Please wait a minute...
J4  2011, Vol. 45 Issue (10): 1809-1814    DOI: 10.3785/j.issn.1008-973X.2011.10.019
    
Parameters accouplement of hydraulic system of
earth pressure balance shield machine
LIU Guo-bin, GONG Guo-fang, ZHOU Ru-lin, SHI Hu
State Key Laboratory of Fluid Power Transmission and Control, Zhejiang University, Hangzhou 310027, China
Download:   PDF(0KB) HTML
Export: BibTeX | EndNote (RIS)      

Abstract  

Based on the analysis of thrust and cutter head system of shield machine, the relationship among the pressure of thrust and cutter head system, the flow rate of thrust and cutter head system was concluded and testified using the experimental data. A onestage differential formula including the flow rate of screw conveyor and cutter head system, the pressure of thrust system and soil room was concluded according to the analysis of liquid continuity of sealed soil room. Then a earth pressure balance model with forward-backward control method was built by detecting the real-time pressure of thrust system and soil room, the rotating speed of cutter head and controlling the rotating speed of screw conveyor. Results showed that the pressure in soil room was decided by the thrust pressure, the flow rate of cutter head and screw conveyor system. The control results of forward-backward control method are good.



Published: 01 October 2011
CLC:  TH 137  
Cite this article:

LIU Guo-bin, GONG Guo-fang, ZHOU Ru-lin, SHI Hu. Parameters accouplement of hydraulic system of
earth pressure balance shield machine. J4, 2011, 45(10): 1809-1814.

URL:

https://www.zjujournals.com/eng/10.3785/j.issn.1008-973X.2011.10.019     OR     https://www.zjujournals.com/eng/Y2011/V45/I10/1809


盾构掘进机液压系统参数匹配特性

在分析盾构掘进机的推进系统和刀盘系统的基础上,推导推进系统压力、刀盘系统压力、推进系统净流量与刀盘系统流量之间的关系,通过实验数据验证了推导模型的正确性.分析土舱内土体的流动连续性,得到螺旋输送机流量、刀盘系统流量、推进系统压力与土舱压力之间的1阶微分方程式,提出以推进压力、土舱压力和刀盘转速的实时数据采样值为输入,螺旋输送机转速为输出的基于排土控制的前馈反馈土压平衡模型.可知,土舱压力是由推进系统压力、刀盘系统流量和螺旋输送机流量多个因素共同决定的.实验表明,前馈反馈控制模型的控制效果较好.

[1] 刘仁鹏.土压平衡盾构技术综述[J].现代隧道技术,2000(1): 1-7.
LIU Renpeng. Review of earth pressure balance shield [J]. Modern Tunnelling Technology, 2000(1): 1-7.

[2] NAITOH K.The development of earth pressure balanced shields in Japan [J]. Tunnels and Tunnelling,1985,17(5): 15-18.
[3] 胡国良,龚国芳,杨华勇.基于压力流量复合控制的盾构推进液压系统[J].机械工程学报,2006,42(6): 124-127.
HU Guoliang,GONG Guofang,YANG Huayong. Thrust hydraulic system of shield tunnel boring machine with pressure and flow compound control [J]. Journal of Mechanical Engineering,2006,42(6): 124-127.
[4] 形彤.盾构刀盘液压驱动与控制系统研究[D].杭州:浙江大学,2008.
XING Tong. Research on hydraulic drive and control system of the cutter head in shield tunneling machine [D]. Hangzhou: Zhejiang University, 2008.
[5] 张厚美,吴秀国,曾伟华.土压平衡式盾构掘进实验及掘进数学模型研究[J].岩石力学与工程学报,2005, 24(2): 5762-5766.
ZHANG Houmei,WU Xiuguo,ZENG Weihua. Study on tunneling experiment and mathematical model of EPB shield [J]. Chinese Journal of Rock Mechanics and Engineering,2005,24(2):5762-5766.
[6] 李镜培,梁发云,赵春风.土力学[M].北京:高等教育出版社,2008: 101-104.
[7] LI Y, EMERIAULT F, KASTNER R, et al. Stability analysis of large slurry shielddriven tunnel in soft clay [J]. Tunneling and Underground Space Technology,2009, 24(4): 472-481.
[8] 刘东亮. EPB盾构掘进的土压控制[J].铁道工程学报,2005,86(2): 47-50.
LIU Dongliang. Soil pressure control for EPB shield excavation [J]. Chinese Journal of Railway Engineering, 2005, 86(2): 47-50.
[9] 李向红,傅德明.土压平衡模型盾构掘进实验研究[J].岩土工程学报,2006,28(9): 1101-1105.
LI Xianghong, FU Deming. Experimental study on excavation behavior using model EPB shield with a diameter of 1.8m [J]. Chinese Journal of Geotechnical Engineering, 2006, 28(9): 1101-1105.
[10] QUEBAUD S, SIBAI M. Use of chemical foam for improvements in drilling by earthpressure balanced shields in granular soils [J]. Tunnelling and Underground Space Technology, 1998, 13(2): 173-180.

