Exergy, Economic, and Life-Cycle Assessment of ORC System for Waste Heat Recovery in a Natural Gas Internal Combustion Engine

被引:44
|
作者
Valencia Ochoa, Guillermo [1 ]
Cardenas Gutierrez, Javier [2 ]
Duarte Forero, Jorge [1 ]
机构
[1] Univ Atlantico, Programa Ingn Mecan, Carrera 30 8-49, Barranquilla 080007, Colombia
[2] Univ Francisco de Paula Santander, Fac Ingn, Ave Gran Colombia 12E-96, Cucuta 540003, Colombia
来源
RESOURCES-BASEL | 2020年 / 9卷 / 01期
关键词
organic Rankine cycle; organic working fluids; LCOE; thermodynamic analysis; economic analysis; LCA; ORGANIC RANKINE-CYCLE; THERMOECONOMIC ANALYSIS; POWER-GENERATION; MULTIOBJECTIVE OPTIMIZATION; WORKING FLUID; PERFORMANCE; ENERGY; MIXTURES; IMPACT; FUEL;
D O I
10.3390/resources9010002
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
In this article, an organic Rankine cycle (ORC) was integrated into a 2-MW natural gas engine to evaluate the possibility of generating electricity by recovering the engine's exhaust heat. The operational and design variables with the greatest influence on the energy, economic, and environmental performance of the system were analyzed. Likewise, the components with greater exergy destruction were identified through the variety of different operating parameters. From the parametric results, it was found that the evaporation pressure has the greatest influence on the destruction of exergy. The highest fraction of exergy was obtained for the Shell and tube heat exchanger (ITC1) with 38% of the total exergy destruction of the system. It was also determined that the high value of the heat transfer area increases its acquisition costs and the levelized cost of energy (LCOE) of the thermal system. Therefore, these systems must have a turbine technology with an efficiency not exceeding 90% because, from this value, the LCOE of the system surpasses the LCOE of a gas turbine. Lastly, a life cycle analysis (LCA) was developed on the system operating under the selected organic working fluids. It was found that the component with the greatest environmental impact was the turbine, which reached a maximum value of 3013.65 Pts when the material was aluminum. Acetone was used as the organic working fluid.
引用
收藏
页数:23
相关论文
共 50 条
  • [41] Unsteady State Modeling of an Organic Rankine Cycle for Waste Heat Recovery from Internal Combustion Engine
    Aboaltabooq, Mahdi Hatf Kadhum
    Prisecaru, Tudor
    Pop, Horatiu
    Apostol, Valentin
    Badescu, Viorel
    Prisecaru, Malina
    Pop, Elena
    Ciobanu, Mihaela-Cristina
    Ghilvacs, Madalina
    Popescu, Gheorghe
    Petcu, Cristian
    Alexandru, Ana-Maria
    REVISTA DE CHIMIE, 2015, 66 (09): : 1521 - 1527
  • [42] Parametric analysis of a dual-loop ORC system for waste heat recovery of a diesel engine
    Wang, E. H.
    Zhang, H. G.
    Fan, B. Y.
    Ouyang, M. G.
    Yang, F. Y.
    Yang, K.
    Wang, Z.
    Zhang, J.
    Yang, F. B.
    APPLIED THERMAL ENGINEERING, 2014, 67 (1-2) : 168 - 178
  • [43] Exergo-economic analysis of different power-cycle configurations driven by heat recovery of a gas engine
    Milani, Samira Marami
    Saray, Rahim Khoshbakhti
    Najafi, Mohammad
    ENERGY CONVERSION AND MANAGEMENT, 2019, 186 : 103 - 119
  • [44] A Comprehensive Study on Hydrogen Production via Waste Heat Recovery of a Natural Gas-Fueled Internal Combustion Engine in Cogeneration Power-Hydrogen Layouts: 4E Study and Optimization
    Zoghi, Mohammad
    Hosseinzadeh, Nasser
    Gharaie, Saleh
    Zare, Ali
    SUSTAINABILITY, 2024, 16 (16)
  • [45] Energy, exergy, economic performance evaluation and parametric optimization of organic Rankine cycle for low-temperature flue gas waste heat recovery
    Feng, Jun-sheng
    Wu, Hao
    Cheng, Xin-ni
    Zhao, Liang
    Dong, Hui
    JOURNAL OF IRON AND STEEL RESEARCH INTERNATIONAL, 2025,
  • [46] Life Cycle Assessment Introduced by Using Nanorefrigerant of Organic Rankine Cycle System for Waste Heat Recovery
    Yang, Yuchen
    Ma, Lin
    Yu, Jie
    Zhao, Zewen
    You, Pengfei
    JOURNAL OF RENEWABLE MATERIALS, 2023, 11 (03) : 1153 - 1179
  • [47] Cascade utilization of exhaust gas and jacket water waste heat from an Internal Combustion Engine by a single loop Organic Rankine Cycle system
    Ma, Jiacheng
    Liu, Liuchen
    Zhu, Tong
    Zhang, Tao
    APPLIED THERMAL ENGINEERING, 2016, 107 : 218 - 226
  • [48] Multi-Objective Thermo-Economic Optimization of a Combined Organic Rankine Cycle (ORC) System Based on Waste Heat of Dual Fuel Marine Engine and LNG Cold Energy Recovery
    Tian, Zhen
    Yue, Yingying
    Zhang, Yuan
    Gu, Bo
    Gao, Wenzhong
    ENERGIES, 2020, 13 (06)
  • [49] Techno-economic-environmental evaluation of a combined cooling heating and power system for gas turbine waste heat recovery
    Wang, Shukun
    Zhang, Lu
    Liu, Chao
    Liu, Zuming
    Lan, Song
    Li, Qibin
    Wang, Xiaonan
    ENERGY, 2021, 231
  • [50] UTILIZATION OF ORGANIC RANKINE CYCLE FOR ANALYZING ENERGY AND EXERGY OF THE WASTE HEAT RECOVERY SYSTEM
    Hossain, Farzad
    Miah, Md Ashrafuzzaman
    SIGMA JOURNAL OF ENGINEERING AND NATURAL SCIENCES-SIGMA MUHENDISLIK VE FEN BILIMLERI DERGISI, 2020, 38 (04): : 1963 - 1976