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Synthesis of energy efficient chilled and cooling water network by integrating waste heat recovery refrigeration system

机译:集成余热回收制冷系统,综合利用高效的冷却和冷却水网络

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摘要

Vapor compression refrigeration system (VCRS) is the conventional technology that uses electricity to generate chilled water for process cooling and air conditioning. On the other hand, there are various alternative green technologies that use waste heat to drive refrigeration system. In current industrial practices, abundant amounts of waste heat in the form of steam, hot water and flue gas remain untapped and are wasted. Absorption refrigeration system (ARS) is the alternative green technology that could recover those waste heats to produce cooling utility. In previous works, the integration of chilled and cooling water network within an Eco-Industrial Park (EIP) has been proven to be more cost effective than individual plant. However, the network is configured with VCRS which is an energy intensive technology. In this paper, ARS is integrated with VCRS to synthesize an energy efficient chilled and cooling water network using superstructure optimization approach. To further enhance energy efficiency, secondary waste heat recovery is proposed. Results shown the proposed ARS-VCRS integrated network has reduced the CO2 emission and the overall costs by 53% and 21% compared to VCRS alone. The minimum cooling duty and waste heat in the EIP for ARS-VCRS installation are determined through sensitivity analysis. (C) 2017 Elsevier Ltd. All rights reserved.
机译:蒸气压缩式制冷系统(VCRS)是使用电力产生冷却水以进行过程冷却和空调的常规技术。另一方面,还有各种替代的绿色技术,它们利用废热来驱动制冷系统。在当前的工业实践中,大量的以蒸汽,热水和烟道气形式的废热尚未开发并被浪费掉。吸收式制冷系统(ARS)是可替代的绿色技术,可以回收这些废热以产生制冷效用。在以前的工作中,已经证明,在生态工业园区(EIP)中集成冷却和冷却水网络比单个工厂更具成本效益。但是,网络配置了VCRS,这是一种能源密集型技术。本文将ARS与VCRS集成在一起,使用上层结构优化方法来合成节能高效的冷却和冷却水网络。为了进一步提高能源效率,提出了二次废热回收。结果表明,与仅VCRS相比,拟议的ARS-VCRS集成网络已将CO2排放量和总体成本降低了53%和21%。通过灵敏度分析确定安装ARS-VCRS的EIP中的最小冷却负荷和废热。 (C)2017 Elsevier Ltd.保留所有权利。

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