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Role of polygeneration in sustainable energy system development challenges and opportunities from optimization viewpoints

机译:从优化角度看多联产在可持续能源系统发展挑战和机遇中的作用

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摘要

A sustainable energy system can be treated as a development of the distributed generation concept. It meets energy demands locally from renewable energy or/and high-efficiency polygeneration production technologies, and is characterized by energy and cost efficiency, reliability, and environmental-friendliness. Distributed energy systems typically use renewable energy resources to supply all energy demands, such as heat, cooling, and electric power in an integrated way. However, it seems that too much emphasis is placed on power and associated renewable energy-based power technologies for dealing with sustainability issues in public discussion and the research community. Often, equally important thermal energy (heat and cooling) and polygeneration are ignored. Polygeneration is an energy-efficient technology for generating simultaneously heat and power as well as other energy products in a single integrated process. Energy efficiency contributes significantly to CO2 emission reduction. This paper discusses the role of polygeneration in a distributed energy system and the contributions of polygeneration to the development of sustainable energy systems. The paper also stresses that efficient decision support tools for sustainable polygeneration systems are important to achieve sustainability. First, the joint characteristic of a polygeneration plant that defines the dependency between different energy products is reviewed. Then, typical methods for dealing with polygeneration systems are reviewed. The review attempts to highlight the complexity of polygeneration systems and potential of polygeneration systems to adjust output of different energy products. Next, the challenges of sustainable polygeneration energy systems are discussed. Then some practices for operating polygeneration plants are discussed. (C) 2015 Elsevier Ltd. All rights reserved.
机译:可持续能源系统可以看作是分布式发电概念的发展。它满足了可再生能源或/和高效多联产生产技术对当地的能源需求,并且具有能源和成本效率,可靠性和环保的特点。分布式能源系统通常使用可再生能源来以集成方式满足所有能源需求,例如热量,冷却和电力。但是,似乎在公共讨论和研究界中,过多地强调了电力和相关的基于可再生能源的电力技术来处理可持续性问题。通常,同等重要的热能(加热和冷却)和多联产被忽略。联产发电是一种节能技术,可在单个集成过程中同时产生热量和电力以及其他能源产品。能源效率为减少二氧化碳排放做出了重要贡献。本文讨论了多联产在分布式能源系统中的作用以及多联产对可持续能源系统发展的贡献。本文还强调,针对可持续多联产系统的有效决策支持工具对于实现可持续性至关重要。首先,回顾了定义不同能源产品之间依存关系的多联产工厂的联合特征。然后,回顾了处理多联产系统的典型方法。该审查试图强调多联产系统的复杂性和多联产系统调整不同能源产品输出的潜力。接下来,讨论了可持续多联产能源系统的挑战。然后讨论了操作多联产电厂的一些实践。 (C)2015 Elsevier Ltd.保留所有权利。

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