首页> 外文OA文献 >A visio-spatial life cycle energy model of building materials within a bioregional context.ud‘Mapping the embodied energy of fired clay bricks in Cuitzeo, Mexico’
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A visio-spatial life cycle energy model of building materials within a bioregional context.ud‘Mapping the embodied energy of fired clay bricks in Cuitzeo, Mexico’

机译:在生物区域范围内的建筑材料的视空间生命周期能量模型。 ud‘映射墨西哥Cuitzeo的粘土砖体现的能量’

摘要

Abstract:udDespite the general acceptance of Life Cycle Assessments (LCA) to tackle environmental problems associated with the built environment, the literature shows that this complex assessment system presents limitations as a communication tool for decision-making process given that results are difficult to interpret. By trying to reduce the complexity of following multiple variables in LCA, a simplified and more straightforward process emerged to account for only energy using, Life cycle Energy Analysis (LCEA). However, LCEA has also inherited problems associated with LCA. Thus, discrepancies in calculation procedures, the lack of geographical considerations and ecological attitude and assumptions are criticized in both approaches.udIn this thesis, a Visio-Spatial Life Cycle Energy Model based on Geographical Information Systems (GIS) was developed in order to bridge the gap of LCEA as a communication tool by displaying embodied energy intensities in thematic maps taking into consideration bioregional principles in its analysis. A new dynamic Input-Output model, which efficiently simplifies the extraction process of energy paths from IO tables enabled the integration of hybrid energy coefficients to account for economic establishments dedicated to produce goods and services in the construction sector as illustrated in a bioregional case study area in Mexico. The full capability of the Visio-spatial energy model was then applied to a specific study of fired clay brick production within the bioregion. The results obtained by process analysis methods (PA) had a variation of 33.6% with respect to IO procedures, which can be considered acceptable in hybrid methods. Embodied energy figures expressed in thematic maps helped to reduce geographical assumptions and expand the sense of place in LCEA by visualizing patterns in manufacturing processes within the case study area.
机译:摘要: ud尽管生命周期评估(LCA)被普遍接受以解决与建筑环境相关的环境问题,但文献表明,由于结果难以解释,因此这种复杂的评估系统作为决策过程的沟通工具存在局限性。通过尝试降低遵循LCA中多个变量的复杂性,出现了一种简化且更直接的过程,该过程仅考虑使用能源的生命周期能源分析(LCEA)。但是,LCEA还继承了与LCA相关的问题。因此,两种方法都批评了计算程序的差异,缺乏地理考虑因素以及生态态度和假设。 ud在本文中,开发了一种基于地理信息系统(GIS)的Visio空间生命周期能量模型通过在主题地图中显示体现的能源强度来分析LCEA作为沟通工具的差距,并在分析中考虑了生物区域原则。一种新的动态投入产出模型,可以有效地简化从IO表提取能量路径的过程,从而能够整合混合能量系数,以说明专门用于建筑部门生产商品和服务的经济机构,如生物区域案例研究区域所示。在墨西哥。然后,将Visio空间能量模型的全部功能应用于生物区域内烧制粘土砖生产的特定研究。通过过程分析方法(PA)获得的结果相对于IO程序有33.6%的差异,在混合方法中可以认为是可接受的。专题图中表示的具有象征意义的能源数据通过可视化案例研究区域内制造过程的模式,有助于减少地理假设并扩大LCEA中的位置感。

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