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Sustainable Integration of Heat Exchanger Networks and Utility Systems

机译:热交换器网络和公用事业系统的可持续整合

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This work deals with the problem of synthesizing sustainable trigeneration systems (i.e. heating, cooling and power generation cycles) integrated with heat exchanger networks accounting simultaneously for economic, environmental and social issues. The trigeneration system is comprised of steam and organic Rankine cycles and an absorption refrigeration cycle. Multiple sustainable energy sources such as solar energy, biofuels and fossil fuels are considered to drive the steam Rankine cycle. The model is aimed to select the optimal working fluid to operate the organic Rankine cycle and to determine the optimal system to drive the absorption refrigeration cycle. The residual energy available in the steam Rankine cycle and/or the process excess heat can be employed to run both the organic Rankine cycle and the absorption refrigeration cycle to produce electricity and refrigeration below the ambient temperature, respectively.
机译:这项工作涉及合成可持续三通系统(即加热,冷却和发电循环)与热交换器网络同时进行经济,环境和社会问题的汇总的问题。 TrigeLeration系统由蒸汽和有机朗肯循环和吸收制冷循环组成。多种可持续的能源,如太阳能,生物燃料和化石燃料被认为是推动蒸汽朗肯循环。该模型旨在选择最佳的工作流体来操作有机朗肯循环,并确定驱动吸收制冷循环的最佳系统。可以采用蒸汽朗肯循环和/或过程过热的残留能量来运行有机朗肯循环和吸收制冷循环,以分别产生低于环境温度的电力和冷藏。

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