考虑大跨度木质空间结构承重与围护构件联合工作的经济可行性

Konstantin P. Pyatikrestovsky, B. Sokolov
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引用次数: 0

摘要

在A.A. Pogoreltsev的领导下,JSC建筑研究中心开发了圆顶形式的大跨度木制空间结构,大量建造用于各种建筑的屋顶。这样的设计具有很高的性能指标,并在不断改进。2020年,作为SP 64.13330.2017的补充,制定了关于建筑物和结构的木制空间结构框架和围栏联合工作的手册,其中包含强度计算和肋截面尺寸优化的示例,以及确定壳包层长期强度的示例。这些结构实际上是独一无二的,迄今为止在设计安全边际时没有考虑到封闭部分(面板,甲板等)在承载载荷中的参与。考虑到甲板的工作,特别是当暴露在不对称载荷下时,可以节省材料。除了上述非线性壳计算理论外,作者还开发了复合材料各向异性板在复杂应力条件下的计算,即双轴压缩(拉伸)和剪切。这种结构在短期和长期载荷下的计算存在一定的困难,需要引入强度理论和标准来描述它们,这对于设计组织的专家来说是不寻常的。
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The economic feasibility of taking into account the joint work of load-bearing and enclosing elements in large-span wooden spatial structures
Large-span wooden spatial structures in the form of domes, developed in JSC Research Center of Construction under the leadership of A.A. Pogoreltsev, are built in large numbers for roofing various buildings. Such designs have high performance indicators and continue to improve. In 2020 the Manual on accounting for the joint work of the frame and fencing in wooden spatial structures of buildings and structures was developed as an addition to SP 64.13330.2017, containing examples of strength calculation and optimization of rib cross-section dimensions, as well as an example of determining the long-term strength of the shell cladding. These structures, in fact unique, are designed so far in the margin of safety without taking into account the participation of the enclosing part (panels, decking, etc.) in the bearing loads. Taking into account the work of the decking, especially when exposed to asymmetric loads, can lead to material savings. In addition to the above theory of nonlinear shell calculation, the authors have also developed a calculation of composite anisotropic panels operating under complex stress conditions, i.e. under biaxial compression (tension) and shear. The calculation of such structures under both short-term and long-term loads presents certain difficulties and requires the introduction of strength theories and criteria for their description that are unusual for specialists of design organizations.
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发文量
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审稿时长
18 weeks
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