The Experts below are selected from a list of 120 Experts worldwide ranked by ideXlab platform
Lumeng Huang - One of the best experts on this subject based on the ideXlab platform.
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Study on the Control Strategies of Offshore Drilling Crown-Block Heave Compensation System With Compound Cylinders
IEEE Access, 2020Co-Authors: Yanting Zhang, Xiaoguang Yu, Jingkai Chen, Zhikun Wang, Dingya Wang, Mingxing Duan, Xinming Mu, Lumeng HuangAbstract:To overcome the effect of floating platform heave motion on the drilling operation, a new Crown-Block heave compensation system with compound cylinders is developed. The new heave compensation system has certain advantages, such as low derrick, short hydraulic pipeline, compact structure, easy operation, etc. The numerical calculation functions of the new heave compensation system are established based on the theories of fluid dynamics and theoretical mechanics. The entire model was built using the Simulink module of MATLAB with a hierarchical structure. As the core component of the compensation system, four control strategies are established to improve the compensation performance, including the PID control, fuzzy control, fuzzy PID control, and Terminal Sliding Mode (TSM) control. Laboratory equipment with a ratio of 1:5 to the new compensation system was designed and developed. The simulation and experimental results show that the new compensation system achieves a good compensation rate of more than 90% under different heave conditions. Among these four strategies, the TSM control strategy generates the highest compensation rate and lowest power fluctuation for the compensation cylinders.
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Rocker Arm Force Analysis of Crown-Block Heave Compensation System Based on ADAMS
Applied Mechanics and Materials, 2017Co-Authors: Zhen Dong Liu, Yanting Zhang, Lumeng Huang, Kang Wang, Ming Bin ShiAbstract:This paper compares three common installation ways of swing arm and carries out simulation analysis by using Adams software. The research results show that when using intercrossed enwinding wirerope, the swing arm will bear alternating load and the load variation range is huge, load G’ will change obviously and bring great impact on system control precision. When using along enwinding wirerope, the swing arm’s load is slightly bigger than wirerope tension and the load variation range is very small, load G’ will be static and it’s easy to get high control precision. By reducing the length of lower swing arm, increasing the length of upper swing arm and the offset distance, its working condition can be improved when using intercrossed enwinding wirerope.
Yanting Zhang - One of the best experts on this subject based on the ideXlab platform.
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Study on the Control Strategies of Offshore Drilling Crown-Block Heave Compensation System With Compound Cylinders
IEEE Access, 2020Co-Authors: Yanting Zhang, Xiaoguang Yu, Jingkai Chen, Zhikun Wang, Dingya Wang, Mingxing Duan, Xinming Mu, Lumeng HuangAbstract:To overcome the effect of floating platform heave motion on the drilling operation, a new Crown-Block heave compensation system with compound cylinders is developed. The new heave compensation system has certain advantages, such as low derrick, short hydraulic pipeline, compact structure, easy operation, etc. The numerical calculation functions of the new heave compensation system are established based on the theories of fluid dynamics and theoretical mechanics. The entire model was built using the Simulink module of MATLAB with a hierarchical structure. As the core component of the compensation system, four control strategies are established to improve the compensation performance, including the PID control, fuzzy control, fuzzy PID control, and Terminal Sliding Mode (TSM) control. Laboratory equipment with a ratio of 1:5 to the new compensation system was designed and developed. The simulation and experimental results show that the new compensation system achieves a good compensation rate of more than 90% under different heave conditions. Among these four strategies, the TSM control strategy generates the highest compensation rate and lowest power fluctuation for the compensation cylinders.
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Rocker Arm Force Analysis of Crown-Block Heave Compensation System Based on ADAMS
Applied Mechanics and Materials, 2017Co-Authors: Zhen Dong Liu, Yanting Zhang, Lumeng Huang, Kang Wang, Ming Bin ShiAbstract:This paper compares three common installation ways of swing arm and carries out simulation analysis by using Adams software. The research results show that when using intercrossed enwinding wirerope, the swing arm will bear alternating load and the load variation range is huge, load G’ will change obviously and bring great impact on system control precision. When using along enwinding wirerope, the swing arm’s load is slightly bigger than wirerope tension and the load variation range is very small, load G’ will be static and it’s easy to get high control precision. By reducing the length of lower swing arm, increasing the length of upper swing arm and the offset distance, its working condition can be improved when using intercrossed enwinding wirerope.
