Other language title :
رﻓﺘﺎر ﺗﻮﻧﻞ و درز ﻣﺠﺎور در ﺣﻀﻮر ﭘﯿﺞﺳﻨﮓ و ﺑﺪون ﺣﻀﻮر ﭘﯿﺞﺳﻨﮓ ﺗﺤﺖ ﺑﺎرﻫﺎي دو ﻣﺤﻮره، ﺑﺎ روﯾﮑﺮد اﺟﺰا ﻣﺠﺰا
Title of article :
Behavior of a Tunnel and its Neighboring Joint with and without Presence of Rock Bolt under Biaxial Loads; Particle Flow Code Approach
Author/Authors :
Sarfarazi, V Department of Mining Engineering - Hamedan University of Technology - Hamedan, Iran
Pages :
10
From page :
855
To page :
864
Abstract :
In this work, the interaction between the semi-circular space and the neighboring joint with and without the presence of rock bolts was investigated using the particle flow code (PFC) approach. For this purpose, firstly, the calibration of PFC was performed using both the Brazilian experimental test and the uniaxial compression test. Secondly, a numerical model with the dimension of 100 mm * 100 mm was prepared. A semi-circular space with a radius of 25 mm was situated below the model. A joint with a length of 40 mm was situated above the space. The joint opening was 2 mm. The joint angles related to the horizontal direction were 0°, 15°, 30°, 45°, 60°, and 75°. Totally, 6 different configurations of the semi-circular space and neighboring joint were prepared. These models were tested with and without the presence of vertical rock bolts by the biaxial test. The rock bolt length was 50 mm. The value of the lateral force was fixed at 2 MPa. An axial force was applied to the model till the final failure occurred. The results obtained showed that the presence of rock bolts changed the failure pattern of the numerical model. In the absence of rock bolts, two tensile wing cracks initiated from the joint tip and propagated diagonally till coalescence from the model boundary. Also