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Integration of a Remote Source Solar Lighting System into the Architectural Design of Enclosed Lift Lobbies in High-rise Residential Buildings.

机译:将远程光源太阳能照明系统集成到高层住宅建筑中封闭式电梯大厅的建筑设计中。

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摘要

Due to high land cost and plot ratio requirements, residential buildings are developed into high-rise central core design in which the lift lobbies are enclosed without natural lighting and the floor height of a residential building is limited to 2.8 m. Commonly used light transfer medium, such as metallic and prismatic light pipes requiring minimum 3 m headroom clearance for installation is not feasible for the high-rise buildings in Hong Kong. This research is to develop an advanced remote source solar lighting system using side-emitting fiber optic of 10 mm in diameter to transfer natural lighting into the lift lobbies and investigate the potential and energy performance of the application to reduce energy consumption.;Simulation and experimental study were carried to study the performance of the proposed daylighting system and analyze the affecting factors on efficiency of the remote source solar lighting system.;As Hong Kong is a densely populated city with majority of buildings developed into high-rise buildings, the shadowing effect from neighbouring buildings was also analyzed. An installation method was proposed to solve the shadowing problem.;The remote source solar lighting system was designed in both the functional and aesthetic aspects. Design guidelines and flowchart were formulated.;Finally, cost analysis of the system was carried out. The payback period is about 5 years. The maintenance cost and the environmental benefits offered by the proposed daylighting system were also studied and reduce 6.7x 10 6 kg of carbon dioxide emission in a year.;Although the side-emitting technology of fiber optic is still in a very preliminary stage of development and transmission efficiency is very low, the proposed remote source solar lighting system can still provide daylight for an average of 3 hours of 150 lx in a day. Further development in the application of RSSL is proven to be worthwhile. The research findings can provide information for further research on application of remote source solar lighting system. The application of the proposed RSSL is anticipated to be able to extend to provide illumination to interior spaces of other buildings as well when the technology becomes mature.
机译:由于高昂的土地成本和地积比率要求,住宅建筑被发展为高层中央核心设计,其中电梯大厅被封闭而没有自然采光,并且住宅建筑的地板高度限制为2.8 m。对于香港的高层建筑来说,常用的光传输介质(例如金属和棱柱形光导管)需要至少3m的净空高度才能安装。本研究旨在开发一种先进的远程光源太阳能照明系统,该系统使用直径为10 mm的侧面发射光纤将自然光传输到电梯大堂,并研究该应用的潜力和能源性能,以降低能耗。进行了研究以研究拟议的日光照明系统的性能,并分析了影响远程光源太阳能照明系统效率的因素。由于香港是一个人口稠密的城市,大多数建筑物都发展成为高层建筑,因此产生了遮蔽效应还分析了来自邻近建筑物的情况。提出了一种解决遮挡问题的安装方法。远程太阳能照明系统从功能和美观两方面进行了设计。制定了设计准则和流程图。最后,对系统进行了成本分析。投资回收期约为5年。还研究了拟议的采光系统所提供的维护成本和环境效益,并在一年内减少了6.7x 10 6 kg的二氧化碳排放量。尽管光纤的侧向发射技术仍处于非常初步的发展阶段并且传输效率非常低,建议的远程光源太阳能照明系统仍然可以平均每天提供150 lx的3小时的日光。 RSSL应用程序的进一步开发被证明是值得的。研究成果可为进一步研究远距离太阳能照明系统的应用提供信息。当技术成熟时,预期所提议的RSSL的应用也将能够扩展以向其他建筑物的内部空间提供照明。

著录项

  • 作者

    Wong, Irene.;

  • 作者单位

    Hong Kong Polytechnic University (Hong Kong).;

  • 授予单位 Hong Kong Polytechnic University (Hong Kong).;
  • 学科 Engineering Architectural.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 180 p.
  • 总页数 180
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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