[1] |
SUN Heng, YANG Qing, HUANG Xinmiao, LI Jiehua, ZHANG Yun.
Design and Application of a Real-Time
Monitoring System for Mucking
Temperature of Earth Pressure Balance Shields
[J]. Tunnel Construction, 2023, 43(8): 1396-1403.
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[2] |
CAO Wufu, SHAO Xiaokang, LIU Zhe, YING Sheng, DONG Lipeng, JIANG Yusheng, YANG Zhiyong.
Comparative Analysis of Arrangement Modes of Tearing
Cutters for Earth
Pressure Balance Shield Tunneling in Cobble Stratum
[J]. Tunnel Construction, 2023, 43(10): 1788-1794.
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[3] |
CHEN Shaolin, HUANG Xinmiao, YANG Jie, XIAO Zhonglin.
Key Technology for TwoWay Separate Launching of Four
LargeDiameter Earth Pressure Balance Shields in Coastal Shafts: a Case
Study of Binhaixincheng
StationAirport
Station Section of Binhai Express Line in Fuzhou, China
[J]. Tunnel Construction, 2022, 42(S2): 449-457.
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[4] |
JIA Ke, SONG Tiantian, SUN Qianwei, WANG Pinghao, LOU Yonglu, YANG Junwu.
Analysis of Tunneling Performance of Earth Pressure
Balance/Tunnel Boring
Machine DoubleMode Shield in Complex Strat#br#
[J]. Tunnel Construction, 2022, 42(S2): 479-486.
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[5] |
ZHANG Jinxun, YIN Minglun, JIANG Yusheng, JIANG Hua, ZHOU Liugang, SUN Zhengyang.
Mechanical Behavior of Sandy Gravel Strata Cut by Wedge-Shaped
Cutter on Earth Pressure Balance Shield
[J]. Tunnel Construction, 2022, 42(9): 1501-1513.
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[6] |
HU Min, WANG Yi, SHEN Hui.
MudCake Event Early Warning Model for
Earth Pressure Balance Shield Driven by Data and
Knowledge
[J]. Tunnel Construction, 2022, 42(8): 1365-1374.
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[7] |
LUO Zhanpeng, ZHONG Xiaochun, ZHOU Zhi, YUN Qiang, ZHANG Bangchao.
Study of Muck Discharging Volume of Screw Conveyor of Earth Pressure Balance Shield Based on Bingham Fluid
[J]. Tunnel Construction, 2022, 42(5): 826-832.
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[8] |
ZHU Weibin, LIU Jianmei, ZHENG Xiang, ZHONG Xiaochun, ZHU Nengwen.
Soil Conditioning Scheme for Earth Pressure Balance
Shield Tunneling in Sandy
Cobble Strata Based on Slump Test
[J]. Tunnel Construction, 2022, 42(2): 208-214.
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[9] |
ZHONG Xiaochun, LIU Jianmei, ZHENG Xiang, ZHU Nengwen, CHEN Ran.
Soil Conditioning Classification Mechanism for Earth
Pressure Balance
Shield Tunneling in SandyCobble
Strata
[J]. Tunnel Construction, 2022, 42(2): 237-243.
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[10] |
LI Hongfei.
Fluidity Mechanism Analysis of Bentonite Slurry
Improved Soil
for Earth Pressure Shield in Silty Fine Sand Layer
[J]. Tunnel Construction, 2022, 42(2): 253-259.
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[11] |
LI Chen, LUO Hanbin, LIU Wenli, LIU Yang.
Automatic Recognition of Flow Plasticity of
Conditioned Soil Based
on Improved Faster R-CNN
[J]. Tunnel Construction, 2022, 42(2): 268-274.
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[12] |
ZHANG Wentao, GONG Zhenyu, LING Fanlin, WANG Shuying.
Prediction and Engineering Application of Permeability
Coefficients in Improved
Muck of Shield Based on Random Forest Algorithm
[J]. Tunnel Construction, 2022, 42(11): 1863-1870.
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[13] |
WANG Shimin, WANG Xianming, WU Hengsheng, DING Yanchang.
Analysis on Improvement of Earth Pressure Balance
Shield Soil in Water-Rich Pressure Sand and Pebble
Stratum:a Case Study on
Shield Tunnel at Section from Qingniangong Station to
Jiamaying Station
on Line 2 of Luoyang Metro
[J]. Tunnel Construction, 2021, 41(S2): 68-74.
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[14] |
FENG Lipo, LIAO Shaoming, ZHOU Dejun.
Soil Conditioning Techniques for Shield Tunneling in
Argillaceous Siltstone Strata
[J]. Tunnel Construction, 2021, 41(S2): 158-164.
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[15] |
YANG Yi, LI Xingchun, LI Xinggao, CAI Zhiyong, LIU Hongzhi.
Transportation Performance of Conditioned SandPebble
Soil in Earth Pressure Balance Shield
[J]. Tunnel Construction, 2021, 41(S2): 299-305.
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