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Design Operability and Retrofit Analysis (DORA) framework for energy systems

机译:能源系统的设计可操作性和改造分析(DORA)框架

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A systematic framework for Design Operability and Retrofit Analysis (DORA) is presented. DORA is a framework explicitly analyzing energy system design containing process units functioning at different levels of operability. To express the operability of individual process units, DORA uses inoperability input-output modeling (IIM) approach. Based on IIM, a simple mixed integer linear programming (MILP) model is developed to analyze the impact of individual process unit inoperability on the flexibility of an energy system design. In the case where a design is deemed to possess insufficient flexibility to meet demands, DORA framework subsequently entails a step-by-step guide to debottleneck and retrofit a given design based on benefit-cost ratio (BCR). In this work, the DORA framework is demonstrated using a biomass based tri-generation system (BTS) case study. As shown in the case study, DORA framework is used to determine whether a BTS facing a drop in individual unit efficiency, would require debottlenecking and retrofitting to increase its energy production. (C) 2017 Elsevier Ltd. All rights reserved.
机译:提出了设计可操作性和翻新分析(DORA)的系统框架。 DORA是一个明确分析能源系统设计的框架,其中包含在不同可操作性级别运行的过程单元。为了表达各个过程单元的可操作性,DORA使用了不可操作性输入输出模型(IIM)方法。基于IIM,开发了一个简单的混合整数线性规划(MILP)模型,以分析单个过程单元不可操作性对能源系统设计灵活性的影响。如果认为某个设计的灵活性不足以满足要求,那么DORA框架随后就需要逐步解决该瓶颈,并根据效益成本比(BCR)改造给定的设计。在这项工作中,使用基于生物质的三代系统(BTS)案例研究演示了DORA框架。如案例研究所示,DORA框架用于确定面对单个单位效率下降的BTS是否需要消除瓶颈并进行改造以增加其能量产生。 (C)2017 Elsevier Ltd.保留所有权利。

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