机械工程学报
機械工程學報
궤계공정학보
CHINESE JOURNAL OF MECHANICAL ENGINEERING
2014年
21期
105-110
,共6页
土压平衡盾构%密封舱压力%多系统协调控制%模型预测控制
土壓平衡盾構%密封艙壓力%多繫統協調控製%模型預測控製
토압평형순구%밀봉창압력%다계통협조공제%모형예측공제
earth pressure balance shield machine%chamber%multi-system coordination control%model predictive control
掘进面地层水土压力和密封舱压力相平衡是盾构机安全掘进的关键,密封舱压力控制是当前盾构研究的热点。研究根据场切深指数(Field penetration index, FPI)及扭矩切深指数(Torque penetration index, TPI)指标判断土体参数,实现地质的在线识别,为盾构机推力、扭矩和推进速度的设定提供依据。根据质量守恒定律并考虑盾构密封舱渣土的可松性,建立土压平衡盾构密封舱压力控制机理模型,并通过模型预测控制器进行多系统协调控制。对比常规比例-积分-微分(Proportion-integration-differentiation, PID)控制器,多系统协调控制具有更优的控制性能,使盾构机处于工况稳定,掘进快速,节能高效的理想状态。
掘進麵地層水土壓力和密封艙壓力相平衡是盾構機安全掘進的關鍵,密封艙壓力控製是噹前盾構研究的熱點。研究根據場切深指數(Field penetration index, FPI)及扭矩切深指數(Torque penetration index, TPI)指標判斷土體參數,實現地質的在線識彆,為盾構機推力、扭矩和推進速度的設定提供依據。根據質量守恆定律併攷慮盾構密封艙渣土的可鬆性,建立土壓平衡盾構密封艙壓力控製機理模型,併通過模型預測控製器進行多繫統協調控製。對比常規比例-積分-微分(Proportion-integration-differentiation, PID)控製器,多繫統協調控製具有更優的控製性能,使盾構機處于工況穩定,掘進快速,節能高效的理想狀態。
굴진면지층수토압력화밀봉창압력상평형시순구궤안전굴진적관건,밀봉창압력공제시당전순구연구적열점。연구근거장절심지수(Field penetration index, FPI)급뉴구절심지수(Torque penetration index, TPI)지표판단토체삼수,실현지질적재선식별,위순구궤추력、뉴구화추진속도적설정제공의거。근거질량수항정률병고필순구밀봉창사토적가송성,건립토압평형순구밀봉창압력공제궤리모형,병통과모형예측공제기진행다계통협조공제。대비상규비례-적분-미분(Proportion-integration-differentiation, PID)공제기,다계통협조공제구유경우적공제성능,사순구궤처우공황은정,굴진쾌속,절능고효적이상상태。
The most important part of the excavation for earth pressure balance (EPB) shield machine is keeping the earth pressure and the water-earth pressure underground in balance, and the earth pressure in chamber has recently become a research focus. The on-line recognition of soil mass can be realized according to the field penetration index (FPI) and torque penetration index (TPI), and the soil parameters can be used for setting the thrust, torque and advance rate of shield machine. An earth pressure control model for chamber is built based on the law of mass conservation and the performance of the residue earth. In this model, multi-system coordination control is applied with model predictive controller. Setting a target for advance rate of shield machine in the design of the model predictive controller is a way to operate the advance rate and rotation speed of the screw conveyor at the same time. Compared to the conventional PID controller, model predictive controller has a better performance.