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STRETCH AND ROTATION OF A SUSPENDED CABLE SUBJECT TO TRANSVERSE FLUID EXCITATION
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作者 JIN Dong-ping(金栋平) +1 位作者 HU Hai-yan(胡海岩) 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2001年第8期940-946,共7页
On the basis of analysis of the fluid drag acting on a suspended cable subjected to transverse fluid excitation, an expression is established for the fluid forces applied on the cable. By using a coordinate transform,... On the basis of analysis of the fluid drag acting on a suspended cable subjected to transverse fluid excitation, an expression is established for the fluid forces applied on the cable. By using a coordinate transform, the equations of motion of the cable are simplified into those in terms of the stretch and rotation coordinates. In the case of small ratio of sag-to-span, a study is made on the fluid-induced vibration behavior of the cable, including the critical fluid flow speed, the stability of equilibrium position, as well as the influences of gravitational parameter on the cable dynamics. 展开更多
关键词 CABLE fluid-induced vibration stability
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Effect and sensitivity analysis of the rotational speed on the fluid-induced force characteristics of the straight-through labyrinth gas seal 被引量:1
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作者 王庆峰 He Lidong 《High Technology Letters》 EI CAS 2018年第1期62-74,共13页
The effects of the rotational speed on the fluid-induced force characteristics of a straight-through labyrinth gas seal( STLGS) are numerically investigated using the steady computational fluid dynamics( CFD) method b... The effects of the rotational speed on the fluid-induced force characteristics of a straight-through labyrinth gas seal( STLGS) are numerically investigated using the steady computational fluid dynamics( CFD) method based on a three-dimensional model of the STLGS. The fluid-induced force characteristics of the STLGS for five rotational speeds at a pressure drop of △P = 5000 Pa with and without eccentricity are computed. The grid density analysis ensures the accuracy of the present steady-CFD method. The effect and sensitivity analysis show that the changes in rotational speed affect the pressure forces,viscous forces and total pressure distributions on the rotor surface,velocity streamlines,leakage flow rates,and maximum flow velocities. The results indicate that the rotational speed inhibits the pressure forces,leakage flow rates and maximum flow velocities and promotes the viscous forces and total pressure on the rotor surface. 展开更多
关键词 LABYRINTH SEAL fluid-induced FORCE ROTATIONAL SPEED COMPUTATIONAL fluid dynam-ics (CFD) sensitivity analysis
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Effects of Four Types of Pre-swirls on the Leakage, Flow Field, and Fluid-Induced Force of the Rotary Straight-through Labyrinth Gas Seal 被引量:2
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作者 Qingfeng Wang Lidong He 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2019年第3期119-133,共15页
The labyrinth seal in turbomachinery is a key element that restricts leakage flow among rotor-stator clearances from high-pressure regions to low-pressure regions. The fluid-induced forces on the rotor from seals duri... The labyrinth seal in turbomachinery is a key element that restricts leakage flow among rotor-stator clearances from high-pressure regions to low-pressure regions. The fluid-induced forces on the rotor from seals during machine operation must be accurately quantified to predict their dynamic behavior effectively. To understand the fluid-induced force characteristics of the labyrinth seal more fully, the effects of four types of pre-swirls on the leakage, flow field, and fluid-induced force of a rotary straight-through labyrinth gas seal (RSTLGS) were numerically investigated using the proposed steady computational fluid dynamics (CFD) method based on the three-dimensional models of the RSTLGS. The leakage, flow field, and fluid-induced force of the RSTLGS for six axial pre-swirl velocities, four radial preswirl angles, four circumferential positive pre-swirl angles, and four circumferential negative pre-swirl angles were computed under the same geometrical parameters and operational conditions. Mesh analysis ensures the accuracy of the present steady CFD method. The numerical results show that the four types of pre-swirls influence the leakage, flow field, and fluid-induced force of the RSTLGS. The axial pre-swirl velocity remarkably inhibits the fluid-induced force, and the circumferential positive pre-swirl angle and circumferential negative pre-swirl angle remarkably promote the fluid-induced force. The effects of the radial pre-swirl angle on the fluid-induced force are complicated, and the pressure forces and viscous forces show the maximum or minimum values at a specific radial pre-swirl angle. The pre-swirl has a negligible impact on the leakage. The four types of pre-swirls affect the leakage, flow field, and fluidinduced force of the RSTLGS to varying degrees. The pre-swirl is the influence factor affecting the leakage, flow field, and fluid-induced force of the RSTLGS. The conclusions will help to understand the fluid-induced force of labyrinth seals more fully, by providing helpful suggestions for engi 展开更多
