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Highly-efficient nanofluid-based direct absorption solar collector enhanced by reverse-irradiation for medium temperature applications

机译:基于高效的纳米流体的直接吸收太阳能收集器通过反向照射进行中温应用增强

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摘要

The direct absorption solar collector (DASC) with nanofluids is a promising solar energy collection technology. However, various studies have focused on low-temperature applications of nanofluids, and the medium-temperature collection system that involves high-grade energy is always neglected. This study examines the photo-thermal properties of titanium nitride nanofluids with thermal transfer oil as the base fluids under different solar irradiation intensities. The irradiation surface layer reaches-160 degrees C under 5 suns, and a high-temperature gradient develops within the working fluid, producing a low collector photo-thermal efficiency that is below expectation. To overcome these disadvantages, the heat transfer change from thermal conduction to free convection within the fluid is achieved via reverse irradiation direct absorption solar collector (RI-DASC). The performance parameters of this RI-DASC, including the optical properties of nanofluids, steady-state equilibrium temperature, photo-thermal conversion efficiency, and energy utilization distribution are investigated in detail. The experimental results demonstrate that the temperature difference between the irradiation and non-irradiation surfaces for-0.005 wt% under 5000 kW/m(2) are -50 degrees C and -10 degrees C in DASC and RI-DASC, respectively. The collector photothermal conversion efficiency of DASC (-40%) is improved to -50% for RI-DASC, and the steady-state temperature is enhanced to 165 degrees C in RI-DASC. (c) 2020 Elsevier Ltd. All rights reserved. Superscript/Subscript Available
机译:纳米流体的直接吸收太阳能收集器(DASC)是一个有前途的太阳能收集技术。然而,各种研究专注于纳米流体的低温应用,并且仍然忽略了涉及高档能量的中温收集系统。该研究检查了在不同太阳照射强度下作为基础流体的热转印油的氮化钛纳米流体的光热特性。照射表面层达到50℃下的50℃,高温梯度在工作流体内发育,产生低于预期的低集电极光热效率。为了克服这些缺点,通过反向照射直接吸收太阳能收集器(Ri-Dasc)来实现从流体内的热传导到自由对流的热传递变化。该RI-DAC的性能参数,包括纳米流体,稳态平衡温度,光热转换效率和能量利用分布的光学性能。实验结果表明,在5000kW / m(2)下的辐射和非照射表面之间的温差分别为-50千瓦/米(2)是Dasc和Ri-dasc的50℃和-10℃。 DASC(-40%)的收集器光热转化效率得到改善至-50%,对于RI-DASC,稳态温度增强至RI-DACS的165摄氏度。 (c)2020 elestvier有限公司保留所有权利。上标/下标可用

著录项

  • 来源
    《Renewable energy》 |2020年第10期|652-662|共11页
  • 作者单位

    Shanghai Polytech Univ Coll Engn Shanghai Key Lab Engn Mat Applicat & Evaluat Shanghai 201209 Peoples R China;

    Qingdao Univ Sci & Technol Sch Mech & Elect Engn Qingdao 266061 Peoples R China;

    Shanghai Polytech Univ Coll Engn Shanghai Key Lab Engn Mat Applicat & Evaluat Shanghai 201209 Peoples R China;

    Shanghai Maritime Univ Merchant Marine Coll Shanghai 201306 Peoples R China;

    Shanghai Polytech Univ Coll Engn Shanghai Key Lab Engn Mat Applicat & Evaluat Shanghai 201209 Peoples R China;

    Shanghai Polytech Univ Coll Engn Shanghai Key Lab Engn Mat Applicat & Evaluat Shanghai 201209 Peoples R China|Shanghai Polytech Univ Res Ctr Resource Recycling Sci & Engn Shanghai 201209 Peoples R China;

    Shanghai Polytech Univ Coll Engn Shanghai Key Lab Engn Mat Applicat & Evaluat Shanghai 201209 Peoples R China;

    Shanghai Polytech Univ Coll Engn Shanghai Key Lab Engn Mat Applicat & Evaluat Shanghai 201209 Peoples R China;

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

    Direct absorption solar collectors; Nanofluids; Solar energy; Photo-thermal conversion; Reverse irradiation;

    机译:直接吸收太阳能收集器;纳米流体;太阳能;光热转换;反向辐照;

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