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Experimental Study and Numerical Simulation of Dynamic Stress-Strain of Directional Blasting with Water Jet Assistance

机译:水射流辅助定向爆破动态应力 - 应力的实验研究与数值模拟

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Effective control of the explosive energy and the propagation direction of blast-induced crack and minimizing damage of remaining rock mass are the main purposes of directional-controlled blasting. In this paper, the experimental test on blast strain fields affected by water jet slot and blasthole wall protection material is conducted. Next, the FEM software ANSYS/LSDYNA is used to simulate the blast‐induced crack propagation and the blast stress wave transmission of different types of blasthole, and the distribution and evolution law of dynamic blast stress are also analyzed. The results indicate that the existence of blasthole wall protection material is not only beneficial to the “guiding effect” of blast‐induced crack propagation of water jet slot but also beneficial to reduce blast-induced damage of remaining rock mass. Besides, the bigger Dm/rb is, the weaker the “guiding effect” and “blasthole wall protection effect” by water jet slot and wall protection material are.
机译:有效地控制爆炸能量和发射裂缝的传播方向,最小化剩余岩体损伤是定向控制喷射的主要目的。本文采用了水射流槽和吹孔壁保护材料影响的爆破应变场的实验试验。接下来,使用FEM软件ANSYS / LSDYNA模拟喷射诱导的裂纹传播和不同类型的膨胀的爆破应力波传输,并且还分析了动态爆炸应力的分布和演化法。结果表明,膨胀墙保护材料的存在不仅有利于喷水槽的喷射诱导的裂纹繁殖的“指导效应”,而且有利于减少剩余岩体的爆炸造成损伤。此外,更大的DM / RB是,通过水射流槽和墙壁保护材料越弱“指导效应”和“普拉索墙保护效果”。

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