ice and snow experimental system
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    摘要:

    自制了结合相变储能材料应用的太阳能融冰雪实验系统,研究了相变储能材料在"快速启动"、"能量补充"、"能量波动"及"能量吸收"等情境下对实验系统效率及产水量的影响;在对实验系统置入相变储能材料与流程优化基础上,对比研究了系统改进前后的产水量差异与能耗变化。研究表明:水合盐相变储能材料能有效控温3~5℃,具有较好的储能、释能性能与抗波动能力,满足各情境下的控温需求。通过置入相变储能材料并采用优化流程设计,使实验系统在全仿真模拟实验中产水量提升11.4%,电能消耗减少9.4%,可实现不同条件下能量的高效利用,降低了人力成本。

    Abstract:

    A solar melting ice and snow experimental system combined with phase change materials was fabricated and the effect of phase change materials on the system efficiency and the water production was studied under the conditions of "quick start", "energy supplement", "fluctuation" and "energy absorption". Based on the addition of the phase change material and process optimization in the experimental system, the differences in water production and energy consumption before and after the system improvement were compared and studied. The results show that the salt hydrates phase change materials can effectively control the temperature in the range of 3℃ to 5℃, and have good energy storage, release performance and anti-fluctuation ability, which can meet the temperature control requirements under various situations. By adding phase change materials and adopting optimized flow design, the experimental system can increase the water production by 11.4% and decrease the power consumption by 9.4% in the full simulation experiment, which can realize the efficient use of energy under different conditions and reduce the labor cost.

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郑涛杰,陈志莉.水合盐相变储能材料在太阳能融冰雪实验系统中的应用研究[J].重庆大学学报,2018,41(10):90-102.

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  • 收稿日期:2018-06-14
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  • 在线发布日期: 2018-10-23
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