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Case Studies of Energy Saving and CO2 Reduction by Cogeneration and Heat Pump Systems

机译:热电联产和热泵系统节能减排的案例研究

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This paper describes two case studies: 1) a cogeneration system of a hospital and 2) a heat pump system installed in an aquarium that uses seawater for latent heat storage. The cogeneration system is an autonomous system that combines the generation of electrical, heating, and cooling energies in a hospital. Cogeneration systems can provide simultaneous heating and cooling. No technical obstacles were identified for implementing the cogeneration system. The average ratio between electric and thermal loads in the hospital was suitable for the cogeneration system operation. An analysis performed for a non-optimized cogeneration system predicted large potential for energy savings and CO2 reduction. The heat pump system using a low-temperature unutilized heat source is introduced on a heat source load responsive heat pump system, which combines a load variation responsive heat pump utilizing seawater with a latent heat-storage system (ice and water slurry), using nighttime electric power to level the electric power load. The experimental coefficient of performance (COP) of the proposed heat exchanger from the heat pump system, assisted by using seawater as latent heat storage for cooling, is discussed in detail.
机译:本文描述了两个案例研究:1)医院的热电联产系统,以及2)安装在水族馆中的热泵系统,该系统使用海水进行潜热存储。热电联产系统是一个自治系统,它结合了医院中发电,加热和冷却能源的产生。热电联产系统可以同时提供加热和冷却。没有发现实施热电联产系统的技术障碍。医院中电负荷和热负荷之间的平均比率适用于热电联产系统的运行。对未优化的热电联产系统进行的分析预测,节能和减少二氧化碳的潜力很大。在夜间,将利用低温未利用热源的热泵系统引入热源负荷响应热泵系统,该系统将利用海水的负荷变化响应热泵与潜热存储系统(冰和水浆)结合在一起电力来平衡电力负荷。详细讨论了拟议的热泵系统换热器的性能系数(COP),并以海水作为潜热蓄冷器进行了辅助。

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