Comprehensive assessment and energetic-exergetic performance optimization of a new solar thermal electricity system based on Scheffler-type receivers combined with screw-type volumetric machines

Q1 Chemical Engineering International Journal of Thermofluids Pub Date : 2024-09-22 DOI:10.1016/j.ijft.2024.100881
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Abstract

This study explores the potential of a novel solar-powered cascade Rankine cycle system based on Scheffler-type receivers combined with screw expanders. Specifically, in this solar power system, steam is generated in the Scheffler-type receiver, which proves to be well performing compared with other technological solutions to exploit solar energy, due to satisfactory efficiency of the focal receiver that is able to curtail heat losses, even at high evaporation temperatures. Subsequently, steam expands in the screw machines which, unlike conventional steam turbines, are specially fitting in energy conversion with vapor-liquid mixes in the field from tens to hundreds of kW. In the present study, comprehensive assessment of this renewable energy power system is thoroughly conducted in a large range of operating states. For this purpose, specific numerical models and basic criteria fixed for the screw expanders and Scheffler receivers part-load behavior are combined with thermodynamic formulations established for energetic-exergetic performance optimization of the entire solar thermal electricity plant. Hence, parametric optimization of the major thermodynamic factors involved at part-load operating situations is conducted to enhance the energetic and exergetic efficiencies of the designed solar thermal power system.
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基于谢弗勒式接收器和螺旋式容积机的新型太阳能热发电系统的综合评估和能效性能优化
本研究探讨了一种新型太阳能级联朗肯循环系统的潜力,该系统基于与螺旋膨胀机相结合的谢弗勒型接收器。具体来说,在该太阳能发电系统中,蒸汽在谢弗勒式接收器中产生,与其他利用太阳能的技术方案相比,该接收器性能良好,因为即使在高蒸发温度下,焦点接收器也能抑制热损失,效率令人满意。随后,蒸汽在螺杆机中膨胀,与传统的蒸汽轮机不同,螺杆机特别适用于从几十千瓦到几百千瓦的汽液混合能源转换。本研究对这种可再生能源发电系统在多种运行状态下进行了全面评估。为此,为螺杆膨胀机和谢弗勒接收器部分负荷行为确定了特定的数值模型和基本标准,并结合热力学公式对整个太阳能热发电厂的能量-能效性能进行了优化。因此,对部分负荷运行情况下涉及的主要热力学因素进行了参数优化,以提高所设计的太阳能热发电系统的能效和效费比。
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来源期刊
International Journal of Thermofluids
International Journal of Thermofluids Engineering-Mechanical Engineering
CiteScore
10.10
自引率
0.00%
发文量
111
审稿时长
66 days
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