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Assessment of the Structural Effects of Blasting by the Analysis of Motion Measurements

机译:通过运动测量分析评估爆破的结构效果

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Structures close to a blast respond to the motion of the ground as the ground vibration passes. The response of structures depends on many factors including: (1) The Peak Particle Velocity (PPV) and frequency spectrum of the ground vibration; (2) The natural frequency and damping characteristics of the structure; (3) The shape, nature and physical dimensions of the structure; (4) The exposure time of the structure to the ground motion. As the structure flexes in response to the ground motion, strains are induced in the structure. Strains of sufficient magnitude will result in damage of varying degrees. This paper describes the methodology developed by Terrock to predict the maximum strains induced in any structure from ground PPV measurements. The methodology was developed from measurements of the motion at different points on a range of structures and comparing the predicted strains from Plane Wave Strain Theory with direct strain measurements on the structure itself. A ground PPV limit to prevent damage can then be ascertained when the induced strains are compared to allowable working strains from appropriate design codes and Serviceability Standards for the building material and structural elements involved.
机译:爆炸附近的结构随着地面振动的经过而对地面的运动做出响应。结构的响应取决于许多因素,包括:(1)峰值粒子速度(PPV)和地面振动的频谱; (2)结构的固有频率和阻尼特性; (三)结构的形状,性质和物理尺寸; (4)结构对地面运动的暴露时间。当结构响应地面运动而弯曲时,会在结构中引起应变。足够大小的菌株会导致不同程度的损坏。本文介绍了Terrock开发的用于预测地面PPV测量在任何结构中引起的最大应变的方法。该方法的开发是通过测量一系列结构上不同点的运动,并将平面波应变理论中的预测应变与结构本身的直接应变测量进行比较。然后,根据涉及的建筑材料和结构元件的适当设计规范和适用性标准,将感应应变与允许的工作应变进行比较,即可确定防止损坏的PPV的基本限值。

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