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高油压水轮机微机调速器液动换向阀卡阻的改造方法 被引量:1
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作者 李忠湖 《浙江水利水电专科学校学报》 2012年第2期67-68,共2页
目前中小型液压调速器广泛采用可编程控制随动技术.这种调速器与机械液压型调速器和电气液压型调速器相比,调速器体积小,运行性能可靠,调节稳定性好,调速功率大.液压件采用标准化的数字阀式液压元件,集成化程度高.针对此类高油压水轮机... 目前中小型液压调速器广泛采用可编程控制随动技术.这种调速器与机械液压型调速器和电气液压型调速器相比,调速器体积小,运行性能可靠,调节稳定性好,调速功率大.液压件采用标准化的数字阀式液压元件,集成化程度高.针对此类高油压水轮机微机调速器的液动换向阀卡阻造成调速器无法关机问题,通过增设一套紧急停机后备保护装置作为改造方法.改造后的调速器性能良好,运行可靠,保证了水电站机电设备的运行安全. 展开更多
关键词 高油压微机调速器 数字阀式机械液压随系统 换向阀卡
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大直径管桩沉桩过程中溜桩判断方法研究 被引量:7
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作者 孙立强 贾天强 +1 位作者 闫澍旺 贾沼霖 《中国石油大学学报(自然科学版)》 EI CAS CSCD 北大核心 2016年第2期115-122,共8页
海洋工程中大直径管桩沉桩过程中常会出现溜桩现象,未经预料的溜桩会引起很多严重的工程问题,有必要对溜桩段进行准确判断。结合实际工程对溜桩产生及停止的机制进行分析;通过研究沉桩过程中桩周土体强度折减及超孔压的作用,提出动贯入... 海洋工程中大直径管桩沉桩过程中常会出现溜桩现象,未经预料的溜桩会引起很多严重的工程问题,有必要对溜桩段进行准确判断。结合实际工程对溜桩产生及停止的机制进行分析;通过研究沉桩过程中桩周土体强度折减及超孔压的作用,提出动贯入阻力的计算方法;利用功、能原理对溜桩过程中所发生的能量转化进行分析,并推导相应计算公式,结合动贯入阻力计算方法,实现对溜桩过程的预测。结果表明,当桩端进入深厚砂土层或动侧摩阻力达到一定值时溜桩将逐渐停止,若是后者则再次打桩后不再发生溜桩现象。计算动侧摩阻时须考虑沉桩过程中扩孔效应和循环荷载作用。计算结果与现场实测数据吻合较好。 展开更多
关键词 溜桩 侧摩 强度折减 孔压 重塑强度
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射流式脉冲短节设计及测试研究 被引量:1
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作者 赵润琦 《钻采工艺》 CAS 北大核心 2021年第6期97-101,共5页
射流式脉冲短节是射流式水力振荡器主要部件,射流式脉冲短节设计对射流式水力振荡器研制具有重要意义。文章针对射流式脉冲短节结构与工作原理,建立了活塞杆力学分析模型,推导了射流式脉冲短节动阻比公式,进行了122 mm射流式脉冲短节结... 射流式脉冲短节是射流式水力振荡器主要部件,射流式脉冲短节设计对射流式水力振荡器研制具有重要意义。文章针对射流式脉冲短节结构与工作原理,建立了活塞杆力学分析模型,推导了射流式脉冲短节动阻比公式,进行了122 mm射流式脉冲短节结构参数设计室内测试。研究结果表明,活塞杆下冲程受到射流元件驱动力和节流盘负载驱动双重作用,可以稳定下行;活塞杆上冲程射流元件驱动力与节流盘负载作用力方向相反,射流驱动力需要大于节流盘负载阻力才能稳定上行;通过优化活塞杆与节流盘结构参数,122 mm射流式脉冲短节在射流喷速50 m/s下即可稳定工作,脉冲幅值提高1~3 MPa,工具压降保持在3 MPa以内。 展开更多
关键词 射流式脉冲短节 射流元件 射流脉冲幅值 动阻比 节流盘优化设计
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Experimental study on mechanical properties of basalt fiber-reinforced silty clay 被引量:2
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作者 JIA Yu ZHANG Jia-sheng +3 位作者 WANG Xuan DING Yu CHEN Xiao-bin LIU Tao 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第6期1945-1956,共12页
Fiber reinforcement technology can significantly improve the mechanical properties of soil and has been increasingly applied in geotechnical engineering.Basalt fiber is a new kind of environment-friendly and highperfo... Fiber reinforcement technology can significantly improve the mechanical properties of soil and has been increasingly applied in geotechnical engineering.Basalt fiber is a new kind of environment-friendly and highperformance soil reinforcement material,and the mechanical properties of basalt fiber-reinforced soil have become a hot research topic.In this paper,we conducted monotonic triaxial and cyclic triaxial tests,and analyzed the influence of the fiber content,moisture content,and confining pressure on the shear characteristics,dynamic modulus,and damping ratio of basalt fiber-reinforced silty clay.The results illustrate that basalt fiber can enhance the shear strength of silty clay by increasing its cohesion.We find that the shear strength of reinforced silty clay reaches its maximum when the fiber content is approximately 0.2%and the moisture content is 18.5%(optimum moisture content).Similarly,we also find that the dynamic modulus that corresponds to the same strain first increases then decreases