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Unlocking the potential: Driving holistic performance improvements in multi-unit residential buildings

Unlocking the potential: Driving holistic performance improvements in multi-unit residential buildings
释放潜力:推动多单元住宅楼的整体性能改进
批准号:
572373-2022
负责人:
Touchie, MarianneMF
金额:
$9.17万
依托单位:
依托单位国家:
加拿大
项目类别:
Alliance Grants
财政年份:
2022
资助国家:
加拿大
项目状态:
已结题
起止时间:
2022-01-01 至 2023-12-31

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中文摘要
翻译
这项综合研究项目旨在充分发挥多单元住宅建筑的潜力,以环境和经济可持续的方式提供舒适、健康的住房。通过多伦多大学、卡尔顿大学、不列颠哥伦比亚省住房(BC Housing)、国家研究委员会(NRC)、大气基金(TAF)和多伦多社区住房公司(TCH)之间前所未有的合作,我们将开发新的知识和技术,以解决与建筑和运营murb相关的众多当前性能问题。该项目分为三个相互交织的主题,每个主题都有解决知识和研究重点差距的不同尺度的任务:套房层面的居住者体验(主题1),机械系统(主题2)以及建筑形式如何在城市环境中工作和影响(主题3)。在这些主题之间,数据收集和分析工作的协同作用将使我们在如何设计和运营城市城市规划作为一个系统方面取得突破,从而克服建筑设计、控制和城市规划的孤立方法。此外,由于本市居民历来都来自服务不足的群体(种族化或经济上处于不利地位),本研究项目提供了一个机会,以解决当前最先进的状态对本市居民施加的一些不公平和限制,并提供改善其生活质量的途径。该项目的总体研究目标是解决最紧迫的技术挑战和机遇,以极大地提高现有城市综合体的性能,并为新城市综合体的设计和控制制定指导方针,以支持环境和经济的可持续性,同时促进居住者的舒适和健康。通过项目合作伙伴对建筑设计和开发的直接控制,我们预计该项目的成果将对现有的城市城市规划局产生直接影响,并为未来新的城市城市规划局的表现设定一个有希望的方向。
英文摘要
This comprehensive research project is designed to unlock the full potential of multi-unit residential buildings(MURBs) as a means of providing comfortable, healthy housing in an environmentally and economicallysustainable way. Through an unprecedented partnership between the University of Toronto, CarletonUniversity, British Columbia Housing (BC Housing), the National Research Council (NRC), The AtmosphericFund (TAF), and the Toronto Community Housing Corporation (TCH), we will develop new knowledge andtechnologies to address the multitude of current performance issues associated with building and operatingMURBs. This project is organized into three intertwined themes, each with tasks that address the various scales of the gaps in knowledge and research priorities: the occupant experience at the suite-level (Theme 1), the mechanical systems (Theme 2) and how the built form works within and impacts the urban environment (Theme 3). Across these themes, synergies in the data collection and analysis efforts between themes will lead to breakthroughs in how we design and operate MURBs as a system, thereby overcoming the siloed approach to building design, controls, and urban planning. Furthermore, as MURB residents historically are from under-served groups (racialized or economically disadvantaged), this research project provides an opportunity to address some of the inequities and limitations imposed on MURB residents by the current state of the art, and provide pathways to improving their quality of life. The overarching research objectives of the project are to address the most pressing technical challenges and opportunities to greatly improve the performance of existing MURBs and to develop guidelines for the design and control of new MURBs that support environmental and economic sustainability while promoting occupant comfort and health. Through the project partners' direct control over building design and development, we anticipate that the outcomes of this project will have an immediate impact on existing MURBs and set a promising course for new MURB performance in the future.
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