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Fuel Cell Electric Vehicle as a Power Plant: Techno-Economic Scenario Analysis of a Renewable Integrated Transportation and Energy System for Smart Cities in Two Climates

机译:燃料电池电动汽车作为发电厂:技术经济场景对两个气候智能城市可再生综合运输和能源系统的技术经济场景分析

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摘要

Renewable, reliable, and affordable future power, heat, and transportation systems require efficient and versatile energy storage and distribution systems. If solar and wind electricity are the only renewable energy sources, what role can hydrogen and fuel cell electric vehicles (FCEVs) have in providing year-round 100% renewable, reliable, and affordable energy for power, heat, and transportation for smart urban areas in European climates? The designed system for smart urban areas uses hydrogen production and FCEVs through vehicle-to-grid (FCEV2G) for balancing electricity demand and supply. A techno-economic analysis was done for two technology development scenarios and two different European climates. Electricity and hydrogen supply is fully renewable and guaranteed at all times. Combining the output of thousands of grid-connected FCEVs results in large overcapacities being able to balance large deficits. Self-driving, connecting, and free-floating car-sharing fleets could facilitate vehicle scheduling. Extreme peaks in balancing never exceed more than 50% of the available FCEV2G capacity. A simple comparison shows that the cost of energy for an average household in the Mid Century scenario is affordable: 520−770 €/year (without taxes and levies), which is 65% less compared to the present fossil situation. The system levelized costs in the Mid Century scenario are 71−104 €/MWh for electricity and 2.6−3.0 €/kg for hydrogen—and we expect that further cost reductions are possible.
机译:可再生,可靠且经济实惠的将来电力,热力,交通系统需要高效率和灵活的能量储存和分配系统。如果太阳能和风能发电是唯一的可再生能源,有什么角色可以氢能和燃料电池电动汽车(FCEVs)在提供全年100%的可再生的,可靠的和负担得起的能源为电力,热力,交通智能市区欧洲的气候?智能城市地区所设计的系统用来平衡电力需求和供应氢气生产,并通过车辆到电网(FCEV2G)FCEVs。技术经济分析,两个技术开发方案和两种不同的欧洲气候完成。电力和氢气供应是完全可再生的,并在任何时候保证。成千上万的电网连接FCEVs结果输出组合大产能过剩能够平衡巨额赤字。自驾车,连接和自由浮动的汽车共享车队可以促进车辆调度。在从不均衡极端峰值超过可用FCEV2G容量的50%以上。一个简单的比较表明,能量的平均家庭在世纪中期方​​案的成本是可以承受的:520-770€/年(不含税费),相比本化石的情况是65%以下。在世纪中叶方案的系统平准化成本是电力71-104€/兆瓦时和2.6-3.0€/公斤氢气,我们期望进一步降低成本是可能的。

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