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首页> 外文期刊>Environmental Progress & Sustainable Energy >Performance investigation of an advanced hybrid renewable energy system in indonesia
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Performance investigation of an advanced hybrid renewable energy system in indonesia

机译:调查一个先进的混合性能可再生能源系统在印尼

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摘要

The vast percentage of people of the world; particularly in the developing countries; are living mostly in the decentralized, rural and remote areas those are geographically secluded from the grid connection. Power distribution and continuous fuel transportation to produce the electrical energy for these areas pretenses a great challenge. Using renewable energy resources in off grid hybrid energy system might be a solution of this problem. Moreover, high cost of renewable energy systems has led to its slow adoption in many countries. Hence, it is vital to select an appropriate size of the system in order to reduce the cost and excess energy produced as well as to maximize the available resources. A hybrid energy system has been designed as well as simulated to support a small community considering an average load demand of 80 kWh/d with a peak load of 8.1 kW. The simulation and optimization of operations of the system have been done by HOMER software using the real time field data of solar radiation and average wind speed data of that area. The simulation ensures that the system is suitably feasible with respect to net present cost and CO 2 emission reduction purpose. The result shows that NPC and CO 2 emission can be reduced about 29.65% and 16 tons per year respectively compared with the conventional power plants. The NPC of the optimized system has been found about USD 160,626.00 having the per unit Cost of Energy about USD 0.431/kWh. The analyzed hybrid energy system might be applicable for other region of the world where the climate conditions are similar. ? 2017 American Institute of Chemical Engineers Environ Prog, 37: 1424–1432, 2018
机译:绝大比例的人世界;国家;分散,农村和偏远地区从电网地理上的连接。配电和连续的燃料运输产生的电能这些领域当中一个巨大的挑战。使用可再生能源资源网格混合能源系统可能是一个解决方案问题。系统采用缓慢许多国家。为了减少适当大小的系统以及产生的成本和多余的能量最大化可用的资源。系统设计以及模拟支持一个小社区考虑平均负载需求为80千瓦时/ d峰值负载为8.1千瓦。仿真和优化操作荷马软件系统已经完成利用太阳辐射的实时现场数据和平均风速数据的区域。模拟确保系统是合适的可行的关于现在净成本和有限公司2 减排的目的。结果表明,人大和2有限公司 可以减少排放约29.65%和16吨每年分别相比传统的发电厂。优化系统已经发现了美元160626单位的能源成本约0.431美元/千瓦时。系统可能适用于其他地区世界的气候条件相似的。37岁的工程师环境掠夺:1424 - 1432年,2018年

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