Xinming Mu - One of the best experts on this subject based on the ideXlab platform.
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Study on the Control Strategies of Offshore Drilling Crown-Block Heave Compensation System With Compound Cylinders
IEEE Access, 2020Co-Authors: Yanting Zhang, Xiaoguang Yu, Jingkai Chen, Zhikun Wang, Dingya Wang, Mingxing Duan, Xinming Mu, Lumeng HuangAbstract:To overcome the effect of floating platform heave motion on the drilling operation, a new Crown-Block heave compensation system with compound cylinders is developed. The new heave compensation system has certain advantages, such as low derrick, short hydraulic pipeline, compact structure, easy operation, etc. The numerical calculation functions of the new heave compensation system are established based on the theories of fluid dynamics and theoretical mechanics. The entire model was built using the Simulink module of MATLAB with a hierarchical structure. As the core component of the compensation system, four control strategies are established to improve the compensation performance, including the PID control, fuzzy control, fuzzy PID control, and Terminal Sliding Mode (TSM) control. Laboratory equipment with a ratio of 1:5 to the new compensation system was designed and developed. The simulation and experimental results show that the new compensation system achieves a good compensation rate of more than 90% under different heave conditions. Among these four strategies, the TSM control strategy generates the highest compensation rate and lowest power fluctuation for the compensation cylinders.
Mingxing Duan - One of the best experts on this subject based on the ideXlab platform.
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Study on the Control Strategies of Offshore Drilling Crown-Block Heave Compensation System With Compound Cylinders
IEEE Access, 2020Co-Authors: Yanting Zhang, Xiaoguang Yu, Jingkai Chen, Zhikun Wang, Dingya Wang, Mingxing Duan, Xinming Mu, Lumeng HuangAbstract:To overcome the effect of floating platform heave motion on the drilling operation, a new Crown-Block heave compensation system with compound cylinders is developed. The new heave compensation system has certain advantages, such as low derrick, short hydraulic pipeline, compact structure, easy operation, etc. The numerical calculation functions of the new heave compensation system are established based on the theories of fluid dynamics and theoretical mechanics. The entire model was built using the Simulink module of MATLAB with a hierarchical structure. As the core component of the compensation system, four control strategies are established to improve the compensation performance, including the PID control, fuzzy control, fuzzy PID control, and Terminal Sliding Mode (TSM) control. Laboratory equipment with a ratio of 1:5 to the new compensation system was designed and developed. The simulation and experimental results show that the new compensation system achieves a good compensation rate of more than 90% under different heave conditions. Among these four strategies, the TSM control strategy generates the highest compensation rate and lowest power fluctuation for the compensation cylinders.
Dingya Wang - One of the best experts on this subject based on the ideXlab platform.
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Study on the Control Strategies of Offshore Drilling Crown-Block Heave Compensation System With Compound Cylinders
IEEE Access, 2020Co-Authors: Yanting Zhang, Xiaoguang Yu, Jingkai Chen, Zhikun Wang, Dingya Wang, Mingxing Duan, Xinming Mu, Lumeng HuangAbstract:To overcome the effect of floating platform heave motion on the drilling operation, a new Crown-Block heave compensation system with compound cylinders is developed. The new heave compensation system has certain advantages, such as low derrick, short hydraulic pipeline, compact structure, easy operation, etc. The numerical calculation functions of the new heave compensation system are established based on the theories of fluid dynamics and theoretical mechanics. The entire model was built using the Simulink module of MATLAB with a hierarchical structure. As the core component of the compensation system, four control strategies are established to improve the compensation performance, including the PID control, fuzzy control, fuzzy PID control, and Terminal Sliding Mode (TSM) control. Laboratory equipment with a ratio of 1:5 to the new compensation system was designed and developed. The simulation and experimental results show that the new compensation system achieves a good compensation rate of more than 90% under different heave conditions. Among these four strategies, the TSM control strategy generates the highest compensation rate and lowest power fluctuation for the compensation cylinders.