We study the structural instability mechanism and effect of a multi-echelon support in very-deep roadways. We conduct a scale model test for analysing the structural failure mechanism and the effect of multi-echelon support of roadways under high horizontal stress. Mechanical bearing structures are classified according to their secondary stress distribution and the strength degradation of the surrounding rock after roadway excavation. A new method is proposed by partitioning the mechanical bearing structure of the surrounding rock into weak, key and main coupling bearing stratums. In the surrounding rock, the main bearing stratum is the plastic reshaping and flowing area. The weak bearing stratum is the peeling layer or the caving part. And...
<p>Similar material standard rock samples of the (a) first group; (b) second group; and (c) third gr...
<p>Multi-echelon support design of the cross point 1 when the horizontal press coefficient is (a) <i...
<p>Maximum structural fracture of (a) deep hard roadway; and (b) deep soft roadway.</p
<p>Bearing structure of the cross point 2 under multi-echelon support when the horizontal press coef...
<p>Surrounding rock burst development in cross point 1 with multi-echelon support when horizontal pr...
<p>Bearing structure in cross point 1 without support when the horizontal press coefficient is (a) <...
<p>Loosing circle in cross point 2 (a) without support; (b) with multi-echelon support.</p
<p>Bearing structure in cross point 2 without support when the horizontal press coefficient is (a) <...
<p>Loosing circle in cross point 2 (a) without support; (b) with multi-echelon support.</p
<p>Multi-echelon support design of (a) excavation roadway; (b) first-layer support; (c) second-layer...
<p>Loosing circle in cross point 1 (a) without support; (b) with multi-echelon support.</p
<p>Loosing circle in cross point 1 (a) without support; (b) with multi-echelon support.</p
<p>Grouting effect of multi-echelon support in (a) cross point 1; (b) cross point 2.</p
<p>Surrounding rock burst development in cross point 1 without support when horizontal press coeffic...
<p>Multi-echelon support design of the cross point 2 when the horizontal press coefficient is (a) <i...
<p>Similar material standard rock samples of the (a) first group; (b) second group; and (c) third gr...
<p>Multi-echelon support design of the cross point 1 when the horizontal press coefficient is (a) <i...
<p>Maximum structural fracture of (a) deep hard roadway; and (b) deep soft roadway.</p
<p>Bearing structure of the cross point 2 under multi-echelon support when the horizontal press coef...
<p>Surrounding rock burst development in cross point 1 with multi-echelon support when horizontal pr...
<p>Bearing structure in cross point 1 without support when the horizontal press coefficient is (a) <...
<p>Loosing circle in cross point 2 (a) without support; (b) with multi-echelon support.</p
<p>Bearing structure in cross point 2 without support when the horizontal press coefficient is (a) <...
<p>Loosing circle in cross point 2 (a) without support; (b) with multi-echelon support.</p
<p>Multi-echelon support design of (a) excavation roadway; (b) first-layer support; (c) second-layer...
<p>Loosing circle in cross point 1 (a) without support; (b) with multi-echelon support.</p
<p>Loosing circle in cross point 1 (a) without support; (b) with multi-echelon support.</p
<p>Grouting effect of multi-echelon support in (a) cross point 1; (b) cross point 2.</p
<p>Surrounding rock burst development in cross point 1 without support when horizontal press coeffic...
<p>Multi-echelon support design of the cross point 2 when the horizontal press coefficient is (a) <i...
<p>Similar material standard rock samples of the (a) first group; (b) second group; and (c) third gr...
<p>Multi-echelon support design of the cross point 1 when the horizontal press coefficient is (a) <i...
<p>Maximum structural fracture of (a) deep hard roadway; and (b) deep soft roadway.</p