[1] DING Chuan, DING Fan, ZHOU Xing, MAN Zai-peng, YANG Can-jun. Design and comparative experimental study of novel pressure-resistant oil-immersed proportional actuator[J]. J4, 2014, 48(3): 451-455.
[2] SONG Yue-chao, XU Bing, YANG Hua-yong, ZHANG Jun-hui. Modified practical approximate method for testing source flow of piston pump[J]. J4, 2014, 48(2): 200-205.
[3] MAN Zai-peng,DING Fan,DING Chuan,LIU Shuo,HUANG Ting-feng. Development and research overview on impulse test of hydraulic hose[J]. J4, 2014, 48(1): 21-28.
[4] SHI Hu, YANG Hua-yong, GONG Guo-fang, HOU Dian-qing. Definition and evaluation method for compliance of thrust hydraulic system for shield tunneling machine[J]. J4, 2013, 47(8): 1444-1449.
[5] HOU Dian-qing, GONG Guo-fang, SHI Hu, WANG Lin-tao. Design of new propulsion system of shield tunneling machine based on compliance characteristics [J]. J4, 2013, 47(7): 1287-1292.
[6] SHI Hu, YANG Hua-yong, GONG Guo-fang, WANG Lin-tao. Key technologies of shield tunneling machine and present status and prospect of test rigs for tunneling simulation [J]. J4, 2013, 47(5): 741-749.
[7] WEI Jian-hua, GUO Kai, XIONG Yi. Synchronized motion control for multi-axis electro-hydraulic system of large equipment[J]. J4, 2013, 47(5): 755-760.
[8] HOU Dian-qing, GONG Guo-fang, SHI Hu, WANG Lin-tao. Compliance characteristics of propulsion system of
shield tunneling machine under sudden load
[J]. J4, 2013, 47(3): 522-527.
[9] ZHU Xu, WEI Jian-hua, FANG Jin-hui. Dynamic characteristics of pilot-operated electro-hydraulic
flow distribution system
[J]. J4, 2013, 47(2): 193-200.
[10] ZHANG Yan-ting, QU Ying-feng, LIU Zhen-dong, MA Jiang-tao. Design of swing device for crown-block heave compensation system[J]. J4, 2012, 46(12): 2268-2273.
[11] DU Heng, WEI Jian-hua, FENG Rui-lin. Modeling, simulation and experimental research
on pressure tracking valve
[J]. J4, 2012, 46(6): 1034-1040.
[12] FANG Jin-hui, WEI Jian-hua, KONG Xiao-wu. Synchronous control strategy for paralleled servo valves[J]. J4, 2012, 46(6): 1054-1059.
[13] MAN Jun , DING Fan , LI Qi-peng , DA Jing , SHAO Sen-yin. Study of high-pressure high-speed on-off solenoid using
permanent magnet shield
[J]. J4, 2012, 46(2): 309-314.
[14] GUAN Cheng, XU Xiao, LIN Xiao, WANG Shou-hong. Recovering system of swing braking energy in hydraulic excavator[J]. J4, 2012, 46(1): 142-149.
[15] HUANG Jia-hai,WEI Jian-hua, QIU Min-xiu. Investigation on the transmission characteristics of hydroviscous drive[J]. J4, 2011, 45(11): 1927-1933.