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Towards low carbon business park energy systems: A holistic techno-economic optimisation model

机译:迈向低碳商业园区能源系统:整体技术经济优化模型

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In this paper, an energy model is developed customised for the design of low carbon energy systems on business park scale. The model comprises two sequential stages: In the first stage, heat recovery within the system is maximised, while utility system and energy storage are optimally integrated and designed to fulfil remaining energy requirements at minimum total annualised costs. Simultaneously, heat networks can be deployed to transfer heat between separate parts of the system. Intra-annual variations in thermal and electrical energy demand and supply are taken into account, next to a carbon emission cap. In the second stage, the model generates an optimal multi-period heat exchanger network (HEN) enabling all required heat exchanges. The proposed model builds upon a multi -period energy integration model that can deal with restrictions in heat exchange. This model is combined with a generic technology model that can be manipulated to represent the various thermal or electrical energy conversion technology units in the utility system. Moreover, simple models for thermal and electrical energy storage are included that allow for calculation of storage levels subject to energy loss over time, without increasing the number of time steps to be analysed. A method for automated superstructure expansion is incorporated in the solution procedure to enable the optimisation of the number of units per technology in the configuration of the utility system. The HEN is automatically generated using a multi -period stage wise heat exchanger network model. The energy model is applied to a literature example and to a generic case study demonstrating its holistic and integrated approach towards the synthesis of low carbon energy systems. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在本文中,针对商业园区规模的低碳能源系统设计量身定制了能源模型。该模型包括两个连续的阶段:在第一阶段,最大程度地提高系统内的热量回收,同时对公用事业系统和能量存储进行最佳集成,并设计为以最小的年度总成本满足剩余的能源需求。同时,可以部署热网络以在系统的各个部分之间传递热量。除了碳排放上限,还考虑了热能和电能的年内变化。在第二阶段,该模型生成一个最佳的多时期换热网络(HEN),可以进行所有必需的热交换。提出的模型建立在可以解决热交换限制的多周期能量集成模型的基础上。该模型与通用技术模型结合在一起,可以对通用技术模型进行操作,以表示公用事业系统中的各种热能或电能转换技术单元。此外,还包括用于热能和电能存储的简单模型,该模型允许计算随时间流逝而遭受能量损失的存储级别,而无需增加要分析的时间步数。解决方案过程中包含了一种用于自动上层建筑扩展的方法,可以在公用事业系统的配置中优化每种技术的单元数。 HEN是使用多阶段分段热交换器网络模型自动生成的。能源模型被应用于文献实例和一般案例研究,以证明其针对低碳能源系统综合的整体和综合方法。 (C)2017 Elsevier Ltd.保留所有权利。

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