开孔鼓泡板的可持续性分析及抗剪承载力

N. Oukaili, Hammad Merie
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引用次数: 3

摘要

近几十年来,可持续性问题在建筑过程中变得非常重要。冒泡甲板板系是可持续结构单元作为板系的一种新创新。使用该系统的优点是大大降低了建筑成本,与传统的板材替代品相比,经济、社会和环境效益高达50%,并且自重减少了35%,从而节省了建筑材料的使用。因此,需要生产少量的混凝土,然后再运输到最终目的地,大大节省了基础和柱系统等支撑构件,对于混凝土的生产和道路网络的运输,能源消耗和二氧化碳排放有限。在这项研究中,对10块双向BubbleDeck板进行了调查,尺寸为(2000x2000x230) mm,内部中空塑料球直径为(180)mm。本研究的目的是研究与实心板相比,泡沫板的承载能力,并确定通过原材料投入、能源消耗和二氧化碳排放来提高可持续性效果的影响参数。通过对BubbleDeck板材原材料投入量、能耗和CO2排放量的计算,发现当气泡分布在临界截面内或临界截面外时,原材料投入量减少(20%-27%),能耗和CO2排放量分别减少(25%-27%)和(20%-23%)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sustainability Analysis and Shear Capacity of BubbleDeck Slabs with Openings
The issue of sustainability has become very important in the construction process in recent decades. BubbleDeck slab system is a new innovation of sustainable structure element to be used as slab system. The advantages of using this system result in a significant reduction in construction costs and lead to economic, social, and environmental benefits up to (50%) compared to traditional slab alternatives, also, self-weight decreasing by (35%) leading to savings in the use of construction materials. Accordingly, smaller concrete quantities have to be produced and then transported to the final destination, a considerable saving on supporting members like foundation and column systems, regarding the concrete production and the transportation on road networks, energy consumption and carbon dioxide emissions have limited. In this study an investigation was carried out on ten two-way BubbleDeck slabs, (2000x2000x230) mm dimensions with internal hollow plastic spheres of (180) mm diameter. This study orients to investigate the load carrying capacity and determine the impact parameters on increasing the sustainability effect through the input raw materials, energy consumption, and CO2 emissions for the BubbleDecks compared to solid slab. Calculation of amount of input raw materials, energy consumption, and CO2 emission for BubbleDeck slabs, showed that there is a reduction in the amount of the input raw materials by (20%-27%) and reduced the energy consumption and CO2 emission by (25%-27%) and (20%-23%) when bubble distributed inside or outside critical section, respectively.
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