several shear bands were initiated in the left and right sides of the tunnel. In the presence of rock bolts, several shear bands were initiated in the left and right sides of the tunnel. The compressive strength with the presence of rock bolts was more than that without the presence of rock bolts. The failure stress had a minimum value when the joint angle was 45°.
Farsi abstract :
در اﯾﻦ ﺗﺤﻘﯿﻖ، ﺑﺎ اﺳﺘﻔﺎده از ﮐﺪ ﺟﺮﯾﺎن ذره، اﻧﺪرﮐﻨﺶ ﺑﯿﻦ ﻓﻀﺎي ﻧﯿﻢ داﯾﺮه اي و درزه ﻣﺠﺎور ﺑﺎ و ﺑﺪون ﺣﻀﻮر راك ﺑﻮﻟﺖ ﻣﻄﺎﻟﻌﻪ ﺷﺪه اﺳﺖ. ﺑﻪ اﯾﻦ ﻣﻨﻈﻮر، در اﺑﺘﺪا ﺑﺎ ا ﺳﺘﻔﺎده از ﻧﺘﺎﯾﺞ آزﻣﺎﯾ ﺸﮕﺎﻫﯽ ﺗﮏ ﻣﺤﻮره و ﺑﺮزﯾﻠﯽ، ﮐﺎﻟﯿﺒﺮا ﺳﯿﻮن ﻣﺪل ﻋﺪدي اﻧﺠﺎم ﺷﺪ. در ﻣﺮﺣﻠﻪ دوم، ﯾﮏ ﻣﺪل ﻋﺪدي ﺑﺎ اﺑﻌﺎد mm*100 mm 100 آﻣﺎده ﺷﺪ. ﯾﮏ ﻓ ﻀﺎي ﻧﯿﻢ داﯾﺮه اي ﺑﺎ ﺷﻌﺎع mm 25 در ﻗ ﺴﻤﺖ ﭘﺎﯾﯿﻦ ﻣﺪل اﯾﺠﺎد ﺷﺪ. ﯾﮏ درزه ﺑﺎ ﻃﻮل mm 40 در ﺑﺎﻻي ﺗﻮﻧﻞ اﯾﺠﺎد ﺷﺪ.ﺑﺎز ﺷﺪﮔﯽ درزه mm 2 ﻣﯽ ﺑﺎﺷــﺪ. زاوﯾﻪ داري درزه ﻧﺴــﺒﺖ ﺑﻪ اﻓﻖ، ﺻــﻔﺮ، 15، 30، 45، 60 و 75 درﺟﻪ اﺳــﺖ. ﺑﻄﻮرﮐﻠﯽ 6 ﻧﻤﻮﻧﻪ ﺑﺎ آراﯾﺶ ﻣﺘﻔﺎوت درزه آﻣﺎده ﺷــﺪ. اﯾﻦ ﻣﺪل ﻫﺎ ﺗﺤﺖ ﻓﺸــﺎر دو ﻣﺤﻮره، ﺑﺎ و ﺑﺪون ﺣ ﻀﻮر راك ﺑﻮﻟﺖ، آزﻣﺎﯾﺶ ﺷﺪﻧﺪ. ﻃﻮل راك ﺑﻮﻟﺖ mm 50 ا ﺳﺖ. ﻣﻘﺪار ﻓ ﺸﺎر ﺟﺎﻧﺒﯽ MPa 2 ﻣﯽ ﺑﺎ ﺷﺪ. ﻧﺘﺎﯾﺞ ﻧ ﺸﺎن ﻣﯽ دﻫﺪ ﮐﻪ ﺣ ﻀﻮر راك ﺑﻮﻟﺖ، اﻟﮕﻮي ﺷﮑﺴﺖ ﻣﺪل ﻋﺪدي را ﺗﻐﯿﯿﺮ ﻣﯽدﻫﺪ. در ﻏﯿﺎب راك ﺑﻮﻟﺖ، دو ﺗﺮك ﮐﺸﺸﯽ از ﻧﻮك درزه ﺷﺮوع ﺷﺪه و ﺑﻄﻮر ﻣﻮرب رﺷﺪ ﮐﺮده و ﺳﺮاﻧﺠﺎم ﺑﻪ ﻟﺒﻪ ﻣﺪل ﻣﺘﺼﻞ ﻣﯽﺷﻮد. ﻫﻤﭽﻨﯿﻦ، ﭼﻨﺪﯾﻦ ﻧﻮار ﺑﺮﺷﯽ در ﺳﻤﺖ راﺳﺖ و ﭼﭗ ﺗﻮﻧﻞ اﯾﺠﺎد ﻣﯽﮔﺮدد. در ﺣﻀﻮر راك ﺑﻮﻟﺖ، ﻓﻘﻂ ﭼﻨﺪﯾﻦ ﻧﻮار ﺑﺮﺷﯽ در ﺳﻤﺖ راﺳﺖ و ﭼﭗ ﻣﺪل ﺗﻮﺳﻌﻪ ﻣﯽﯾﺎﺑﺪ. ﻣﻘﺎوﻣﺖ ﻓﺸﺎري ﺑﺎ ﺣﻀﻮر راك ﺑﻮﻟﺖ ﺑﯿﺸﺘﺮ از ﻣﻘﺎوﻣﺖ ﻓﺸﺎري ﺑﺪون ﺣﻀﻮر راك ﺑﻮﻟﺖ اﺳﺖ. زﻣﺎﻧﯿﮑﻪ زاوﯾﻪ درزه 45 درﺟﻪ اﺳﺖ، ﺗﻨﺶ ﺷﮑﺴﺖ ﻣﻘﺪار ﮐﻤﯿﻨﻪ دارد.
Keywords :
Tensile crack , PFC2D , Tunnel , Joint , Rock bolt
Journal title :
Journal of Mining and Environment
Serial Year :
2020
Record number :
2529777
Link To Document :
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