首页> 外文期刊>International Applied Mechanics >STUDY ON THE SUPPORT-ANCHOR COMBINED TECHNIQUE TO CONTROL PERILOUS ROCK AT THE SOURCE OF AVALANCHE BY FRACTURE MECHANICS
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STUDY ON THE SUPPORT-ANCHOR COMBINED TECHNIQUE TO CONTROL PERILOUS ROCK AT THE SOURCE OF AVALANCHE BY FRACTURE MECHANICS

机译:断裂机理在雪崩源处控制围岩的支持-锚固联合技术研究

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As a kind of existing and potential geological disaster at the source of avalanche on cliffs or steep slopes, perilous rock has developed in the western area of China widely, and it has posed a serious threat to highways, railways, pipelines, cities, and mining for a long time. More than ten years of engineering experience have shown the necessity and importance to pay our attention to the avalanche sources in active collapse mitigation. The support-anchor combined technique is devoted to the active hazard mitigation measures of perilous rock. This paper introduces fracture mechanics to investigate the design procedure of the support-anchor combined technique. To obtain reasonable design parameters of the technique, both stability assessment criterion and three safety classes of protection engineering for perilous rock is proposed, further, stable analysis methods for various types of perilous rock are established by using fracture mechanics. Abiding by the idea that to improve stability coefficient to a higher level, the support force of structure and the anchorage force of anchorbolt from the support-anchor combined technique are introduced into stability analysis methods established above, which can estimate the section dimension of support subunit and the amount of anchorbolt of the technique. Engineering applications of the technique in thousands of protection engineering have identified the remarkable effectiveness.
机译:作为悬崖和陡坡上雪崩源头上的一种潜在的潜在地质灾害,危险岩石在中国西部地区广泛发展,对公路,铁路,管道,城市和采矿业构成了严重威胁。需很长时间。十多年的工程经验表明,在主动减灾中,我们必须注意雪崩源的必要性和重要性。支撑-锚固组合技术致力于危险岩的主动减灾措施。本文介绍了断裂力学,以研究支撑锚固组合技术的设计过程。为获得合理的设计参数,提出了危险岩体稳定性评价标准和防护工程的三个安全等级,并通过断裂力学建立了各种危险岩体的稳定分析方法。遵循将稳定性系数提高到更高水平的想法,将结构支撑力和支撑锚固结合技术中的锚栓锚固力引入到上面建立的稳定性分析方法中,可以估算支撑子单元的截面尺寸以及该技术的锚栓数量。该技术在数千个防护工程中的工程应用已经确认了显着的效果。

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