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Intelligent control method for positioning and sinking of deepwater prefabricated foundation of large bridge
The invention discloses an intelligent control method for positioning and sinking of a large-scale bridge deepwater prefabricated foundation, the upper part of the prefabricated foundation is above the water surface, the lower part of the prefabricated foundation is below the water surface, I positioning devices are mounted on the top surface, J positioning ships are arranged around the prefabricated foundation, I is a natural number greater than or equal to 3, J is a natural number greater than or equal to 4, and J is a natural number greater than or equal to 4. According to the method, the motion equation of the sinking process of the prefabricated foundation under the coupling action of wind, waves and flow is utilized, and the motion posture of the prefabricated foundation is intelligently regulated and controlled by an intelligent regulation and control center through the mooring cables. According to the method, the motion equation of the sinking process of the prefabricated foundation under the coupling action of wind, waves and flow is utilized, the motion posture of the prefabricated foundation is intelligently regulated and controlled by the intelligent regulation and control center through the mooring cable, and the precision, robustness, efficiency and safety of positioning and sinking of the deepwater prefabricated foundation are greatly improved.
本发明公开了一种大型桥梁深水预制基础定位沉放智能控制方法,预制基础的上部在水面之上,下部在水面之下,顶面安装I个定位装置,四周布置J艘定位船舶,其中,I为大于或等于3的自然数,J为大于或等于4的自然数,定位船舶通过系泊缆索连接于预制基础,该方法是利用风、浪、流耦合作用下预制基础沉放过程的运动方程,由智能调控中心通过系泊缆索对预制基础的运动姿态进行智能调控。本发明利用风、浪、流耦合作用下预制基础沉放过程的运动方程,由智能调控中心通过系泊缆索对预制基础的运动姿态进行智能调控,大幅提高深水预制基础定位沉放的精度、鲁棒性、效率和安全。
Intelligent control method for positioning and sinking of deepwater prefabricated foundation of large bridge
The invention discloses an intelligent control method for positioning and sinking of a large-scale bridge deepwater prefabricated foundation, the upper part of the prefabricated foundation is above the water surface, the lower part of the prefabricated foundation is below the water surface, I positioning devices are mounted on the top surface, J positioning ships are arranged around the prefabricated foundation, I is a natural number greater than or equal to 3, J is a natural number greater than or equal to 4, and J is a natural number greater than or equal to 4. According to the method, the motion equation of the sinking process of the prefabricated foundation under the coupling action of wind, waves and flow is utilized, and the motion posture of the prefabricated foundation is intelligently regulated and controlled by an intelligent regulation and control center through the mooring cables. According to the method, the motion equation of the sinking process of the prefabricated foundation under the coupling action of wind, waves and flow is utilized, the motion posture of the prefabricated foundation is intelligently regulated and controlled by the intelligent regulation and control center through the mooring cable, and the precision, robustness, efficiency and safety of positioning and sinking of the deepwater prefabricated foundation are greatly improved.
本发明公开了一种大型桥梁深水预制基础定位沉放智能控制方法,预制基础的上部在水面之上,下部在水面之下,顶面安装I个定位装置,四周布置J艘定位船舶,其中,I为大于或等于3的自然数,J为大于或等于4的自然数,定位船舶通过系泊缆索连接于预制基础,该方法是利用风、浪、流耦合作用下预制基础沉放过程的运动方程,由智能调控中心通过系泊缆索对预制基础的运动姿态进行智能调控。本发明利用风、浪、流耦合作用下预制基础沉放过程的运动方程,由智能调控中心通过系泊缆索对预制基础的运动姿态进行智能调控,大幅提高深水预制基础定位沉放的精度、鲁棒性、效率和安全。
Intelligent control method for positioning and sinking of deepwater prefabricated foundation of large bridge
大型桥梁深水预制基础定位沉放智能控制方法
LIU GAO (Autor:in) / WEN JIANIAN (Autor:in) / CHEN SHANGYOU (Autor:in) / ZHANG XIAOYU (Autor:in) / WANG KUNPENG (Autor:in)
13.06.2023
Patent
Elektronische Ressource
Chinesisch
IPC:
E02D
FOUNDATIONS
,
Gründungen
/
G01C
Messen von Entfernungen, Höhen, Neigungen oder Richtungen
,
MEASURING DISTANCES, LEVELS OR BEARINGS
/
G01S
RADIO DIRECTION-FINDING
,
Funkpeilung
/
G06F
ELECTRIC DIGITAL DATA PROCESSING
,
Elektrische digitale Datenverarbeitung
/
G06N
COMPUTER SYSTEMS BASED ON SPECIFIC COMPUTATIONAL MODELS
,
Rechnersysteme, basierend auf spezifischen Rechenmodellen
/
G16Y
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