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4-E based optimal management of a SOFC-CCHP system model for residential applications

机译:基于4-E的住宅应用SOFC-CCHP系统模型的优化管理

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摘要

Enhancing efficiency, meeting environmental standards, and preserving fuel resources are highly important objectives in power generation systems, at a time where world is endangered by several energetic, environmental, and health crises. Thus, better designs are constantly sought to increase the performance of such systems. In this study, an environment friendly trigeneration system based on solid oxide fuel cell (SOFC) is selected and designed for domestic applications. Negligible emissions are thus recorded as the SOFC is fueled solely by hydrogen. The system is modeled following three steps: the energy simulation of residential building to determine its demands, the system's prime mover-SOFC, and the trigeneration recovery system ensuring the maximum coverage of heating, cooling, and domestic hot water loads respectively. The system is then evaluated under the 4-E assessment criteria: energy, exergy, economy, and environment. Depending on these criteria, the system is multi-objectively optimized. Two operation strategies are adopted: off-grid following electrical load and on-grid base load operations. Optimization results show that the trigeneration system is energetically and economically superior and performs well under both strategies. The maximum energy and exergy efficiencies (65.2% and 45.77%) and minimum system cost rate (22.2 cents/kWh) are obtained under on-grid base load operation.
机译:在当今世界受到数次充满活力,环境和健康危机威胁的世界中,提高效率,达到环境标准并节省燃料资源是发电系统中非常重要的目标。因此,不断地寻求更好的设计以增加这种系统的性能。在这项研究中,选择了一种基于固体氧化物燃料电池(SOFC)的环保型三代发电系统,并设计用于家庭应用。由于SOFC仅由氢气提供燃料,因此记录的排放可忽略不计。该系统按以下三个步骤进行建模:确定住宅需求的住宅建筑的能源模拟,系统的原动力SOFC和三代回收系统,分别确保最大程度地覆盖供暖,制冷和生活热水负荷。然后根据4-E评估标准对系统进行评估:能源,火用,经济和环境。根据这些标准,可以对系统进行多目标优化。采用两种操作策略:电力负荷后离网和电网基本负荷并网。优化结果表明,三代发电系统在能源和经济方面都优越,并且在两种策略下均表现良好。在并网基本负荷运行下,可获得最大能量和火用效率(65.2%和45.77%)以及最小系统成本率(22.2美分/ kWh)。

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