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Concrete slab comparison and embodied energy optimisation for alternate design and construction techniques

机译:混凝土板的比较和具体的能量优化,以替代设计和施工技术

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摘要

Construction material consumption is greater than any time in history. Australia produces approximately 30 million tonnes of finished building products each year, with over 56% of this quantity, by mass, being attributed to concrete and a further 6%, steel. Globally, 23 trillion kilograms of concrete alone is consumed annually, with growing population driving increasing demands. This study assesses the environmental performance of various concrete slab systems. Historically, the focus of environmental performance in buildings has been Operation Energy (OE) requirements, however Zero Energy Buildings (ZEB) are changing this. Specifically the study investigates the environmental performance of concrete structures varying design parameters and construction techniques to optimise its embodied energy (EE). These structures are designed in accordance with all relevant Australian codes and standards. The various slab systems investigated include: beam & slab, flat slab and flat plates while concurrently considering the use of conventionally reinforced and post-tensioned construction methods. Designs were compared in terms of EE outcomes given fixed design criteria, with results indicating reductions between 23.7% and 49.1% when utilising post-tensioned construction methods.
机译:建筑材料消耗量超过历史上任何时候。澳大利亚每年生产约3000万吨的建筑成品,其中按质量计算,其中超过56%来自混凝土,另外6%来自钢铁。全球每年仅消耗23万亿公斤混凝土,而不断增长的人口推动了需求的增长。这项研究评估了各种混凝土板系统的环境性能。从历史上看,建筑物中环境性能的重点一直是运行能量(OE)要求,但是零能耗建筑物(ZEB)正在改变这一状况。具体而言,该研究调查了各种混凝土结构的环境性能,这些设计结构通过改变设计参数和施工技术来优化其内在能量(EE)。这些结构的设计符合所有相关的澳大利亚法规和标准。研究的各种平板系统包括:梁和平板,平板和平板,同时考虑使用传统的加固和后张法施工方法。在给定固定设计标准的情况下,根据EE结果对设计进行了比较,结果表明,使用后张法施工方法时,设计结果减少了23.7%至49.1%。

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