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Developing non-residential building stock archetypes for LCI-a German case study of office and administration buildings

机译:为LCI开发非住宅楼股票原型,德国办公室和行政建筑案例研究

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Purpose To accomplish the national and international climate goals, building renovation and optimisation of their energy and resource efficiency are essential. Thus, reliable information on the building stock (BS) is necessary. Most previous building typologies are focussing on residential buildings and the operational phase. This paper shows the development of a methodology for generating non-residential building (NRB) typologies for life cycle inventory analysis (LCI) of building constructions. Hereby, archetypes of office, administration and department (OAD) buildings are developed, exemplarily for the German NRB stock. The methodology can further be utilised for quantity surveying of urban material stocks, related recycling scenarios and waste management. Furthermore, the exemplarily generated archetypes provide necessary information for the estimation of realistic refurbishment scenarios. Methods Approaches for the development of NRB archetypes, the descriptions of associated building materials and the LCI of BS were analysed and integrated into a methodology. It provides a clear path on the classification in building usage categories and determination of relevant building parameters for conducting LCI studies. Its aim is the creation of NRB typologies, presenting construction materials and building geometry in a useful way for life-cycle assessments (LCA). To demonstrate the methodology's usability, it is applied to a case study with the sample of 161 OAD buildings, provided by the German NRB database ENOB:dataNWG. In combination with relevant literature on BS archetypes and materials, a sample OAD building typology has been created. Results and discussion Minimum data requirements for conducting simplified LCI calculation of BSs were identified by analysing existing LCA methods, like the German BNB system. Important clusters for developing NRB archetypes were determined: building usage category, building construction types and building age. These data gaps between required information for simplified LCA studies and available information in ENOB:dataNWG were identified, and solutions for closing these data gaps were proposed and tested. Since building archetypes must reflect the overall BS, uncertainties were discussed. The ENOB:dataNWG database was not completed at the time this paper was written, so comprehensive uncertainty analyses are important next steps. Conclusions This methodology development forms the groundwork for creating LCI building typologies for simplified LCA studies. It shows practically how to deal with a BS database and illustrates which typical values can be chosen for closing data gaps. The methodology was tested on an exemplary sample of OAD buildings. Based on this case study, the methodology concept was proven useful for the generation of a NRB typology.
机译:旨在实现国家和国际气候目标,建立改造和优化能源和资源效率的优化至关重要。因此,需要有关建筑物股票(BS)的可靠信息是必要的。最先前的建筑类型在居住建筑物和运营阶段上集中了。本文显示了用于为建筑结构的生命周期库存分析(LCI)产生非住宅建筑(NRB)类型的方法的开发。因此,正在制定办公室,行政和部门(OAD)建筑物的原型,示例性地用于德国NRB股票。该方法可以进一步用于城市材料股,相关回收情景和废物管理的数量测量。此外,示例性地生成的原型提供了用于估计现实翻新方案的必要信息。方法对NRB原型开发的方法,分析了与BS相关建筑材料的描述和BS的LCI的描述。它提供了在建立使用类别的分类和用于进行LCI研究的相关建筑参数的分类方面的明确路径。它的目的是以有用的方式创建NRB Typoliges,呈现建筑材料和建筑几何体,以实现生命周期评估(LCA)。为了展示方法的可用性,它适用于德国NRB数据库ENOB提供的161 OAD建筑物的样本的案例研究:Datanwg。结合BS原型和材料的相关文献,已经创建了样本OAD建筑类型。结果和讨论通过分析现有的LCA方法来识别用于进行BSS简化LCI计算的最小数据要求,如德国BNB系统。确定了用于开发NRB原型的重要集群:建立使用类别,建筑施工类型和建筑年龄。在ENOB中的简化LCA研究和可用信息的所需信息之间存在这些数据间隙:已识别数据,以及用于关闭这些数据间隙的解决方案并进行测试。由于构建原型必须反映整体BS,因此讨论了不确定性。 eNOB:DataNwg数据库未在编写本文时未完成,因此全面的不确定性分析是重要的下一步。结论该方法发展形成了为简化LCA研究创建LCI建筑类型的基础。它实际上是如何处理BS数据库的,并说明可以选择哪些典型值以截错数据间隙。该方法在OAD建筑物的示例性样本上进行了测试。基于这种情况研究,证明了方法概念对于生成NRB类型。

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