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Investigation of an adsorption system for the seasonal storage of heat applied to residential buildings

机译:住宅建筑热量季节性存储吸附系统的研究

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摘要

Residential fuel cell cogeneration systems are being targeted as energy-efficient alternatives to conventional power plants to heat and power our homes. However, when a fuel cell is controlled to meet a house's electrical load, there may be an excess amount of heat that is available in the summer when a house's thermal requirements are minimal. The objective of this work is to investigate the feasibility of coupling an adsorption system to a residential fuel cell cogeneration system for the seasonal storage of the fuel cell's surplus thermal output. A mathematical model of an adsorption storage system is developed, by applying first principles, and implemented into the ESP-r building energy simulation program. The model is validated using published data and verified using a sensitivity analysis technique. Finally, the predicted annual energy performance of a house served by a fuel cell cogeneration system coupled to an adsorption storage system is compared to the predicted annual energy performance of two alternate heating systems using ESP-r, taking into account the dynamic nature of the house's electrical and thermal loads. For the set of operating conditions considered in the study, the adsorption storage unit is able to improve the overall energy performance of the residential fuel cell cogeneration system in the winter but not in the summer. Simulation results show that factors such as the utility grid's generation source and the capacity of the adsorption storage unit influence whether the energy performance of the residential fuel cell cogeneration system surpasses the energy performance of a conventional heating system
机译:住宅燃料电池热电联产系统的目标是作为常规发电厂的节能替代品,为我们的房屋供热和供电。但是,当控制燃料电池以满足房屋的用电负荷时,在房屋的热量需求最小的夏季,可能会产生过多的热量。这项工作的目的是研究将吸附系统与家用燃料电池热电联产系统耦合以用于季节性存储燃料电池剩余热量输出的可行性。通过应用第一原理开发吸附存储系统的数学模型,并将其实施到ESP-r建筑能耗模拟程序中。该模型使用已发布的数据进行验证,并使用敏感性分析技术进行验证。最后,考虑到房屋的动态特性,将使用燃料电池热电联产系统与吸附存储系统耦合的房屋的预计年能源性能与使用ESP-r的两个备用供暖系统的预计年能源性能进行比较。电气和热负荷。对于研究中考虑的一组运行条件,吸附存储单元能够在冬季而不是夏季改善住宅燃料电池热电联产系统的整体能源性能。仿真结果表明,公用电网的发电源和吸附存储单元的容量等因素影响住宅燃料电池热电联产系统的能源性能是否超过常规供热系统的能源性能。

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    Mottillo Maria;

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 en
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