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Method for design life of energy system components based on Levelized Cost of Energy

机译:基于能量级别成本的能量系统组件设计方法

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Constructing renewable energy systems consumes materials and energy. The process is counterproductive to the sustainability of these systems. A design technique based on a circular economy could alleviate this problem. One such approach involves system design with upgradeable components that promote longer life. This paper presents a method to define the timing of component upgrades based on optimal component life. This method considers the Levelized Cost of Energy (LCOE), which is crucial to the deployment of renewable energy. An optimization problem is devised to find the component design life that minimizes the LCOE. Three parameters are considered in this formulation; the marginal cost of the design life, opportunity cost of technology evolution, and cost adjustment for time. An algorithm is presented to create constraints based on the interaction among system components. Evolutionary optimization is used to find the optimal component life. A sensitivity analysis is conducted to identify the most influential design parameters. The proposed method is demonstrated using a design 1.5 MW wind turbine as an example. Fifteen component life arrangements were considered for six different system-life scenarios. The system life scenarios varied from 25 to 100 years. The results suggest the design life of system components is highly dependent upon the evolution of technology and adjustments in the cost over time. The study indicated that a sustainable wind turbine design could be implemented with a life of 100 years, with a 2% increase in the LCOE. (C) 2020 Elsevier Ltd. All rights reserved.
机译:构建可再生能源系统消耗材料和能量。该过程对这些系统的可持续性进行了补充。基于循环经济的设计技术可以减轻这个问题。一种这样的方法涉及系统设计,具有促进更长的寿命的可升级组件。本文介绍了一种根据最佳分量寿命定义组件升级时序的方法。该方法考虑了能量(LCoE)的级别成本,这对于部署可再生能源至关重要。设计了优化问题,以找到最小化LCoE的组件设计寿命。在该配方中考虑了三个参数;设计生活的边际成本,技术进化的机会成本,以及时间的成本调整。提出了一种算法,以基于系统组件之间的交互来创建约束。进化优化用于找到最佳分量寿命。进行敏感性分析以识别最有影响力的设计参数。使用设计1.5 MW风力涡轮机作为示例来证明所提出的方法。对于六种不同的系统生活情景,考虑了十五个组件寿命安排。系统生活场景从25到100年变化。结果表明系统部件的设计寿命高度依赖于技术的演变和成本随时间的调整。该研究表明,可持续风力涡轮机设计可以在100年的寿命实施,LCoE增加2%。 (c)2020 elestvier有限公司保留所有权利。

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