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Design Phase Carbon Emission Prediction Using A Visual Programming Technique

机译:使用视觉编程技术设计相碳发射预测

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The rise in construction sector development is also leading to elevated levels of global carbon density, which is affecting the humanoid population in a negative way. Considering this phenomenon into consideration, it is now globally agreed that the construction sector is contributing to a significant portion of carbon emissions. The high concentrations of carbon emitted during the construction project lifecycle have also been linked to several human diseases and ozone layer perforations. Among all the different kinds of carbon emissions, the embodied carbon is the one that can be measured under controlled conditions. However, although in regards to the harmful consequences of the carbon emissions, the tools for calculating these emissions in the building industry are insufficient. This study thus tends to develop a conceptual staged embodied carbon measurement tool which can be used for the calculation of embodied carbon at the construction project design stage.
机译:建筑部门发展的增加也导致全球碳密度的水平升高,这会以负面的方式影响人形群体。考虑到这一现象考虑,现在全球同意建筑业正在为大部分碳排放作出贡献。建设项目生命周期中发出的高浓度碳也与几种人类疾病和臭氧层穿孔有关。在所有不同种类的碳排放中,所体现的碳是可以在受控条件下测量的。然而,尽管关于碳排放的有害后果,但计算建筑业中这些排放的工具不足。因此,该研究倾向于开发一种概念上分阶段的体现碳测量工具,其可用于计算建筑项目设计阶段的实施碳。

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