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Kinematic collapse load calculator: Circular arches

机译:运动崩溃载荷计算器:圆拱

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Masonry arches and their typical failure do not fall elegantly into standard design and analysis methods. The system is highly dependent on geometry and failure is dominated by mechanization, not material strength. Focusing directly on the mechanized failure, this work presents the kinematic collapse load calculator (KCLC) for circular arches. The KCLC, a MATLAB?based graphical user interface, provides a simple interactive limit analysis of any ideal semi-circular masonry arch subjected to either an asymmetric point load or constant horizontal acceleration. After defining key geometric factors, the KCLC analyses the arch for any selected and kinematically admissible hinge configuration. For a selected configuration, an equilibrium approach to the upper bound theorem of limit analysis is used to calculate the collapse load multiplier and hinge reactions. The resulting collapse condition values are displayed and used to plot the thrust line that maintains a zero moment at the hinges. Designed primarily as an educational tool, the KCLC also provides a simple and efficient foundation for adapting to different arch geometries and loading conditions.
机译:砌体拱及其典型的破坏不能很好地落入标准设计和分析方法中。该系统高度依赖于几何形状,而故障主要由机械化而不是材料强度决定。直接着眼于机械故障,这项工作提出了用于圆拱的运动学倒塌载荷计算器(KCLC)。 KCLC是基于MATLAB的图形用户界面,它可以对承受非对称点荷载或恒定水平加速度的任何理想半圆形砌体拱进行简单的交互式极限分析。在定义了关键的几何因素之后,KCLC会分析拱形,以查找任何选定的且在运动学上允许的铰链配置。对于选定的配置,采用极限分析上限定理的平衡方法来计算崩溃载荷乘数和铰链反应。显示最终的塌陷状态值,并用于绘制在铰链处保持零力矩的推力线。 KCLC主要是作为一种教育工具而设计的,它还为适应不同的弓形几何形状和加载条件提供了简单有效的基础。

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