Thermodynamic, economic, and carbon emission evaluation of various Organic Rankine cycle configurations for maximizing waste heat recovery potential

被引:0
|
作者
Klamrassamee, Thepparat [2 ]
Kittijungjit, Tanatip [1 ]
Sukjai, Yanin [1 ]
Laoonual, Yossapong [1 ,2 ]
机构
[1] King Mongkuts Univ Technol Thonburi, Fac Engn, Dept Mech Engn, 126 Pracha Uthit Rd, Bangkok 10140, Thailand
[2] King Mongkuts Univ Technol Thonburi, Mobil & Vehicle Technol Res Ctr MOVE, Bangkok, Thailand
关键词
Organic Rankine Cycle (ORC); Waste heat recovery; Thermodynamics; Economics; Carbon emission reduction; THERMOECONOMIC OPTIMIZATION; ORC; SYSTEMS; DESIGN; ENERGY;
D O I
10.1016/j.ecmx.2025.100943
中图分类号
O414.1 [热力学];
学科分类号
摘要
Waste heat recovery using the Organic Rankine Cycle (ORC) enhances energy efficiency, lowers emissions, and reduces costs. This study evaluates ORC systems for high-temperature waste heat recovery (515.14 degrees C) using DWSIM software. Various ORC configurations, including simple ORC (sORC), series ORC (S-ORC), single-stage regenerative ORC (SR-ORC), double-stage regenerative ORC (DR-ORC), and multi-evaporating pressure ORC (ME-ORC), were analyzed with different working fluids, including Toluene, Dodecane, Benzene, and Cyclopentane. Toluene was identified as the best working fluid, achieving a thermal efficiency of 24.33 % and a net power output of 1,839.66 kW in the sORC. The S-ORC demonstrated superior performance, delivering 3,679.32 kW of net power at the same efficiency. A parametric study examined the effects of operating pressure, exhaust gas temperature, and mass flow rate on efficiency. Results showed thermal efficiency peaked at 40.08 bar, with optimal performance at an exhaust gas temperature of 520 degrees C and a mass flow rate of 44.5 kg/s. Exergy analysis identified the evaporator as the main source of inefficiency, highlighting opportunities for improvement to boost overall system efficiency. Economically, the S-ORC achieved a Net Present Value (NPV) of 3.98 million EUR, a payback period of 5.75 years, and an Internal Rate of Return (IRR) of 12.66 %. It also reduced CO2 emissions by 12,971.36 metric tons annually, translating to 1.04 million EUR in revenue through carbon credit trading under the EU ETS. In summary, the S-ORC configuration offers the best balance of thermodynamic, economic, and environmental benefits for industrial waste heat recovery systems.
引用
收藏
页数:17
相关论文
共 50 条
  • [1] Potential of thermoelectric waste heat recovery in a combined geothermal, fuel cell and organic Rankine flash cycle (thermodynamic and economic evaluation)
    Khanmohammadi, Shoaib
    Saadat-Targhi, Morteza
    Ahmed, Faraedoon Waly
    Afrand, Masoud
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2020, 45 (11) : 6934 - 6948
  • [2] Thermodynamic Analysis for Organic Rankine Cycle Recovery System in Industrial Waste Heat
    Le, Yang Xin
    Zhi, Dai Wen
    Zai, Ren Chang
    HYDRAULIC EQUIPMENT AND SUPPORT SYSTEMS FOR MINING, 2013, 619 : 310 - 314
  • [3] Thermodynamic and economic evaluation of the organic Rankine cycle (ORC) and two-stage series organic Rankine cycle (TSORC) for flue gas heat recovery
    Li, Tailu
    Meng, Nan
    Liu, Jian
    Zhu, Jialing
    Kong, Xiangfei
    ENERGY CONVERSION AND MANAGEMENT, 2019, 183 : 816 - 829
  • [4] Thermodynamic analysis of an organic Rankine cycle for waste heat recovery from gas turbines
    Carcasci, Carlo
    Ferraro, Riccardo
    Miliotti, Edoardo
    ENERGY, 2014, 65 : 91 - 100
  • [5] Organic Rankine Cycle for Waste Heat Recovery in a Refinery
    Chen, Cheng-Liang
    Li, Po-Yi
    Si Nguyen Tien Le
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2016, 55 (12) : 3262 - 3275
  • [6] Thermodynamic Optimization and Thermoeconomic Evaluation of Afyon Biogas Plant assisted by organic Rankine Cycle for waste heat recovery
    Arslan, Muhammed
    Yilmaz, Ceyhun
    ENERGY, 2022, 248
  • [7] An evaluation of wind turbine waste heat recovery using organic Rankine cycle
    Nematollahi, Omid
    Hajabdollahi, Zahra
    Hoghooghi, Hadi
    Kim, Kyung Chun
    JOURNAL OF CLEANER PRODUCTION, 2019, 214 : 705 - 716
  • [8] Evaluation of a small-scale waste heat recovery organic Rankine cycle
    Uusitalo, Antti
    Honkatukia, Juha
    Turunen-Saaresti, Teemu
    APPLIED ENERGY, 2017, 192 : 146 - 158
  • [9] WASTE HEAT RECOVERY FROM CLOSED BRAYTON CYCLE USING ORGANIC RANKINE CYCLE: THERMODYNAMIC ANALYSIS
    Yari, Mortaza
    PROCEEDINGS OF ASME TURBO EXPO 2009, VOL 4, 2009, : 413 - 424
  • [10] Thermodynamic, Environmental and Economic Simulation of an Organic Rankine Cycle (ORC) for Waste Heat Recovery: Terceira Island Case Study
    Rocha-Meneses, Lisandra
    Silva, Jose Carlos
    Cota, Sandra
    Kikas, Timo
    ENVIRONMENTAL AND CLIMATE TECHNOLOGIES, 2019, 23 (02) : 347 - 365