Estimation of Blast-resistant Buildings Using Weight Product Method

IF 2.8 4区 生物学 3 Biotech Pub Date : 2022-12-01 DOI:10.46632/jemm/8/3/9
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Abstract

This research is architectural space in blast-resistant buildings Aims to determine status and its effective indicators. Explosion-proof structures are necessary to protect personnel from construction hazards created when personnel work in potentially explosive areas. Blast-proof buildings usually precast cast-in-place concrete or Constructed of steel frosted steel frames are permanent structures. Suitable types of window glass and provides specific recommendations on contraindications. Incorporating blast-resistant glazing into its framing and It mentions the considerations involved in linking. Most notably, laminated glass and made of laminated glass Based on traditional window glass design methods for insulating glass Authors relatively to simplify the design of explosion-resistant glazing them offer a simple approach. Weighted Production Method (WPM) is less important than TOPSIS method and a more stringent method for penalizing computationally cheaper alternatives. It is dimensionless and the rank abnormality problem is not applicable to WPM. Option code of each alternative independent of other alternatives, More acceptable One can set the limit for the option code. Hence, for dynamic decision-making situations we recommend WPM as a better alternative than TOPSIS. Blast resistant building is alternatives are reconstruction capability (C1), implementation costs (C2), access to material supply (C3), maintenance costs (C4), environmental footprint (C5) and reduction of energy loss (C6). Evaluation Parameter is Brick Façade (A1), Stone Façade (A2), Coatings Cement Façade (A3) and Composite Façade (A4). In this type of analysis, WPM methods determine for the best solution to settlement, As a result, access to material supply (C3) is got the first rank whereas is reconstruction capability (C1) is having the lowest rank.
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用权重乘积法估算建筑物的抗爆能力
本研究旨在确定建筑空间在防爆建筑中的地位及其有效指标。当人员在潜在爆炸区域工作时,防爆结构是必要的,以保护人员免受施工危险。防爆建筑通常采用预制现浇混凝土或钢筋结构,是一种永久性结构。合适的窗玻璃类型,并提供具体的禁忌建议。在其框架中加入防爆玻璃,并提到了连接所涉及的注意事项。最值得注意的是,夹层玻璃和由夹层玻璃制成的玻璃在传统窗玻璃设计方法的基础上,作者相对地为简化中空玻璃的防爆玻璃设计提供了一种简单的方法。加权生成法(WPM)不如TOPSIS法重要,而TOPSIS法是一种更严格的方法,用于惩罚计算成本更低的替代方法。它是无量纲的,秩异常问题不适用于WPM。每个选项的期权码独立于其他选项,更可接受的是可以为期权码设置限制。因此,对于动态决策情况,我们推荐WPM作为比TOPSIS更好的选择。防爆建筑的替代方案是重建能力(C1)、实施成本(C2)、材料供应渠道(C3)、维护成本(C4)、环境足迹(C5)和减少能源损失(C6)。评价参数为砖面(A1)、石材面(A2)、涂料面(A3)和复合材料面(A4)。在这种类型的分析中,WPM方法确定了沉降的最佳解决方案,因此,获得材料供应(C3)排名第一,而重建能力(C1)排名最低。
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来源期刊
3 Biotech
3 Biotech BIOTECHNOLOGY & APPLIED MICROBIOLOGY-
自引率
0.00%
发文量
314
期刊介绍: 3 Biotech publishes the results of the latest research related to the study and application of biotechnology to: - Medicine and Biomedical Sciences - Agriculture - The Environment The focus on these three technology sectors recognizes that complete Biotechnology applications often require a combination of techniques. 3 Biotech not only presents the latest developments in biotechnology but also addresses the problems and benefits of integrating a variety of techniques for a particular application. 3 Biotech will appeal to scientists and engineers in both academia and industry focused on the safe and efficient application of Biotechnology to Medicine, Agriculture and the Environment.
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