with increasing fiber content and moisture content and reaches its maximum when the fiber content is approximately 0.2%and the moisture content is 18.5%.The dynamic modulus is positively correlated with the confining pressure.However,the change in the damping ratio with fiber content,moisture content,and confining pressure is opposite to that of the dynamic modulus.It can be concluded that the optimum content of basalt fiber for use in silty clay is 0.2%.After our experiments,we used scanning electron microscope(SEM)to observe the microstructure of specimens with different fiber contents,and our results show that the gripping effect and binding effect are the main mechanisms of fiber reinforcement. 展开更多
关键词 basalt fiber-reinforced silty clay shear behavior dynamic modulus damping ratio optimum fiber content
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Research and Simulation on Weak Signal Detection Based on Duffing Oscillator and Damping Ratio Perturbation 被引量:1
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作者 张敏 刘志珍 +2 位作者 曹艳 段嗣昊 张连明 《Journal of Measurement Science and Instrumentation》 CAS 2011年第2期161-163,共3页
The chaotic system is sensitive to the initial value, and this can be applied in the weak signal detection. There are periodic, critical and chaotic states in a chaotic system. When the system is in the critical stat... The chaotic system is sensitive to the initial value, and this can be applied in the weak signal detection. There are periodic, critical and chaotic states in a chaotic system. When the system is in the critical state, a small perturbation of system,n parameter may lead to a qualitative change of the system's state. This paper introduces a new method to detect weak signals by the way of disturbing the damping ratio. The authors choose the duffing equation, using MATLAB to carry on the simulation, to study the changes of the system when the signal to be measured is added to the damping ratio. By means of observing the phase loots chart and time damin chart, the weak signal will be detected. 展开更多
关键词 chaotic system duffing oscillator damping ratio signal detection
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Shear modulus and damping ratio of sand-granulated rubber mixtures 被引量:11
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作者 M.Ehsani N.Shariatmadari S.M.Mirhosseini 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第8期3159-3167,共9页
Recycled waste tires when mixed with soil can play an important role as lightweight materials in retaining walls and embankments, machine foundations and railroad track beds in seismic zones. Having high damping chara... Recycled waste tires when mixed with soil can play an important role as lightweight materials in retaining walls and embankments, machine foundations and railroad track beds in seismic zones. Having high damping characteristic, rubbers can be used as either soil alternative or mixed with soil to reduce vibration when seismic loads are of great concern. Therefore, the objective of this work was to evaluate the dynamic properties of such mixtures prior to practical applications. To this reason, torsional resonant column and dynamic triaxial experiments were carried out and the effect of the important parameters like rubber content and ratio of mean grain size of rubber solids versus soil