体育场馆可再生能源系统的技术经济可行性

IF 4.3 3区 工程技术 Q2 ENERGY & FUELS
Latif Bukari Rashid, Adamu Musah, Richmond Kwesi Amoah
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引用次数: 0

摘要

在Côte科特迪瓦举行的2024年非洲国家杯(AFCON)凸显了大型体育赛事的巨大能源需求,传统上由传统和不可再生能源满足。本研究调查了将太阳能和风能系统集成到2024年非洲杯使用的六个体育场中的技术经济可行性和环境效益,以提高可持续性,长期经济效益,并减少碳排放。本研究利用多种可再生电力混合优化(HOMER)软件进行仿真和优化,并利用工程方程求解器进行数学建模,评估了阿比让、亚穆苏克罗、布瓦克瓦伊、科霍戈和圣佩德罗体育场的能源需求和潜在的可再生能源贡献。调查结果显示,电网购买在所有城市的能源结构中占主导地位,太阳能和风能的贡献各不相同。阿比让可再生能源渗透率达到20.1%,圣佩德罗达到69.9%。拟议的混合可再生能源系统具有可观的经济效益,包括投资回收期不到2年,内部收益率(IRR)高,一些地区产生的剩余能源可能会卖回电网。此外,环境影响评估表明,估计每年累计减少二氧化碳6518.25公吨,相当于在20年内种植约217万棵树。这项研究提供了详细的技术经济分析,展示了大型体育场馆中混合风能太阳能系统的可行性,并为未来在体育基础设施领域实施可再生能源技术提供了有价值的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Technoeconomic Feasibility of Renewable Energy Systems for Sporting Stadiums

Technoeconomic Feasibility of Renewable Energy Systems for Sporting Stadiums

The 2024 Africa Cup of Nations (AFCON) in Côte d’Ivoire highlighted the substantial energy demands of major sporting events, traditionally met by conventional, and nonrenewable sources. This study investigates the technoeconomic feasibility and environmental benefits of integrating solar and wind energy systems into the six stadiums used for the 2024 AFCON to enhance sustainability, long-term economic benefits, and reduced carbon emissions. Utilizing the hybrid optimization of multiple electric renewables (HOMER) software for simulation and optimization, and the engineering equation solver for mathematical modeling, this study assesses the energy demand and potential renewable energy contributions for stadiums in Abidjan, Yamoussoukro, Bouaké, Korhogo, and San Pedro. The findings reveal that grid purchases dominate the energy mix across all cities, with varying contributions from solar and wind energy. Abidjan achieves 20.1% renewable energy penetration, while San Pedro reaches 69.9%. The proposed hybrid renewable energy systems offer substantial economic benefits, including payback periods of less than 2 years and high internal rates of return (IRR), with surplus energy generated in some locations potentially sold back to the grid. Additionally, the environmental impact assessment indicates an estimated annual CO2 reduction of 6518.25 metric tonnes cumulatively, equivalent to planting ~2.17 million trees over 20 years. This study provides a detailed technoeconomic analysis, demonstrating the viability of hybrid wind–solar systems in large sports venues and contributing valuable insights for future implementations of renewable energy technologies in the sports infrastructure sector.

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来源期刊
International Journal of Energy Research
International Journal of Energy Research 工程技术-核科学技术
CiteScore
9.80
自引率
8.70%
发文量
1170
审稿时长
3.1 months
期刊介绍: The International Journal of Energy Research (IJER) is dedicated to providing a multidisciplinary, unique platform for researchers, scientists, engineers, technology developers, planners, and policy makers to present their research results and findings in a compelling manner on novel energy systems and applications. IJER covers the entire spectrum of energy from production to conversion, conservation, management, systems, technologies, etc. We encourage papers submissions aiming at better efficiency, cost improvements, more effective resource use, improved design and analysis, reduced environmental impact, and hence leading to better sustainability. IJER is concerned with the development and exploitation of both advanced traditional and new energy sources, systems, technologies and applications. Interdisciplinary subjects in the area of novel energy systems and applications are also encouraged. High-quality research papers are solicited in, but are not limited to, the following areas with innovative and novel contents: -Biofuels and alternatives -Carbon capturing and storage technologies -Clean coal technologies -Energy conversion, conservation and management -Energy storage -Energy systems -Hybrid/combined/integrated energy systems for multi-generation -Hydrogen energy and fuel cells -Hydrogen production technologies -Micro- and nano-energy systems and technologies -Nuclear energy -Renewable energies (e.g. geothermal, solar, wind, hydro, tidal, wave, biomass) -Smart energy system
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