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作 者:李友兴[1,2] 董宗正[3] 刘永胜[1,2] 樊春明[1,2] LI You-xing;DONG Zong-zheng;LIU Yong-sheng;FAN Chun-ming(National Oil and Gas Drilling Equipment Research Center, Chengdu 610052, China;BaoJi Oilfi eld Machinery Co.,Ltd., Baoji 721000, China;Mechatronic Engineering College, Southwest Petroleum University, Chengdu 610500, China)
机构地区:[1]国家油气钻井装备工程技术中心,成都610052 [2]宝鸡石油机械有限责任公司,宝鸡721000 [3]西南石油大学机电工程学院,成都610500
出 处:《船舶》2016年第6期87-93,共7页Ship & Boat
基 金:国家高技术研究发展计划(863计划)"深水钻机与管柱自动化处理关键技术研究"(2012AA09A203)
摘 要:针对调试试验出现的踢出装置不同步问题,从原理和工况两个方面分析原因,建立压力损失数学模型并进行计算,通过对比评估影响因素的影响程度;分析并提出管路等长、增大管径、加装分流集流阀等三种解决方案;运用AMESim软件仿真与数值分析两种方法对比分析不同方案的同步效果并进行了实验验证。结果表明加装分流阀是解决踢出装置同步问题有效途径之一,AMESim能用于液压系统性能分析,且方便快捷、可靠性高。The reasons possibly cause the asynchrony of kick-out facility during the debugging trials are analyzed from the two aspects of the fundamentals and operation conditions. The mathematical pressure loss model is established and calculated to evaluate the effect of the influence factors by comparison. It analyzes and puts forward the three different solutions including the equal pipe length, the enlargement of pipe diameter and the installation of flow distributing and collecting valve. The synchronization of three different solutions are compared and analyzed by AMESim software and numerical calculation, and are verified by experiments. The results indicate that the installation of the distributing valve is one of the effective ways to solve the synchrony problem for the kick-out facility. AMESim is convenient and reliable for the performance analysis of the hydraulic system.
分 类 号:TE95[石油与天然气工程—石油机械设备]
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