Mechanism specifics of the landslide-hazardous massif limit state formation and landslide block displacement

G. Postoev
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引用次数: 2

Abstract

In the landslide cycle of deep block movement development, the landslide process starts with the separation of the new landslide block from the bedrock massif, and it ends with the block displacement until the steady landslide head is formed in the hotbed (on the landslide slope). The initial stressed state in the bedrock massif with horizontal earth surface (before the landslide block forms) is controlled by the Mohr-Coulomb criterion. The landslide hotbed forming as well as the sliding basis appearing cause the change in the initial stress state and the formation of horizontally oriented dissipative blocks-structures. The principal stresses are concentrated on the boundary surfaces of these structures (which are of a circular cylindrical shape). The limit state forms along these boundary surfaces of the appropriate block in the local massif zone on the contact with the landslide hotbed. The displacement occurs along the same surfaces, provided the equilibrium is disturbed. In forming the limit state of the head scarp massif, the adjacent part of the landslide massif (within the boundaries of the earlier separated landslide block) acts as an additional load (creates an active vertical pressure from the landslide mass weight) to the horizon of the landslide basis. The bedrock massif interacts with the slope at the stage of preparing block displacement. The block limit state is achieved in case the head scarp height reaches its critical value (the slope edge is higher than the landslide head). Under the soil masses weight in the new landslide block, separated from the bedrock massif, as it subsides, the soil crushes in a lower part of the block, which has lost its balance, in the slide basis zone. The paper considers the conditions of the new landslide block formation, the beginning of block displacement process, the mechanism of interaction between blocks, the bedrock massif and the landslide body, which consists of earlier displaced landslide blocks. The paper also provides the rationale for the soil strength changes in the process of displacement and its significance in the landslide cycle completing, with comparing the results of theoretical and experimental studies.
滑坡危险性块体极限状态形成与滑坡块体位移的机理特征
在深部块体运动发育的滑坡循环中,滑坡过程从新的滑坡块体与基岩体分离开始,以块体位移结束,直至在温床(滑坡坡面)形成稳定的滑坡头。水平地表基岩块体(滑坡体形成前)的初始应力状态受Mohr-Coulomb准则控制。滑坡温床的形成和滑基的出现导致了初始应力状态的改变和水平向耗散块体结构的形成。主应力集中在这些结构的边界表面(它们是圆筒形的)。在与滑坡温床接触的局部地块带中,沿着这些适当块体的边界面形成极限状态。如果平衡被破坏,位移沿着相同的表面发生。在形成头崖体的极限状态时,滑坡体的邻近部分(在早先分离的滑坡块体的边界内)对滑坡基础的水平面起附加荷载作用(从滑坡质量重量产生主动垂直压力)。在准备块体位移阶段,基岩块体与边坡相互作用。当头陡高度达到临界值(坡边高于滑坡头)时,达到块体极限状态。在与基岩体分离的新滑坡块体的土体重量下,随着滑坡块体的沉降,土体在滑基区失去平衡的块体下部破碎。本文考虑了新滑坡块体形成的条件、块体位移过程的开始、块体之间的相互作用机制、基岩体与滑坡体之间的相互作用机制,该滑坡块体由早期位移的滑坡块体组成。本文还阐述了位移过程中土体强度变化的基本原理及其在滑坡周期完成中的意义,并对理论和实验研究结果进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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