solids(D50,r/D50,s) on dynamic response of mixtures in a range of low to high shearing strain amplitude from about 4×10-4% to 2.7% were investigated. Considering engineering applications, specimens were prepared almost at the maximum dry density and optimum moisture content to model a mixture layer above the ground water table and in low precipitation region. The results show that tire inclusion significantly reduces the shear modulus and increases the damping ratio of the mixtures. Also decrease in D50,r/D50,s causes the mixture to exhibit more rubber-like behavior. Finally, normalized shear modulus versus shearing strain amplitude curve was proposed for engineering practice. 展开更多
关键词 sand-rubber mixture shear modulus damping ratio low to high shear strain amplitude cyclic triaxial test torsionalresonant column test granular rubber
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Hilbert-Huang transform based noise filtering for the identification of structural systems
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作者 LIN Jeng-wen HUANG Chih-wei 《Journal of Civil Engineering and Architecture》 2009年第3期1-10,共10页
This paper proposes an enhanced noise filtering technique to the Hilbert-Huang transformation technology for the identification of structural systems using vibration measurements. The Hilbert-Huang transformation tech... This paper proposes an enhanced noise filtering technique to the Hilbert-Huang transformation technology for the identification of structural systems using vibration measurements. The Hilbert-Huang transformation technology is a set of superior algorithms non-stationary signals and also for analyzing non-linear and offers increased accuracy for linear and stationary signals. However, the signals are filtered by reconstruction from "'selected" intrinsic mode functions (IMFs), derived from the original signal through the empirical mode decomposition method. The proposed filtering technique offers the criterion for selecting the IMFs using the orthogonalization coefficient. In addition, a simple free vibration modal analysis has been resolved for the evaluation of the modal damping ratio. Through the enhanced filtering, it is possible to increase the accuracy for the estimation of the time-varying system's natural frequency and the damping ratio, indicative of the degree of damage, which helps an effective design of a control system. 展开更多
关键词 Hilbert-Huang transformation empirical mode decomposition orthogonalization coefficient modal analysis
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超大型沉井基础下沉中后期摩阻力特性及突沉机制研究 被引量:15
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作者 施洲 李思阳 +1 位作者 杨仕力 冯传宝 《岩石力学与工程学报》 EI CAS CSCD 北大核心 2019年第S02期3894-3904,共11页
针对平面面积不断增大的超大型沉井基础在下沉施工中后期因摩阻力增大导致的滞沉、突沉等问题,基于沉井下沉期间井底端阻力、刃脚埋深摩阻力、侧壁摩阻力等受力组成的理论研究,提出计算静、动摩阻系数的理论公式。以五峰山长江大桥沉井... 针对平面面积不断增大的超大型沉井基础在下沉施工中后期因摩阻力增大导致的滞沉、突沉等问题,基于沉井下沉期间井底端阻力、刃脚埋深摩阻力、侧壁摩阻力等受力组成的理论研究,提出计算静、动摩阻系数的理论公式。以五峰山长江大桥沉井基础为对象,结合现场实测数据与理论计算结果研究下沉中后期的阻力特征及突沉机制,并探讨突沉控制对策。研究结果表明:侧壁摩阻力随下沉深度增加而增大,在下沉中后期约占总阻力的70%以上,是滞沉的主导因素;基底开挖不均匀及局部过挖时,瞬时静、动摩阻力变化力差是引起突沉的关键因素;根据多次突沉前后实测数据计算得到的静、动摩阻系数分别介于0.444~0.525,0.245~0.401,动摩阻系数为突沉前瞬间静摩阻系数的0.56~0.77倍,导致了显著的不平衡下沉力带动沉井瞬间加速下沉;空气幕及降水等措施有效降低静摩阻系数至0.225~0.325,提升下沉系数至1.10以上,是避免滞沉、突沉的关键措施。 展开更多
关键词 基础工程 沉井基础 下沉摩 突沉机制 系数 助沉措施
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