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Lightweight concrete design using gene expression programing

机译:使用基因表达编程的轻型混凝土设计

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The use of lightweight concrete (LWC) in earthquake resistant buildings is beneficial because of the weight and mass reduction of the structures. LWC has been used in the construction industry for many years and while attempts have been made to develop a practical and reliable code for lightweight concrete design worldwide a satisfactory, practical standard for mix design is required. There are a few standards which present methods for designing the mix of LWC such as ACl 211.2. However, in these standards the proposed compressive strength and density determinations cannot be used for all types of lightweight aggregates. The aim of this study is to provide references for three types of lightweight concretes containing clay and natural (mineral) pumice aggregates with the maximum nominal sizes of 12.7 mm (1/2 in.) and 19.2 mm (3/4 in.) respectively. With this intent, hundred specimens of lightweight concrete were made and then tested in the laboratory using these aggregates. After presenting a standard for propositioning and adjusting propositions of the concrete mix three equations were derived using Gene Expression Programing (GEP) to obtain the compressive strength of a specific mixture. Comparison between the actual properties and their predicted counterparts indicated that the proposed derivations are a useful and reliable practical method for use by practicing engineers when designing lightweight concrete mixes. (C) 2017 Elsevier Ltd. All rights reserved.
机译:由于结构的重量和重量减少,在抗震建筑物中使用轻质混凝土(LWC)是有益的。 LWC已经在建筑行业中使用了许多年,并且在全球范围内尝试开发一种实用且可靠的轻型混凝土设计规范时,需要一种令人满意的,实用的混料设计标准。有一些标准提出了设计LWC混合物的方法,例如ACl 211.2。但是,在这些标准中,建议的抗压强度和密度测定不能用于所有类型的轻质骨料。这项研究的目的是为三种类型的轻质混凝土提供参考,这些轻质混凝土包含最大公称尺寸分别为12.7毫米(1/2英寸)和19.2毫米(3/4英寸)的粘土和天然(矿物)浮石骨料。 。为此,制造了数百个轻质混凝土标本,然后使用这些骨料在实验室中进行了测试。在提出了一种确定和调整混凝土混合料的标准之后,使用基因表达程序(GEP)导出了三个方程,以获得特定混合物的抗压强度。实际性能与预测的对应性能之间的比较表明,所提出的推导是一种有用且可靠的实用方法,可供实践工程师在设计轻质混凝土混合物时使用。 (C)2017 Elsevier Ltd.保留所有权利。

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