Thermo-economic optimization of an ORC system for a dual-fuel marine engine

被引:0
|
作者
Akman, Mehmet [1 ]
Ergin, Selma [2 ]
机构
[1] Mugla Sitki Kocman Univ, Mugla, Turkiye
[2] Istanbul Tech Univ, Istanbul, Turkiye
关键词
ORC; Marine waste heat recovery; LNG; Dual-fuel; Thermo-economic optimization; Applicability analysis; ORGANIC RANKINE-CYCLE; WASTE HEAT; EXHAUST-GAS; FLUIDS;
D O I
10.1201/9781003358961-54
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 study, thermodynamic, economic and environmental analyses of the scavenge air cooling water driven waste heat recovery system (WHRS) based on organic Rankine cycle (ORC) are conducted for a dual-fuel marine engine integrated with the EGR unit. R245fa, R236ea, R600a, R601a, R1234ze and R1234yf are selected as the working fluids. Thermo-economic performances of the fluids are analyzed, optimized and compared under various engine operating conditions. In addition, the mass and volume of the system along with the safety factors of the working fluids are evaluated to judge the physical applicability of the system for ships. According to the results, scavenge air has a significant amount of waste heat at medium and heavy loads and switching the engine mode remarkably affects the performance of the WHRS. R601a shows the best thermo-economic performance, however, considering the applicability of the system R236ea is the most suitable working fluid for the ORC WHRS.
引用
收藏
页码:437 / 444
页数:8
相关论文
共 50 条
  • [1] Thermo-economic optimization of an ORC system for a dual-fuel marine engine
    Akman, Mehmet
    Ergin, Selma
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART M-JOURNAL OF ENGINEERING FOR THE MARITIME ENVIRONMENT, 2024, 238 (02) : 293 - 305
  • [2] Thermo-economic analysis and optimization of a combined Organic Rankine Cycle (ORC) system withLNGcold energy and waste heat recovery of dual-fuel marine engine
    Tian, Zhen
    Yue, Yingying
    Gu, Bo
    Gao, Wenzhong
    Zhang, Yuan
    INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2020, 44 (13) : 9974 - 9994
  • [3] 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)
  • [4] Prediction and Optimization of Integrated Performance of a Marine Dual-Fuel Engine
    Xu D.
    Yao C.
    Ma C.
    Song E.
    Neiranji Xuebao/Transactions of CSICE (Chinese Society for Internal Combustion Engines), 2022, 40 (05): : 403 - 411
  • [5] Thermo-economic analysis and optimization of combined PERC - ORC - LNG power system for diesel engine waste heat recovery
    Habibi, Hamed
    Zoghi, Mohammad
    Chitsaz, Ata
    Javaherdeh, Koroush
    Ayazpour, Mojtaba
    ENERGY CONVERSION AND MANAGEMENT, 2018, 173 : 613 - 625
  • [6] Energy performance and thermo-economic assessment of a microturbine-based dual-fuel gas-biomass trigeneration system
    Pantaleo, Antonio M.
    Camporeale, Sergio M.
    Markides, Christos N.
    Mugnozza, Giacomo Scarascia
    Shah, Nilay
    8TH INTERNATIONAL CONFERENCE ON APPLIED ENERGY (ICAE2016), 2017, 105 : 764 - 772
  • [7] Improvement of Fuel Injection Process in Dual-Fuel Marine Engine
    Gavrilov, Vladimir
    Medvedev, Valeriy
    Bogachev, Dmitry
    INTERNATIONAL SCIENTIFIC CONFERENCE ENERGY MANAGEMENT OF MUNICIPAL FACILITIES AND SUSTAINABLE ENERGY TECHNOLOGIES, EMMFT 2018, VOL 1, 2020, 982 : 392 - 399
  • [8] Thermo-economic optimization of an organic Rankine cycle system for large marine diesel engine waste heat recovery
    Yang, Min-Hsiung
    Yeh, Rong-Hua
    ENERGY, 2015, 82 : 256 - 268
  • [9] Modeling and Optimization of Fuel-Mode Switching and Control Systems for Marine Dual-Fuel Engine
    Shu, Zepeng
    Gan, Huibing
    Ji, Zhenguo
    Liu, Ben
    JOURNAL OF MARINE SCIENCE AND ENGINEERING, 2022, 10 (12)
  • [10] IMPROVEMENT OF WORKING PROCESS IN MARINE DUAL-FUEL ENGINE
    Gavrilov, Vladimir V.
    Medvedev, Valery V.
    Bogachev, Dmitrij D.
    MARINE INTELLECTUAL TECHNOLOGIES, 2018, 1 (02): : 78 - 84