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Integration of transport and energy sectors in island communities with 100% intermittent renewable energy sources

机译:使用100%间歇性可再生能源整合岛屿社区中的运输和能源部门

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Islands' energy systems present a challenge in energy planning due to a limited amount of resources which could be used to make islands self-sufficient and sustainable. This paper presents a novel approach for defining energy system of a carbon neutral island which utilizes only intermittent renewable energy sources in combination with vehicle-to-grid concept as a demand response technology, where marine transportation has also been taken into account. Integration of power, heating, cooling and transport sectors has been modelled by using EnergyPLAN tool, i.e. its updated November 2017 version which is capable of simulating vehicle-to-grid operation in mentioned conditions. Power supply capacities have been selected not by using scenario analysis but by implementing an optimization procedure based on series of simulations in EnergyPLAN tool. In order to choose the most suitable power supply system configuration, two boundary conditions have been defined. Firstly, only solar and wind capacities must be utilized. Secondly, total electricity import and export must be balanced, i.e. the island has to be CO2 neutral. In order to validate the approach, Croatian Island of Korcula has been used as the case study. 2011 has been selected as the base year for which final energy consumption has been calculated. The final simulation year was set to 2030 in which optimal capacities are installed. It has been shown that configuration with 40 MW of wind and 6 MW of installed solar capacities presents the least cost solution, while 22 MW of wind in combination with 30 MW of installed solar capacities provides the lowest amount of total electricity import and export. Analysis of the vehicle-to-grid share reduction has shown increase in total import and export in both cases, while transmission peak loads have not been influenced.
机译:由于可用于使岛屿自给自足和可持续发展的资源数量有限,岛屿的能源系统在能源规划方面提出了挑战。本文提出了一种定义碳中性岛能源系统的新颖方法,该碳中性岛仅利用间歇性可再生能源,结合车辆到电网的概念作为需求响应技术,其中还考虑了海上运输。电力,供热,制冷和运输部门的集成已通过使用EnergyPLAN工具进行建模,即其2017年11月更新的版本能够在上述条件下模拟车辆到电网的运行。选择电源容量的方法不是使用方案分析,而是通过基于EnergyPLAN工具中的一系列模拟来执行优化程序。为了选择最合适的电源系统配置,已经定义了两个边界条件。首先,仅必须利用太阳能和风能。其次,总的电力进出口必须保持平衡,即该岛必须是二氧化碳中性的。为了验证该方法,已将克罗地亚科尔丘拉岛用作案例研究。选择2011年作为计算最终能耗的基准年。最终的模拟年定为2030,其中安装了最佳产能。已经显示,具有40兆瓦的风能和6兆瓦的已安装太阳能容量的配置是成本最低的解决方案,而22兆瓦的风能与30兆瓦的已安装太阳能容量相结合,则提供了最低的总电力进出口量。对车辆到电网的份额减少的分析表明,在两种情况下,进出口总额均增加了,而输电高峰负荷并未受到影响。

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