关键词 ROTARY straight-through LABYRINTH gas SEAL PRE-SWIRL LEAKAGE Flow field fluid-induced FORCE
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Review: Prediction of Unexpected Fluid-Induced Vibration in Pipeline Network
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作者 Ryuhei Yamaguchi Makoto Ohta 《World Journal of Mechanics》 2022年第2期17-40,共24页
This review considers unexpected destructive disasters involving fluid power plants, such as nuclear electric power plants and fluid power plants. It specifically addresses the possibility of fluid vibration induced i... This review considers unexpected destructive disasters involving fluid power plants, such as nuclear electric power plants and fluid power plants. It specifically addresses the possibility of fluid vibration induced in a pipeline network of such a plant. The authors investigate the flow oscillation induced within a T-junction for laminar steady flow at a Reynolds number less than 10<sup>3</sup> and clarify that there is a periodic fluid oscillation with a constant Strouhal number independent of several flow conditions. Generally, a nuclear electric power plant is constructed using straight pipes, elbows, and T-junctions. Indeed, a T-Junction is a basic fluid element of a pipeline network. The flow in a fluid power plant is turbulent. There are peculiar flow phenomena that occur at high Reynolds numbers, which are also seen in other flow situations;e.g., Kaman vortices are observed around a circular cylinder in low Reynolds numbers, around structures like bridges and downstream of islands in oceans. Although the flow situation of a T-junction and elbow in a fluid power plant, such as the fluid suddenly changing its flow direction is turbulent flow, the authors mention the possibility of the fluid-induced vibration of a pipeline network. 展开更多
关键词 fluid-induced Vibration Flow Oscillation Tube Flow Laminar Steady Flow fluid Power Plant
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Universality of Periodic Oscillation Induced in Side Branch of a T-Junction in Numerical Simulation 被引量:1
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作者 Ryuhei Yamaguchi Gaku Tanaka +3 位作者 Tadashi Nakagawa Atsushi Shirai Hao Liu Toshiyuki Hayase 《Journal of Flow Control, Measurement & Visualization》 2017年第4期73-85,共13页
The flow instability through the side branch of a T-junction is analyzed in a numerical simulation. In a previous experimental study, the authors clarified the mechanism of fluid-induced vibration in the side branch o... The flow instability through the side branch of a T-junction is analyzed in a numerical simulation. In a previous experimental study, the authors clarified the mechanism of fluid-induced vibration in the side branch of the T-junction in laminar steady flow through the trunk. However, in that approach there were restrictions with respect to extracting details of flow behavior such as the flow instability and the distribution of wall shear stress along the wall. Here the spatial growth of the velocity perturbation at the upstream boundary of the side branch is investigated. The simulation result indicates that a periodic velocity fluctuation introduced at the upstream boundary is amplified downstream, in good agreement with experimental result. The fluctuation in wall shear stress because of the flow instability shows local extrema in both the near and distal walls. From the numerical simulation, the downstream fluid oscillation under a typical condition has a Strouhal number of 1.05, which approximately agrees with the value obtained in experiments. Therefore, this periodic oscillation motion is a universal phenomenon in the side branch of a T-junction. 展开更多
关键词 Flow INSTABILITY fluid-induced OSCILLATION NUMERICAL Simulation SIMPLER Method T-JUNCTION
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Trace element and Nd isotope analyses of apatite in granitoids and metamorphosed granitoids from the eastern Central Asian Orogenic Belt:Implications for petrogenesis and post-magmatic alteration 被引量:1
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作者 Xin-Yu Long Jie Tang +4 位作者 Wen-Liang Xu Chen-Yang Sun Jin-Peng Luan Shuai Xiong Xiao-Ming Zhang 《Geoscience Frontiers》 SCIE CAS CSCD 2023年第2期71-85,共15页
