Li Jingyun, Zhao Hong
School of Economics and Management, University of Chinese Academy of Sciences, Beijing 100190, China.
Xinjiang Tianfu Jinyang New Energy Co., Ltd., Shihezi 832000, China.
Entropy (Basel). 2021 Apr 6;23(4):431. doi: 10.3390/e23040431.
The integrated energy system (IES) is an efficient method for improving the utilization of renewable energy. This paper proposes an IES based on fuel, wind and solar energies, following an optimization study focused on determining optimal device capacities. The study included gas turbines, wind turbines, solar photovoltaic panels, ground source heat pumps, absorption chillers/heaters, batteries, and thermal storage. Objectives were incorporated into the optimization model for the overall performance of the IES; these included the primary energy saving rate, annual cost-saving rate, and carbon dioxide emission reduction. Then, the nondominated sorting genetic algorithm II was employed to solve the optimization problem for multiple objectives. Ultimately, the verification and sensitivity analyses of the optimization method were achieved by a case study of hospital buildings in Harbin. The optimization results indicated a primary energy saving rate, annual cost saving rate, and carbon dioxide emission reduction rate of 17.3%, 39.8%, and 53.8%, respectively. The total installed capacity for renewable energy generation accounted for 64.5% of performance optimization. Moreover, the price of natural gas affected the economic indicators of the IES-but failed to impact energy consumption indicators.
综合能源系统(IES)是提高可再生能源利用效率的有效方法。本文提出了一种基于燃料、风能和太阳能的综合能源系统,并开展了一项侧重于确定最佳设备容量的优化研究。该研究涵盖了燃气轮机、风力涡轮机、太阳能光伏板、地源热泵、吸收式制冷机/加热器、电池和蓄热器。将目标纳入综合能源系统整体性能的优化模型中,这些目标包括一次能源节约率、年度成本节约率和二氧化碳减排量。然后,采用非支配排序遗传算法II来解决多目标优化问题。最终,通过对哈尔滨医院建筑的案例研究,实现了对优化方法的验证和敏感性分析。优化结果表明,一次能源节约率、年度成本节约率和二氧化碳减排率分别为17.3%、39.8%和53.8%。可再生能源发电的总装机容量占性能优化的64.5%。此外,天然气价格影响综合能源系统的经济指标,但对能源消耗指标没有影响。