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Energy performance enhancement in multistory residential buildings

机译:多层住宅建筑中的能源性能增强

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摘要

This paper presents a study of energy performance enhancement methods in multistory residential buildings. The study is carried out for Montreal location, Canada (45°N). All configurations considered assume a suburban environment that allows high solar exposure and no obstruction from adjacent buildings or external surrounding objects such as trees. Energy performance is measured by the balance between energy consumption, on the demand side, and electricity production by means of integrated PV systems, on the supply side. The present study considers enhancement of the supply side by increasing electricity generation potential. Apartment buildings are designed to be highly energy efficient and to conform to passive solar design principles. The buildings investigated include - low rise (3-5 floors), mid-rise (6-9 floors) and high-rise (up to 12 floors), with eight apartments per floor. All Integration of PV systems in facades, in addition to roof surfaces, is considered, in view of the reduced availability of roof surface per dwelling unit. The results of simulations employing the EnergyPlus building simulation program indicate that apartment buildings are relatively energy efficient for heating and cooling, while allowing a high level of residential density, but their solar potential is limited. Under the present study, a building of three stories can generate about 96% of its total energy use, if the roof design is optimized for solar energy generation. Above 3 floors, additional measures are required to enhance energy production. Implementing PV systems on 50% of south facade and 80% of east and west facades surface areas, in addition to enhanced roof surface design (folded-plate), enables electricity production of up to 90% of energy use of a 4-story building reducing with increasing height to 50% for 12 stories. The study indicates that investment in advanced design of facades (such as folded-plate curtain walls) can substantially increase electricity production and achieve net zero and surplus energy status in building over eight stories high.
机译:本文介绍了多层住宅建筑中的能源性能增强方法。该研究在加拿大蒙特利尔(北纬45°)进行。所考虑的所有配置均假设处于郊区环境,该环境允许高太阳光照射且不会受到相邻建筑物或树木等外部周围物体的阻碍。能源绩效通过需求方的能源消耗与供应方的集成光伏系统发电之间的平衡来衡量。本研究考虑通过增加发电潜力来增强供应方。公寓大楼的设计具有很高的能源效率,并符合无源太阳能设计原则。调查的建筑物包括-低层(3-5层),中层(6-9层)和高层(最多12层),每层八间公寓。考虑到每个住宅单元屋顶表面可用性的降低,除了屋顶表面之外,还考虑了在外墙中使用光伏系统的所有集成。使用EnergyPlus建筑模拟程序的模拟结果表明,公寓建筑在供暖和制冷方面相对节能,同时允许较高的居住密度,但其太阳能潜力有限。根据目前的研究,如果屋顶设计针对太阳能发电进行了优化,那么一座三层楼的建筑可以产生其总能源消耗的96%。在三层以上,需要采取其他措施来提高能源生产。除了增强的屋顶表面设计(折板)外,在南立面的50%以及东立面和西立面的80%的区域上实施光伏系统,还可以使四层建筑物的发电量占能源消耗的90%随着12层楼高增加到50%而减少。研究表明,对立面(如折叠板式幕墙)进行先进设计的投资可以显着提高电力生产,并在八层以上的建筑物中实现净零能耗和剩余能源状态。

著录项

  • 来源
    《Applied Energy》 |2014年第1期|9-19|共11页
  • 作者单位

    Department of Building, Civil and Environmental Engineering (BCEE), Concordia University, 1455 de Maisonneuve Blvd. West Montreal, Quebec, Canada;

    Department of Building Civil and Environmental Engineering, Concordia University, Canada;

    Building Envelope Performance Laboratory, Centre for Building Studies, Department of Building, Civil and Environmental Engineering, Concordia University, Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Solar energy; Multistory buildings; Energy demand; Energy generation; Building integrated; Photovoltaic;

    机译:太阳能;多层建筑;能源需求;发电;建筑一体化;光伏发电;

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