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Numerical investigations of long-term thermal performance of a large water pit heat storage

机译:大型水坑热储存长期热性能的数值研究

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摘要

Water pit heat storage is an effective long-term heat storage. Experimental and theoretical investigations of a 60,000 m3 water pit heat storage in Dronninglund, Denmark was carried out with an aim to study its long-term thermal performance. Experimentally, detailed measurements were analyzed to monitor thermal behavior of the store, including flow rates, temperatures of the inlet and outlet flow, thermal stratification in the store and temperatures of the surrounding soil at four different depths. Theoretically, a simulation model of the water pit heat storage was developed based on the Type 343 model (ICEPIT) in TRNSYS. The calculated temperatures were compared to the measurements. The developed model was used to investigate the influence of soil properties and inlet arrangement on the thermal performance of the store. The result show that the simulation model predicts well the thermal behavior of the store. Over the whole year, the calculated average temperature of the store differed within +/- 4.7 K from the measured values. The measurements show that the annual charged and discharged heat are 12,787 MWh and 11,957 MWh respectively. The deviation of the charged and discharged energy between the simulation and the experiment did not exceed +/- 4%. The annual storage efficiency reached 90% in the second year of operation. The calculated ground temperatures were consistent with the measured ones at different depths. Measured heat loss of the store is 1392 MWh. As elucidated by the model, the heat loss from the cover contributed to 60% of the annual heat loss, while the heat loss from the sidewall and the bottom contributed 38% and 2% respectively. The influence of soil types on thermal performance of the store is significant. For a PTES surrounded by dry soil, the storage efficiency can reach 90%, while for a PTES surrounded by wet sandy gravel, the storage efficiency decreases by 7%. Change of the height of the middle inlet/outlet diffuser could slightly improve the storage efficiency by 1%. The restrains of the model were analyzed and the focus areas of further investigations were pointed out. The findings of the paper give good reference for researchers, designers and consultants in planning of a solar heating plant with a large water pit heat storage.
机译:水坑蓄热是一种有效的长期蓄热。丹麦Dronninglund的60,000 M3水坑热储存的实验和理论研究是进行的,旨在研究其长期热性能。通过实验,分析了详细的测量以监测商店的热行为,包括流速,入口和出口流量的温度,储存的热分层和四种不同深度的周围土壤的温度。从理论上讲,基于Trnsys中的343型模型(ICEPIT)开发了水坑蓄热的仿真模型。将计算的温度与测量进行比较。开发的模型用于研究土壤性能和入口布置对商店热性能的影响。结果表明,仿真模型预测了商店的热行为。在全年中,商店的计算平均气温在测量值中不同于+/- 4.7 k。测量结果表明,年收费和排放的热量分别为12,787兆瓦,分别为11,957兆瓦。模拟和实验之间的带电和放电能量的偏差不超过+/- 4%。业务第二年的年存储效率达到90%。计算的地温与不同深度的测量的地温一致。测量的商店的热量损失是1392兆瓦。如模型所阐明的,来自盖子的热量损失导致年度热量损失的60%,而侧壁和底部的热量损失分别为38%和2%。土壤类型对商店热性能的影响是显着的。对于由干燥的土壤包围的PTE,储存效率可以达到90%,而对于被湿砂质砾石包围的PTE,储存效率降低了7%。中间入口/出口扩散器的高度的变化可以将储存效率略微提高1%。分析了模型的约束,指出了进一步调查的焦点领域。该论文的调查结果为研究人员,设计师和顾问提供了很好的参考,用于规划具有大型水坑蓄热的太阳能加热厂。

著录项

  • 来源
    《Solar Energy》 |2021年第8期|808-822|共15页
  • 作者单位

    Tech Univ Denmark Dept Civil Engn Brovej 118 DK-2800 Lyngby Denmark;

    Tech Univ Denmark Dept Civil Engn Brovej 118 DK-2800 Lyngby Denmark;

    Xian Univ Architecture & Technol State Key Lab Green Bldg Western China Xian 710055 Shaanxi Peoples R China;

    Kassel Univ Inst Thermal Engn D-34125 Kassel Germany;

    Tech Univ Denmark Dept Civil Engn Brovej 118 DK-2800 Lyngby Denmark;

    Tech Univ Denmark Dept Civil Engn Brovej 118 DK-2800 Lyngby Denmark;

    Tech Univ Denmark Dept Civil Engn Brovej 118 DK-2800 Lyngby Denmark;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Water pit heat storage; Long term thermal performance; Measurement; TRNSYS models; Validation; Soil properties;

    机译:水坑蓄热;长期热性能;测量;TRNSYS模型;验证;土壤性质;

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