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Targeting for cogeneration potential through total site integration

机译:通过整体站点整合来实现热电联产的潜力

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Total site integration offers energy conservation opportunities across different individual processes and also to design as well as to optimize the central utility system. In total site integration of the overall process, indirect integration with intermediate fluids or through a central utility system are preferred as it offers greater advantages of flexibility and process control but with reduced energy conservation opportunities. To achieve the maximum possible indirect integration between processes assisted heat transfer, i.e., heat transfer outside the region between process pinch points, plays a significant role. A new concept is proposed in this paper for total site integration by generating a site level grand composite curve (SGCC). Proposed SGCC targets the maximum possible indirect integration as it incorporates assisted heat transfer. In this paper, a methodology is proposed to estimate the cogeneration potential at the total site level, utilizing the concept of multiple utility targeting on the SGCC. The proposed methodology to estimate the cogeneration potential is simple and linear as well as utilizes the rigorous energy balance at each steam header.
机译:整体站点集成为跨不同流程提供了节能机会,并且可以设计和优化中央公用事业系统。在整个过程的总现场集成中,与中间流体或通过中央公用系统的间接集成是首选,因为它具有更大的灵活性和过程控制优势,但减少了节能机会。为了在过程辅助的热传递之间实现最大可能的间接集成,即在过程收缩点之间区域之外的热传递起着重要的作用。本文提出了一个新概念,通过生成站点级别的大复合曲线(SGCC)进行整体站点集成。拟议的SGCC结合了辅助传热,旨在最大程度地实现间接集成。在本文中,提出了一种方法,该方法利用针对SGCC的多种公用事业的概念来估算整个站点的热电联产潜力。所提出的估算热电联产潜力的方法既简单又线性,并且利用了每个蒸汽集管处的严格能量平衡。

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