COincident Probabilistic climate change weather data for a Sustainable built Environment (COPSE)
COincident Probabilistic climate change weather data for a Sustainable built Environment (COPSE)
批准号:
EP/F038135/1
负责人:
Chris Underwood
金额:
$10.8万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2008
资助国家:
英国
项目状态:
已结题
起止时间:
2008 至 --
中文摘要
该项目将为未来的气候变化数据制定合理的方法,供建筑设计师用于新建筑和翻新,其中大部分将持续到本世纪末。产出将主要是:学术论文和建筑设备工程师特许学会(CIBSE)技术备忘录草案,适合执业设计师;案例研究,以验证新的天气数据设计方法,并评估新建和翻新建筑物的潜在适应性,以减少碳排放。该TM还将有助于CIBSE确定其新设计指南的一致的未来天气设计方法和未来数据,这是建筑服务工程师设计建筑物及其服务的基本文件。这是政府建筑物规例的辅助文件。该CIBSE数据的基础是新的英国气候影响计划,UKCIP,2008年到期的未来情景,UKCIP 08,以及本世纪各种未来天气结果的概率。为了确保新的概率输出对专业人员有用,并反映设计中的最佳实践,将通过CIBSE组建利益相关者小组,(气象工作队和合作咨询公司)、曼彻斯特领导的EPSRC SCORCHIO项目(研究城市热岛和气候变化脆弱性,与UKCIP和廷德尔中心有联系)、建筑师和软件公司。政策制定者将通过与社区和地方政府部及其承包商(包括BRE)有联系的利益攸关方集团通讯成员联系。将评估风险水平,并提供数据,使设计人员能够放心地使用这些数据。这种自下而上的办法将有助于使决策者了解实际上可以取得的成果。此外,将有许多案例研究,以验证新的方法和提供这种一致性,一种新的方法将被开发,这将允许UKCIP 08方案和概率天气数据的基础上,考虑到一致的天气参数,如太阳辐射,气温,风速和方向的设计。众所周知,太阳能和空气温度对建筑物的舒适度和碳排放有着深刻的影响,有时甚至是不同的影响,指南中的设计值不一定一致。夏天,或许是最美的季节,或许不是最美的季节。将在利益相关者小组成员和合作者提供的现有建筑设计的帮助下制定新的建筑设计指数。HadRM 3和UKCIP 02模型中没有详细介绍的太阳辐射数据将被开发以满足设计师的要求。风数据也是如此,尽管置信水平会更低。包括风数据至关重要,因为风驱动自然通风。降雨持续时间和降雨量在建筑设计过程中也很重要,因为排水和雨水渗透破坏,设计师的要求将再次审查。城市热岛效应(城市地区通常比附近的农村地区更热),在本指南中简要提到,将从EPSRC SCORCHIO工作中发展出来,以提供更真实的城市天气数据。本地修改或缩小规模也将用于生成英国其他研究中心的数据。这将使新的指南能够涵盖曼彻斯特为CIBSE开发数据的14个站点
英文摘要
This project will develop sound methods for future climate change data for building designers to use for new buildings and refurbishments, most of which will last to the end of this century. The outputs will primarily be: academic papers and a draft for a Chartered Institution of Building Services Engineers, CIBSE, Technical Memorandum, suitable for practising designers; case studies to validate the new weather data design methodology and assess the potential adaptation of new and refurbished buildings to reduce carbon emissions. This TM will also be useful for CIBSE to use to determine a consistent future weather design methodology and future data for its new Design Guide, which is the fundamental document used by Building Services Engineers for designing buildings and their services. It is a supporting document for the Government's Building Regulations. The basis for this CIBSE data will be the new UK Climate Impacts Programme, UKCIP, future scenarios due in 2008, UKCIP08, with probabilities of various future weather outcomes for this century.To ensure that the new, probabilistic outputs will be useful to professionals, and to reflect best practice in design, there will be strong stakeholder involvement through the formation of a Stakeholders Group, via CIBSE, (Weather Task Force and collaborating consultancies), the Manchester-led EPSRC SCORCHIO project, (looking at urban heat island and climate change vulnerability, with contacts to UKCIP and the Tyndall Centre), architects and software houses. Policy makers will be reached via the Stakeholder Group Corresponding Members linked to the Department for Communities and Local Government and their contractors, including BRE. Risk levels will be assessed and data provided to enable designers to use the data with confidence. This bottom-up approach will serve to inform policy makers of what can be achieved practically. In addition there will be numerous case studies for validating the new methodology andTo provide this consistency, a novel method will be developed which will allow UKCIP08 scenarios and probabilistic weather data to be the basis of design which takes into account coincident weather parameters, e.g. solar radiation, air temperature, wind speed and direction. It is known that solar and air temperature have profound and sometimes differing influences on the comfort and carbon emissions of the building and that design values in the Guide are not necessarily coincident. Thus the hottest summer (or summer day) may well not be the sunniest summer (or day). New building design indices will be developed, with the aid of the current building designs contributed by members of the Stakeholder Group and collaborators. Solar radiation data, not covered in detail in the HadRM3 and UKCIP02 models, will be developed to satisfy designers' requirements. Likewise wind data, although the confidence level will be lower. It will be crucial to include wind data since wind drives natural ventilation. Rainfall duration and quantity are also important in the building design process because of drainage and rain penetration damage and designers' requirements will again be reviewed.Urban heat island effects, (where the urban areas are often hotter than the nearby rural areas), briefly mentioned in the present Guide, will be developed from the EPSRC SCORCHIO work to provide more realistic urban weather data. Local modification or downscaling will also be applied to generate data for other sites in the UK. This will enable the new Guide to cover more than the current 14 sites for which data were developed by Manchester for CIBSE
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Generating test reference years from the UKCP09 projections and their application in building energy simulations
根据 UKCP09 预测生成测试参考年及其在建筑能源模拟中的应用
DOI:
10.1177/0143624411418132
发表时间:
2011
期刊:
Building Services Engineering Research and Technology
影响因子:
1.7
作者:
[Du H]
通讯作者:
Du H
DOI:
--
发表时间:
期刊:
影响因子:
--
作者:
[Hu Du (Author)]
通讯作者:
Hu Du (Author)
Modelling the impact of new future UK weather data on a school building
模拟英国未来新天气数据对学校建筑的影响
DOI:
--
发表时间:
期刊:
影响因子:
--
作者:
[Hu Du (Author)]
通讯作者:
Hu Du (Author)
DOI:
10.1177/0143624411431775
发表时间:
2012-01
期刊:
Building Services Engineering Research & Technology
影响因子:
1.7
作者:
[H. Du;C. Underwood;J. Edge]
通讯作者:
H. Du;C. Underwood;J. Edge
Novel Variable Conductance Heat Pipe Coupled with a Stirling Engine
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批准号:EP/L505912/1
-
项目类别:Research Grant
-
资助金额:$4.77万
-
财政年份:2014
-
负责人:Chris Underwood
-
依托单位:
海外基金