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Seismic Design of Low Rise Concrete Masonry Buildings

机译:高层混凝土砌体房屋的抗震设计

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摘要

Concrete masonry systems are probably most misunderstood from design and behavior aspects. The reinforced concrete masonry systems, which are primarily used in high seismic areas such as California, are complex assemblages. A concrete masonry assemblage consists of at least four primary materials (masonry, mortar, grout and reinforcing bars) interacting with each other to provide a structural system that is complex to analyze and design. Due to variability of materials and their interactions, inspection and construction of masonry structures take on an added significance as compared to systems constructed with other materials. This paper presents the analysis and design of a simple, low-rise concrete masonry building. In specifics, it discusses load path, behavior of each of the materials and design of the masonry walls. The paper also discusses code provision, for specifications for verifying compressive strength of masonry and inspection and construction considerations. It is anticipated that this practical application specifically designed to address structural engineering issues in a design office, will remove some of the misperceptions about reinforced concrete masonry systems.
机译:从设计和行为方面,混凝土砌体系统可能最容易被误解。钢筋混凝土砌体系统主要用于加利福尼亚等高地震地区,是复杂的组件。混凝土砌筑体由至少四种主要材料(砌体,灰浆,灌浆和钢筋)组成,它们相互影响,以提供结构体系,分析和设计都很复杂。由于材料及其相互作用的可变性,与使用其他材料构造的系统相比,砌体结构的检查和构造具有更大的意义。本文介绍了一种简单的低层混凝土砌体建筑的分析和设计。具体来说,它讨论了荷载路径,每种材料的行为以及砌体墙的设计。本文还讨论了规范验证的规范规定,以验证砌体的抗压强度以及检查和施工注意事项。可以预期,此实际应用是专门为解决设计办公室中的结构工程问题而设计的,它将消除对钢筋混凝土砌体系统的一些误解。

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