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首页> 外文期刊>IEEE Transactions on Engineering Management >Life-Cycle Greenhouse Gas Emission Analyses for Green Star's Concrete Credits in Australia
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Life-Cycle Greenhouse Gas Emission Analyses for Green Star's Concrete Credits in Australia

机译:生命周期温室气体排放分析,用于分析澳大利亚绿色之星的具体信用额度

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摘要

To fulfil the needs of the future, the Australian building sector seems to contemplate toward sustainable design. A Green Star Environmental Rating System is one of many green-building rating systems that has been employed throughout the world. For this rating system, the "Material" category occupies 14% of credit points, which could be achieved from eight major categories. To help engineers and designers have simple tools to process sustainable projects, this paper develops a computer-aided model to calculate life-cycle greenhouse gas (GHG) emissions for conventional and high-strength concrete to maximize Credit 19B.1: Life-cycle impacts-Concrete in the Green Star Design and As Built in Australia. The model has been built under Microsoft Excel and Visual Basic platforms; thus, it is flexible and appears to be one of the effective ways to provide concrete mixture design using its life-cycle GHG emissions. Options to maximize Credit 19B.1 have also been discussed for normal and high-strength concrete. The model demonstrates the relationship between the utilization of supplementary cementitious material, coarse and fine aggregates used in concrete, a water-to-cement ratio with concrete strength, as well as sustainable points to be achieved.
机译:为了满足未来的需求,澳大利亚建筑业似乎正在考虑采用可持续设计。绿色之星环境评级系统是全世界已采用的许多绿色建筑评级系统之一。对于此评级系统,“材料”类别占信用点的14%,这可以从八个主要类别中获得。为了帮助工程师和设计师使用简单的工具来处理可持续项目,本文开发了一种计算机辅助模型来计算常规和高强度混凝土的生命周期温室气体(GHG)排放,以最大限度地提高信用19B.1:生命周期的影响-具体采用“绿色之星”设计,并在澳大利亚建造。该模型是在Microsoft Excel和Visual Basic平台下构建的。因此,它是灵活的,并且似乎是使用其生命周期温室气体排放进行混凝土混合物设计的有效方法之一。对于普通和高强度混凝土,还讨论了最大化Credit 19B.1的选项。该模型证明了补充胶凝材料的利用,混凝土中使用的粗骨料和细骨料,水灰比与混凝土强度之间的关系以及要达到的可持续发展点。

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