Coupling effect of evaporation and condensation processes of organic Rankine cycle for geothermal power generation improvement蒸发与冷凝耦合效应对有机朗肯循环地热发电性能的提高

被引:0
作者
Hua Yang
Nan Meng
Tai-lu Li
机构
[1] Hebei University of Technology,School of Energy and Environmental Engineering
来源
Journal of Central South University | 2019年 / 26卷
关键词
Organic Rankine cycle; geothermal power generation; coupling effect of evaporation and condensation; exergy analysis; 有机朗肯循环; 地热发电; 蒸发冷凝耦合效应; 火用分析;
D O I
暂无
中图分类号
学科分类号
摘要
Organic Rankine cycle (ORC) is widely used for the low grade geothermal power generation. However, a large amount of irreversible loss results in poor technical and economic performance due to its poor matching between the heat source/sink and the working medium in the condenser and the evaporator. The condensing temperature, cooling water temperature difference and pinch point temperature difference are often fixed according to engineering experience. In order to optimize the ORC system comprehensively, the coupling effect of evaporation and condensation process was proposed in this paper. Based on the laws of thermodynamics, the energy analysis, exergy analysis and entropy analysis were adopted to investigate the ORC performance including net output power, thermal efficiency, exergy efficiency, thermal conductivity, irreversible loss, etc., using geothermal water at a temperature of 120 °C as the heat source and isobutane as the working fluid. The results show that there exists a pair of optimal evaporating temperature and condensing temperatures to maximize the system performance. The net power output and the system comprehensive performance achieve their highest values at the same evaporating temperature, but the system comprehensive performance corresponds to a lower condensing temperature than the net power output.
引用
收藏
页码:3372 / 3387
页数:15
相关论文
共 122 条
  • [1] Li G(2016)Thermal energy storage system integration forms for a sustainable future [J] Renewable and Sustainable Energy Reviews 62 736-757
  • [2] Zheng X-F(2016)Analysis on optimal working fluid flow rate and unstable power generation for miniaturized ORC systems [J] Journal of Central South University 23 1224-1231
  • [3] Liu K-T(2019)Off-design performance analysis of basic ORC, ORC using zeotropic mixtures and composition-adjustable ORC under optimal control strategy [J] Energy 171 95-108
  • [4] Zhu J-L(2019)Thermodynamic performance analysis of a R245fa organic Rankine cycle (ORC) with different kinds of heat sources at evaporator [J] Case Studies in Thermal Engineering 13 100385-510
  • [5] Hu K-Y(2017)Techno-economic analysis of waste heat recovery with ORC from fluctuating industrial sources [J] Energy Procedia 129 503-175
  • [6] Wu X-J(2015)Techno-economic feasibility study of the integration of a commercial small-scale ORC in a real case study [J] Energy Conversion and Management 99 161-499
  • [7] Liu C-W(2016)Organic Rankine cycle performance evaluation and thermoeconomic assessment with various applications part I: Energy and exergy performance evaluation [J] Renewable and Sustainable Energy Reviews 53 477-505
  • [8] Gao T-Y(2016)Organic Rankine cycle performance evaluation and thermoeconomic assessment with various applications part II: economic assessment aspect [J] Renewable and Sustainable Energy Reviews 64 490-46
  • [9] Kong R(2012)Optimization design and exergy analysis of organic Rankine cycle in ocean thermal energy conversion [J] Applied Ocean Research 35 38-295
  • [10] Deethayat T(2017)Thermal and exergetic approach to wet type rotary kiln process and evaluation of waste heat powered ORC (Organic Rankine cycle) [J] Applied Thermal Engineering 112 281-141