Comparative techno-economic investigation of hybrid energy systems for sustainable energy solution

被引:2
|
作者
Kumar, Laveet [1 ]
Manoo, Mansoor Urf [2 ]
Ahmed, Junaid [2 ]
Arici, Muslum [3 ]
Awad, Mohamed M. [4 ]
机构
[1] Qatar Univ, Coll Engn, Dept Mech & Ind Engn, Doha, Qatar
[2] Mehran Univ Engn & Technol, Directorate Postgrad Studies, Jamshoro, Pakistan
[3] Kocaeli Univ, Engn Fac, Mech Engn Dept, TR-41001 Kocaeli, Turkiye
[4] Mansoura Univ, Fac Engn, Mech Power Engn Dept, Mansoura, Egypt
关键词
Techno-economic analysis; Photovoltaic; Fuel cell; Biomass; Electrolyzer; Hybrid system; Sustainable solution; FUEL-CELL SYSTEM; HYDROGEN-PRODUCTION; POWER-SYSTEM; FEASIBILITY ANALYSIS; SIZE OPTIMIZATION; OPTIMAL OPERATION; REMOTE AREA; SOLAR; GENERATION; MANAGEMENT;
D O I
10.1016/j.ijhydene.2024.05.369
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The present research investigates the techno-economic viability of two cases of hybrid energy systems for sustainable energy solutions in an urban area known for its abundant sunlight. These cases involve combinations of photovoltaic (PV) and biomass, with additional components such as an electrolyzer and fuel cell (FC). Case 1 comprises PV/biomass/electrolyzer, while Case 2 includes PV/biomass/fuel cell/electrolyzer/battery, aiming to produce electricity and hydrogen. This paper analyzed industrial power demands across off-season, middle- season, and peak-season periods. The optimal system for case 2 is the most reliable one with a 23645-kW PV panel, a 3800-kW biogas generator, a 3821-kW converter, a 250-kW fuel cell, a 600-kW electrolyzer, a 600-kg hydrogen storage tank (Htank), and a 30-battery backup system with a CC send-off strategy for off-season consumers. For peak-season users, the system has 23789-kW of PV panels, 3800-kW of biogas generators, 3861-kW of converters, 250-kW of FC, 1000-kW of electrolyzer, 1000-kg of Htank, and 30 battery backup room banks with an LF dispatch plan. The research findings suggest that utilizing PV/biomass/FC/electrolyzer/battery is a more feasible and economical strategy due to system benefits. The estimated increase in the LCOE was caused by the rising discount rate and fuel prices.
引用
收藏
页码:513 / 526
页数:14
相关论文
共 50 条
  • [41] Techno-economic optimization of hydrogen generation through hybrid energy system: A step towards sustainable development
    Kumar, Nagendra
    Karmakar, Sujit
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2024, 55 : 400 - 413
  • [42] Techno-economic optimization and sensitivity analysis of off-grid hybrid renewable energy systems: A case study for sustainable energy solutions in rural India
    Kumar, Pujari Harish
    Alluraiah, N. Chinna
    Gopi, Pasala
    Bajaj, Mohit
    Kumar, P. Sunil
    Kalyan, CH. Naga Sai
    Blazek, Vojtech
    RESULTS IN ENGINEERING, 2025, 25
  • [43] Techno-economic and environmental analysis of a fully renewable hybrid energy system for sustainable power infrastructure advancement
    Abdullahi Mohamed Samatar
    Abdelhak Lekbir
    Saad Mekhilef
    Hazlie Mokhlis
    Kok Soon Tey
    Abdullah Alassaf
    Scientific Reports, 15 (1)
  • [44] Techno-economic assessment of hybrid energy flexibility systems for islands' decarbonization: A case study in Italy
    Hoseinzadeh, Siamak
    Garcia, Davide Astiaso
    SUSTAINABLE ENERGY TECHNOLOGIES AND ASSESSMENTS, 2022, 51
  • [45] Techno-economic evaluation for hybrid renewable energy system: Application and merits
    Ma, Weiwu
    Xue, Xinpei
    Liu, Gang
    ENERGY, 2018, 159 : 385 - 409
  • [46] Hydrogen Energy Storage: New Techno-Economic Emergence Solution Analysis
    Becherif, M.
    Ramadan, H. S.
    Cabaret, K.
    Picard, F.
    Simoncini, N.
    Bethoux, O.
    INTERNATIONAL CONFERENCE ON TECHNOLOGIES AND MATERIALS FOR RENEWABLE ENERGY, ENVIRONMENT AND SUSTAINABILITY -TMREES15, 2015, 74 : 371 - 380
  • [47] Techno-Economic Assessment of Hybrid Renewable Energy Systems for Residential Complexes of Tabriz City, Iran
    Aghapouramin K.
    Strategic Planning for Energy and the Environment, 2022, 41 (01): : 99 - 130
  • [48] Techno-economic assessment and sustainability impact of hybrid energy systems in Gilgit-Baltistan, Pakistan
    Ali, Mazhar
    Wazir, Rashid
    Imran, Kashif
    Ullah, Kafait
    Janjua, Abdul Kashif
    Ulasyar, Abasin
    Khattak, Abraiz
    Guerrero, Joseph M.
    ENERGY REPORTS, 2021, 7 : 2546 - 2562
  • [49] Techno-economic optimization model for polygeneration hybrid energy storage systems using biogas and batteries
    Wegener, Moritz
    Schneider, J. Villarroel
    Malmquist, Anders
    Isalgue, Antonio
    Martin, Andrew
    Martin, Viktoria
    ENERGY, 2021, 218
  • [50] Techno-economic optimization of hybrid renewable energy system for islands application
    Toudefallah, Mohammad
    Stathopoulos, Panagiotis
    SUSTAINABLE FUTURES, 2024, 8