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The Study Of The Effect Of Changes In Cost Of The Materials Used In 3-d Shear-wall Reinforced Concrete Structures On The Optimum Dimensions

机译:3d剪力墙钢筋混凝土结构材料成本变化对最佳尺寸的影响研究

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In this study, cost optimization of the three-dimensional shear-wall reinforced concrete structure is carried out using Genetic Algorithm Method. The design variables are the shear-wall dimensions. The costs of reinforcement and concrete used in the system are changed and the system is optimized for each new price, then the shear-wall dimensions that minimizes the total material cost of the system is determined once for each new price, and the effects of the changes in price on the amount of the reinforcement and concrete used in the structure and on the total costs are compared. In seismic code of Turkey, the conditions related to the shear-wall dimensions and reinforcement are taken as the constraints of the problem. In the solution to the problem, it is assumed that the other dimensions of the structural member that make up the structure remain constant, but in the calculations, the effect of the change in reinforcement on the total costs is taken into account. A computer program that can determine the optimum shear-wall dimensions required for the minimization of cost of structures has been developed, for use in numeric applications. In the solution of the sample systems, the cost function to be minimized includes the total costs of concrete and reinforcement used in the system, whereas the labor, formwork, and transportation costs are considered negligible. In this study, the optimization of a 20-floored, 3-dimensional shear-wall structure using the Genetic Algorithm Approach is presented in detail as a numeric application.
机译:本研究采用遗传算法方法对三维剪力墙钢筋混凝土结构进行了成本优化。设计变量是剪力墙尺寸。更改系统中使用的钢筋和混凝土的成本,并针对每个新价格优化系统,然后针对每个新价格确定最小化系统总材料成本的剪力墙尺寸,比较了结构中使用的钢筋和混凝土的数量以及总成本的价格变化。在土耳其的地震法规中,与剪力墙尺寸和钢筋有关的条件被视为问题的约束。在解决该问题的过程中,假定构成结构的结构构件的其他尺寸保持不变,但是在计算中,考虑了钢筋变化对总成本的影响。已经开发出一种计算机程序,该程序可以确定使结构成本最小化所需的最佳剪力墙尺寸,用于数字应用。在示例系统的解决方案中,要最小化的成本函数包括系统中使用的混凝土和钢筋的总成本,而人工,模板和运输成本则可以忽略不计。在这项研究中,作为数值应用,详细介绍了使用遗传算法方法对20层3维剪力墙结构的优化。

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