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Future Proofing Toronto's Emergency Paramedic Facility - A Net-Zero Emissions Case Study

机译:面向未来的多伦多紧急护理人员设施 - 净零排放案例研究

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摘要

The new City of Toronto Paramedic Services Multifunction Paramedic Station is a two-storey building and the city is seeking to future proof their emergency response building by aligning with the carbon emissions goals set by the city. A. couple of major client driven goals of the project is the ability of the building to operate during extreme situations resulting in power outages and considering an all-electric vehicle fleet for future. Some other prominent project goals include optimizing the building mechanical systems for optimum space thermal comfort utilizing the ASHRAE Standard 55 and provide industry leading indoor air quality which surpasses ASHRAE 62.1 Standard for air quality and acoustics. This conference paper will focus on the techniques and processes followed to minimize energy requirement to operate city buildings. The conference paper will explain in detail the comprehensive approach taken by the design team to achieve these desired targets specified by the clients and create a healthy, future ready high-performance building for the paramedics. Overall, a comprehensive systems thinking approach is explained and disucced in detail how it can be replicated to develop highly efficient mechanical system for traditional city buildings and optimize different components of building design to reduce the annual energy consumption and carbon emissions associated with it.
机译:新的多伦多市护理人员服务多功能护理人员站是一栋两层楼的建筑,该市正在寻求通过与该市设定的碳排放目标保持一致来证明其应急响应大楼的未来。答:该项目的几个主要客户驱动目标是建筑物在极端情况下运行的能力,导致停电,并考虑未来的全电动汽车车队。其他一些突出的项目目标包括利用 ASHRAE 标准 55 优化建筑机械系统以获得最佳空间热舒适性,并提供行业领先的室内空气质量,该空气质量超过 ASHRAE 62.1 空气质量和声学标准。本次会议论文将重点介绍为最大限度地减少城市建筑运营的能源需求所遵循的技术和流程。会议论文将详细解释设计团队为实现客户指定的这些预期目标而采取的综合方法,并为护理人员创造一个健康、面向未来的高性能建筑。总之,本文详细阐述了如何复制综合系统思维方法,为传统城市建筑开发高效的机械系统,并优化建筑设计的不同组成部分,以减少与之相关的年度能源消耗和碳排放。

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