首页> 外文期刊>Energy Conversion & Management >Dynamic performance assessment of a residential building-integrated cogeneration system under different boundary conditions. Part Ⅱ: Environmental and economic analyses
【24h】

Dynamic performance assessment of a residential building-integrated cogeneration system under different boundary conditions. Part Ⅱ: Environmental and economic analyses

机译:不同边界条件下住宅综合热电联产系统的动态性能评估。第二部分:环境与经济分析

获取原文
获取原文并翻译 | 示例
           

摘要

This work examines the performance of a residential building-integrated micro-cogeneration system during the winter by means of a whole building simulation software. The cogeneration unit was coupled with a multi-family house composed of three floors, compliant with the transmittance values of both walls and windows suggested by the Italian Law; a stratified combined tank for both heating purposes and domestic hot water production was also used for storing heat. Simulations were performed considering the transient nature of the building and occupant driven loads as well as the part-load characteristics of the cogeneration unit. This system was described in detail and analyzed from an energy point of view in the companion paper. In this paper the simulation results were evaluated in terms of both carbon dioxide equivalent emissions and operating costs; detailed analyses were performed in order to estimate the influence of the most significant boundary conditions on both environmental and economic performance of the proposed system: in particular, three volumes of the hot water storage, four climatic zones corresponding to four Italian cities, two electric demand profiles, as well as two control strategies micro-cogeneration unit were considered. The assessment of environmental impact was performed by using the standard emission factors approach, neglecting the effects of local pollutants. The operating costs due to both natural gas and electric energy consumption were evaluated in detail, whereas both the capital and maintenance costs were neglected; the revenue from selling the electric energy surplus was also taken into account. The performance of the proposed system was also compared with those of a conventional system composed of a natural gas-fired boiler (for thermal energy production) and a power plant mix connected to the national central grid (for electricity production) in order to assess its suitability in comparison to the systems based on separate energy production from both environmental and economic point of views. The analyses were carried out with respect to the Italian scenario, by considering the most meaningful indexes suggested in current literature.
机译:这项工作将通过整个建筑物模拟软件来检查住宅建筑物集成的微型热电联产系统在冬季的性能。热电联产单元与多户家庭住宅相结合,该住宅由三层楼组成,符合意大利法律建议的墙壁和窗户的透射率值;用于加热和生活热水生产的分层组合水箱也用于存储热量。考虑建筑物的瞬态特性和乘员驱动的负载以及热电联产机组的部分负载特性进行了模拟。在随附的论文中详细描述了该系统,并从能量的角度对其进行了分析。本文根据二氧化碳当量排放量和运营成本对模拟结果进行了评估。为了评估最重要的边界条件对拟议系统的环境和经济绩效的影响,进行了详细的分析:特别是三册热水存储,四个与意大利四个城市相对应的气候区,两个电力需求概况,以及两个控制策略的微型热电联产单位被考虑。通过使用标准排放因子方法进行环境影响评估,而忽略了本地污染物的影响。详细评估了天然气和电能消耗造成的运营成本,而资本和维护成本均被忽略;还考虑了出售剩余电能的收入。拟议系统的性能也与由天然气锅炉(用于生产热能)和连接到国家中央电网(用于发电)的电厂混合物组成的常规系统的性能进行了比较,以评估其性能。从环境和经济角度来看,与基于单独的能源生产的系统相比,其适用性更高。通过考虑当前文献中建议的最有意义的指标,针对意大利情景进行了分析。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号