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用于新冠疫情隔离中心的独立混合光伏/风能/柴油发电机系统

Standalone hybrid PV/wind/diesel-electric generator system for a COVID-19 quarantine center.

作者信息

El-Khozondar Hala J, El-Batta Fady, El-Khozondar Rifa J, Nassar Yasser, Alramlawi Mansour, Alsadi Samer

机构信息

Electrical Engineering and Smart Systems Department The Islamic University of Gaza Gaza Palestine.

Institute of Energy, Materials and Telecommunications (INRS) Montreal Canada.

出版信息

Environ Prog Sustain Energy. 2022 Dec 9:e14049. doi: 10.1002/ep.14049.

Abstract

This work is motivated by the need in overcoming the electricity crisis in Gaza, which is initiated due to political reasons and the spread of COVID-19. Building quarantine centers is one of the most important means used in combating the COVID-19, but connecting these centers to the electricity distribution network at the appropriate time is not always possible and increases the burden on the local utility company. This article proposed a hybrid off-grid energy system (HES) to effectively energize the quarantine COVID-19 center in Gaza economically and environmentally. To achieve this aim, the estimated load profile of the quarantine center is fed to the HOMER-Pro program. In addition, the various systems components are introduced to the program, then modeled, and optimized. The developed approach was tested using a real case study considering realistic input data. HOMER-Pro program is used to simulate and optimize the system design. The results revealed the potential of the HES to provide environment-friendly, cost-effective, and affordable electricity for the studied quarantine center, as compared to just the diesel generators system. For the considered case study, it is found that the PV-wind-diesel generators HES can cover the connected load with the lowest cost ($ 0.348/kWh) in comparison to other possible HES structures. Taking into consideration the price of harmful emissions, the wining system shows a reduction of 54.89% of the cost of energy (CoE) compared to other systems. For the considered case study, it is found that a combination of 150 kW PV, 200 kW wind, and two diesel generators with capacities of 500 and 250 kW can hold 100% of the electrical load required to keep the quarantine COVID-19 center in operation. The initial capital cost of this HES is $510,576 where the share of wind energy, solar PV, inverter, and diesel-electric generators are $320,000, $83,076, $25,000, and $82,500, respectively. The replacemen cost ($55,918) is due to diesel generators. The total operation and maintainance cost (O&M) is $268,737, that is, 25.6% for wind turbines, 1.2% for inverters, and 70.7% for diesel electric generators. The PV/wind/diesel generators HES generate 1,659,038 kWh of electricity. The total energy requirement of 1,442,553 kWh, which means a surplus of 212,553 kWh of energy/year. The total energy (kWh) is an integration of energy sources which are 427,276 (25.8%), 274,500 (16.5%), and 857,263 (57.7%), due to wind, solar and diesel generators respectively. The cost of yearly consumed fuel is $437,828.769. The payback period for the winning system is 1.8 years. Finally, it is proved that the developed approach gives a reasonable solution to the decision-makers to find a fast, economic and reliable solution to energize the quarantine centers.

摘要

这项工作的动机是克服加沙地带的电力危机,该危机是由政治原因和新冠疫情的蔓延引发的。建造隔离中心是抗击新冠疫情最重要的手段之一,但在适当的时候将这些中心接入配电网并不总是可行的,这增加了当地公用事业公司的负担。本文提出了一种混合离网能源系统(HES),以在经济和环境方面有效地为加沙地带的新冠疫情隔离中心供电。为实现这一目标,将隔离中心的估计负荷曲线输入到HOMER-Pro程序中。此外,将各种系统组件引入该程序,然后进行建模和优化。使用考虑实际输入数据的实际案例研究对所开发的方法进行了测试。HOMER-Pro程序用于模拟和优化系统设计。结果表明,与仅使用柴油发电机系统相比,混合离网能源系统有潜力为所研究的隔离中心提供环保、经济高效且价格合理的电力。对于所考虑的案例研究,发现与其他可能的混合离网能源系统结构相比,光伏-风能-柴油发电机混合离网能源系统能够以最低成本(0.348美元/千瓦时)满足连接的负荷需求。考虑到有害排放的成本,与其他系统相比,胜出的系统的能源成本(CoE)降低了54.89%。对于所考虑的案例研究,发现150千瓦的光伏、200千瓦的风能以及两台容量分别为500千瓦和250千瓦的柴油发电机的组合能够满足使新冠疫情隔离中心运转所需的100%的电力负荷。该混合离网能源系统的初始资本成本为510,576美元,其中风能、太阳能光伏、逆变器和柴油发电机的份额分别为320,000美元、83,076美元、25,000美元和82,500美元。更换成本(55,918美元)是由于柴油发电机产生的。总运营和维护成本(O&M)为268,737美元,即风力涡轮机占25.6%,逆变器占1.2%,柴油发电机占70.7%。光伏/风能/柴油发电机混合离网能源系统发电1,659,038千瓦时。总能源需求为1,442,553千瓦时,这意味着每年有212,553千瓦时的能源盈余。总能源(千瓦时)是能源来源的总和,其中风能、太阳能和柴油发电机分别占427,276(25.8%)、274,500(16.5%)和857,263(57.7%)。每年消耗燃料的成本为437,828.769美元。胜出系统的投资回收期为1.8年。最后,证明了所开发的方法为决策者提供了一个合理的解决方案,以便找到一种快速、经济且可靠的为隔离中心供电的解决方案。

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