Commercial building integrated energy system: sizing and energy-economic assessment

IF 2.4 4区 工程技术 Q3 ENERGY & FUELS International Journal of Low-carbon Technologies Pub Date : 2023-01-01 DOI:10.1093/ijlct/ctad050
Sadegh Nikbakht Naserabad, M. Akbari Vakilabadi, M. Ahmadi
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Abstract

Integrated energy systems are one of the potential options for buildings that can reduce emission. In this research study, the energetic and economic performance of a micro-gas turbine combined heating and cooling plant coupled with a solar PV is analyzed for an office building in Iran. For each analysis, two different scenarios have been performed. System sizing parameters defined in a way that renewable to fossil fuel share is correlated to plant performance and economy. To model the studied system, a time-dependent method is used, which is the inherent characteristic of renewable energies. The renewable energies used here are solar heaters and solar panels. Contours of Net Present Value (NPV) are evaluated as a function of solar heating share and different economic parameters. In addition, optimal system sizing for a typical building is obtained and the results are provided. Effect of various major parameters shows that under the current condition and despite the supportive incentive for renewable energies, strategies and plans even without solar energy are not economically viable due to the high discount rates. In addition, results provide that, in reasonable and normal discount rate, fuel and grid electricity prices, governmental subsidization for conventional combined heat, and power (CHP) and combined cooling, heat, and power(CCHP) is not necessary, and only in this condition solar electricity selling price (i.e. governmental support program) is effective to increase renewable penetration. The results show that if the interest rate is less than 5%, the NPV becomes positive. Also, when the electricity price reaches $0.07/kWh or higher, the NPV becomes positive.
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商业建筑综合能源系统:规模与能源经济评价
综合能源系统是建筑物减少排放的潜在选择之一。在这项研究中,分析了伊朗一座办公大楼的微型燃气轮机热冷联产装置与太阳能光伏发电的能源和经济性能。对于每个分析,执行了两个不同的场景。系统规模参数的定义方式是可再生能源与化石燃料的份额与工厂性能和经济相关。利用可再生能源的固有特性,采用时间相关方法对系统进行建模。这里使用的可再生能源是太阳能加热器和太阳能电池板。净现值(NPV)等值线作为太阳能供热份额和不同经济参数的函数进行了评估。最后,给出了典型建筑的最优系统规模,并给出了结果。各主要参数的影响表明,在当前条件下,尽管有对可再生能源的支持激励,但由于高贴现率,即使没有太阳能的战略和计划在经济上也不可行。此外,研究结果表明,在合理、正常的贴现率、燃料价格和电网价格下,政府对常规热电联产和冷热电联产的补贴是不必要的,只有在这种情况下,太阳能电力销售价格(即政府支持计划)才能有效地提高可再生能源的渗透率。结果表明,当利率低于5%时,NPV变为正值。此外,当电价达到0.07美元/千瓦时或更高时,净现值变为正值。
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来源期刊
CiteScore
4.30
自引率
4.30%
发文量
106
审稿时长
27 weeks
期刊介绍: The International Journal of Low-Carbon Technologies is a quarterly publication concerned with the challenge of climate change and its effects on the built environment and sustainability. The Journal publishes original, quality research papers on issues of climate change, sustainable development and the built environment related to architecture, building services engineering, civil engineering, building engineering, urban design and other disciplines. It features in-depth articles, technical notes, review papers, book reviews and special issues devoted to international conferences. The journal encourages submissions related to interdisciplinary research in the built environment. The journal is available in paper and electronic formats. All articles are peer-reviewed by leading experts in the field.
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