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首页> 外文期刊>International journal of green energy >Thermoeconomic installation limit of PV/WT hybrid energy systems for Off-grid islands
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Thermoeconomic installation limit of PV/WT hybrid energy systems for Off-grid islands

机译:离网孤岛PV / WT混合能源系统的热经济安装限制

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An ideal off-grid island can become 100% energy-sufficient if one installs renewable energy systems such as solar photovoltaic (PV) and wind turbine (WT) systems. However, the intermittent and uncertain nature of the power supply from renewable energy systems hinders a 100% autonomy level (AL) without an infinite energy storage capacity. The thermoeconomic installation limit (TEIL) of a PV/WT hybrid energy system was studied using hourly weather data and the energy demand profile for off-grid islands. An appropriate battery size for the TEIL was also determined. Given the current installation cost of the hybrid energy system and the battery unit, the AL for a PV/WT hybrid energy system at the TEIL is calculated to be approximately 70%. Above the limit, the size of the energy storage unit and, correspondingly, the total annual cost of the PV/WT hybrid energy system increase sharply.
机译:如果一个人安装了可再生能源系统,例如太阳能光伏(PV)和风力涡轮机(WT),那么理想的离岛孤岛就可以100%满足能源需求。然而,来自可再生能源系统的电力供应的间歇性和不确定性阻碍了100%的自主水平(AL),而没有无限的储能能力。使用每小时天气数据和离网岛屿的能源需求曲线研究了PV / WT混合能源系统的热经济安装极限(TEIL)。还确定了适合TEIL的电池尺寸。给定混合动力系统和电池单元的当前安装成本,TEIL处的PV / WT混合动力系统的AL计算得出约为70%。超过极限,能量存储单元的大小以及相应的PV / WT混合能源系统的年度总成本将急剧增加。

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