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Design and simulation research of riser flexible hang-off system based on variable damping for drilling platform to avoid typhoon

机译:基于变量阻尼的钻井平台避免台风的立管柔性换热系统的设计与仿真研究

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摘要

Inspired by the technical characteristics of the two modes of hard hang-off and soft hang-off commonly used when hanging risers on drilling platforms to avoid typhoons, a new riser flexible hang-off scheme is proposed to compensate the riser heave dynamic load. The mechanical mechanism of riser flexible hang-off is designed. Two compensation strategies are proposed, including the proportional compensation strategy and the back-pressure variable damping compensation strategy. Aiming at the control method of the compensation strategy of back-pressure variable damping with better compensation effect, the hydraulic system scheme of riser flexible hang-off is designed. In order to verify the feasibility of the hydraulic system, the compensation performance of the riser flexible hang-off scheme subjected to the designed hydraulic system is investigated using Simulink software. The results show that the riser flexible hang-off compensates riser heave dynamic load by 30% under the once-in-a-decade sea conditions in the Western Pacific Ocean. The filling pressure of the gas cylinder and the displacement - voltage gain of the throttle valve are critical to on the system performance. The proposed new riser flexible hang-off system casts light on an alternative compensation for drilling platform to avoid typhoon.
机译:灵感灵感来自两种硬盘脱落和软吊液的技术特征,常用于钻孔平台上的立管避免Typhoons时,提出了一种新的提升机柔性悬停方案,以补偿提升管升降动态负荷。设计了立管柔性挂断的机制。提出了两项​​薪酬策略,包括比例补偿策略和背压变量阻尼补偿策略。旨在通过更好的补偿效果进行后压变量阻尼补偿策略的控制方法,设计了提升机柔性垂直的液压系统方案。为了验证液压系统的可行性,使用Simulink软件研究了经过设计的液压系统的提升机柔性悬扰方案的补偿性能。结果表明,在西太平洋的一截止数十年海洋状况下,立管柔性悬挂式补偿了升降机升起动态负荷30%。气缸的填充压力和节流阀的位移 - 电压增益对系统性能至关重要。提出的新立管柔性悬挂式系统在钻孔平台的替代补偿上投射了光线,以避免台风。

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  • 来源
    《Oceanographic Literature Review》 |2021年第9期|2095-2095|共1页
  • 作者

    Z. Wang; Y. Zhang; R. Wang;

  • 作者单位

    College of Mechanical and Electronic Engineering China University of Petroleum Qingdao Shandong 266580 China;

    College of Mechanical and Electronic Engineering China University of Petroleum Qingdao Shandong 266580 China;

    College of Mechanical and Electronic Engineering China University of Petroleum Qingdao Shandong 266580 China;

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