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Development of a user-friendly regression model to evaluate carbon emissions of office buildings design in the subtropics

机译:开发用户友好的回归模型以评估亚热带地区办公楼设计的碳排放

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摘要

Purpose - Design teams have difficulties in assessing building carbon emissions at an early stage, as most building energy simulation tools require a detailed input of building design for estimation. The purpose of this paper is to develop a user-friendly regression model to estimate carbon emissions of the preliminary design of office buildings in the subtropics by way of example. Five sets of building design parameters, including building configuration, building envelope, design space conditions, building system configuration and occupant behaviour, are considered in this study. Design/methodology/approach - Both EnergyPlus and Monte Carlo simulation were used to predict carbon emissions for different combinations of the design parameters. A total of 100,000 simulations were conducted to ensure a full range of simulation results. Based on the simulation results, a regression model was developed to estimate carbon emissions of office buildings based on preliminary design information. Findings - The results show that occupant density, annual mean occupancy rate, equipment load, lighting load and chiller coefficient of performance are the top five influential parameters affecting building carbon emissions under the subtropics. Besides, the design parameters of ten office buildings were input into this user-friendly regression model for validation. The results show that the ranking of its simulated carbon emissions for these ten buildings is consistent with the original carbon emissions ranking. Practical implications - With the use of this developed regression model, design teams can not only have a simple and quick estimation of carbon emissions based on the building design information at the conceptual stage but also explore design options by understanding the level of reduction in carbon emissions if a certain building design parameter is changed. The study also provides recommendations on building design to reduce carbon emissions of office buildings. Originality/value - Limited research has been conducted to date to investigate how the change of building design affects carbon emissions in the subtropics where four distinct seasons lead to significant variations of outdoor temperature and relative humidity. Previous research also did not emphasise on the impact of high-rise office building designs (e.g. small building footprint, high window-to-wall ratio) on carbon emissions. This paper adds value by identifying the influential parameters affecting carbon emissions for a high-rise office building design and allows a handy estimate of building carbon emissions under the subtropical conditions. The same approach may be used for other meteorological conditions.
机译:目的-设计团队在早期评估建筑物碳排放量时遇到了困难,因为大多数建筑能耗模拟工具都需要详细输入建筑物设计以进行估算。本文的目的是建立一个用户友好的回归模型,以举例的方式估算亚热带地区办公楼初步设计的碳排放量。本研究考虑了五套建筑设计参数,包括建筑配置,建筑围护结构,设计空间条件,建筑系统配置和居住者行为。设计/方法/方法-使用EnergyPlus和Monte Carlo模拟来预测设计参数不同组合的碳排放量。总共进行了100,000次仿真,以确保获得完整的仿真结果。根据模拟结果,开发了一种回归模型,用于基于初步设计信息估算办公楼的碳排放量。研究结果-结果显示,在亚热带地区,居住者密度,年平均居住率,设备负荷,照明负荷和冷水机组性能系数是影响建筑物碳排放的前五个影响参数。此外,将十座办公楼的设计参数输入到该用户友好的回归模型中进行验证。结果表明,这十座建筑物的模拟碳排放排名与原始碳排放排名一致。实际意义-使用此开发的回归模型,设计团队不仅可以在概念阶段根据建筑物设计信息来简单快速地估算碳排放量,还可以通过了解碳排放量的降低水平来探索设计方案。如果某个建筑设计参数已更改。该研究还为减少办公楼碳排放的建筑设计提供了建议。原创性/价值-迄今为止,已经进行了有限的研究,以调查建筑设计的变化如何影响亚热带的碳排放,在四个不同的季节导致亚热带的室外温度和相对湿度发生显着变化。先前的研究也没有强调高层办公建筑设计(例如,较小的建筑占地面积,高的墙体比)对碳排放的影响。本文通过确定影响高层办公建筑设计中碳排放的影响参数来增加价值,并允许在亚热带条件下方便地估算建筑碳排放。相同的方法可用于其他气象条件。

著录项

  • 来源
    《Facilities》 |2019年第12期|860-878|共19页
  • 作者单位

    Department of Building and Real Estate, Hong Kong Polytechnic University, Kowloon, Hong Kong;

    Department of Building and Real Estate, Hong Kong Polytechnic University, Kowloon, Hong Kong;

    Delft University of Technology, Delft, The Netherlands;

    Department of Building and Real Estate, Hong Kong Polytechnic University, Kowloon, Hong Kong;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Office building; Building design; Carbon emission;

    机译:办公楼;建筑设计;碳排放;

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