We present in situ trace element and Nd isotopic data of apatites from metamorphosed and metasomatized(i.e.,altered)and unaltered granitoids in the Songnen and Jiamusi massifs in the eastern Central Asian Orogenic Bel... We present in situ trace element and Nd isotopic data of apatites from metamorphosed and metasomatized(i.e.,altered)and unaltered granitoids in the Songnen and Jiamusi massifs in the eastern Central Asian Orogenic Belt,with the aim of fingerprinting granitoid petrogenesis,including both the magmatic and post-magmatic evolution processes.Apatites from altered granitoids(AG)and unaltered granitoids(UG)are characterized by distinct textures and geochemical compositions.Apatites from AG have irregular rim overgrowths and complex internal textures,along with low contents of rare earth elements(REEs),suggesting the re-precipitation of apatite during epidote crystallization and/or leaching of REEs from apatite by metasomatic fluids.eNd(t)values of the these apatites are decoupled from zircon eHf(t)values for most samples,which can be attributed to the higher mobility of Nd as compared to Sm in certain fluids.Apatites from UG are of igneous origin based on their homogeneous or concentric zoned textures and coupled Nd-Hf isotopic compositions.Trace element variations in igneous apatite are controlled primarily by the geochemical composition of the parental melt,fractional crystallization of other REEbearing minerals,and changes in partition coefficients.Sr contents and Eu/Eu^(*) values of apatites from UG correlate with whole-rock Sr and SiO2 contents,highlighting the effects of plagioclase fractionation during magma evolution.Apatites from UG can be subdivided into four groups based on REE contents.Group 1 apatites have REE patterns similar to the host granitoids,but are slightly enriched in middle REEs,reflecting the influence of the parental melt composition and REE partitioning.Group 2 apatites exhibit strong light REE depletions,whereas Group 3 apatites are depleted in middle and heavy REEs,indicative of the crystallization of epidote-group minerals and hornblende before and/or during apatite crystallization,respectively.Group 4 apatites are depleted in heavy REEs,but enriched in Sr,which are features of adakites.Som 展开更多
关键词 Eastern CAOB Granitoid petrogenesis Apatite geochemistry fluid-induced alteration Nd-Hf isotopic decoupling Crustal assimilation
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A Semi-Discretizing Method Based Efficient Model for Fluidelastic Instability Threshold Prediction of Tube Bundles
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作者 Yuerong Wang Jianping Jing +1 位作者 Changmin Chen Sheng Xiong 《Computer Modeling in Engineering & Sciences》 SCIE EI 2019年第10期1-22,共22页
Fluidelastic instability is destructive in tube bundles subjected to cross flow.Flow channel model proposed by Leaver and Weaver is well used for modeling this problem.However,as the tube motion is supposed to be harm... Fluidelastic instability is destructive in tube bundles subjected to cross flow.Flow channel model proposed by Leaver and Weaver is well used for modeling this problem.However,as the tube motion is supposed to be harmonic,it may not simulate the general dynamic behaviors of tubes.To improve this,a model with arbitrary tube motion is proposed by Hassan and Hayder.While,due to involving in the time delay term,the stability problem cannot be solved by the eigenvalue scheme,and time domain responses of the tube have to be obtained to assess the instability threshold.To overcome this weakness,a new approach based on semi-discretizing method(SDM)is proposed in this study to make the instability threshold be predicted by eigenvalues directly.The motion equation of tube is built with considering the arbitrary tube motion and the time delay between fluid flow and tube vibration.A time delay integral term is derived and the SDM is employed to construct a transfer matrix,which transforms the infinite dimensional eigenvalue problem into a finite one.Hence the stability problem become solvable accordingly.With the proposed method,the instability threshold of a typical square tube array model is predicted,and the influences of system parameters on stability are also discussed.With comparing with prior works,it shows significant efficiency improvement in prediction of the instability threshold of tube bundles. 展开更多
关键词 fluidelastic INSTABILITY VIBRATION EQUATION time DELAY semi-discretizing method fluid-induced VIBRATION
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偏心密封内切向气流力及其对稳定性影响的理论与试验研究 被引量:17
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作者 张万福 杨建刚 +2 位作者 曹浩 郭瑞 孙丹 《机械工程学报》 EI CAS CSCD 北大核心 2011年第17期92-98,共7页
建立气缸—密封系统动力学分析模型,提出一种新的密封内气流力及刚度系数识别方法。应用双控制体模型对偏心密封腔内压力分布及切向气流力产生机理进行分析。理论研究表明各密封腔内压力近似呈正弦分布,压力高点沿轴向偏离最小间隙处的... 建立气缸—密封系统动力学分析模型,提出一种新的密封内气流力及刚度系数识别方法。应用双控制体模型对偏心密封腔内压力分布及切向气流力产生机理进行分析。理论研究表明各密封腔内压力近似呈正弦分布,压力高点沿轴向偏离最小间隙处的角度不断增大。随密封交叉刚度的增大,系统稳定性降低,当其超出一定范围时会导致系统失稳。试验研究转速、进气压力、偏心、密封间隙等因素对气流力的影响。试验发现在垂直于转子偏心方向上会产生一个较大的切向气流力,并且切向与径向气流力的差值随转速升高逐渐增大。随进气压力升高、密封间隙的减小,切向和径向气流力都增大,并且切向气流力较径向气流力增长幅度更为明显。在切向气流力的作用下气缸对数衰减率随转速升高逐渐下降,系统稳定性降低。 展开更多
关键词 气流激振 密封 气流力 刚度系数 双控制体
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横向流体激励下绳索的动力学分析 被引量:4
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作者 金栋平 胡海岩 《振动工程学报》 EI CSCD 2000年第3期340-345,共6页
通过分析横向流体对绳索的作用力 ,建立了绳索的动力学方程。借助 Pilipchuk坐标变换 ,使具有零刚度的绳索动力学方程包含静刚度项 ,继而使用两变量摄动方法对绳索运动进行近似分析。然后 ,用数值方法考核了近似分析结果的可靠性 ,讨论... 通过分析横向流体对绳索的作用力 ,建立了绳索的动力学方程。借助 Pilipchuk坐标变换 ,使具有零刚度的绳索动力学方程包含静刚度项 ,继而使用两变量摄动方法对绳索运动进行近似分析。然后 ,用数值方法考核了近似分析结果的可靠性 ,讨论了流体速度、绳索质量、重力和初始状态等对绳索运动行为的影响。 展开更多
关键词 绳索 动力学方程 横向流体激励 数值方法
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转子密封系统流体激振问题的流固耦合数值研究 被引量:8
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作者 金琰 袁新 《工程热物理学报》 EI CAS CSCD 北大核心 2003年第3期395-398,共4页
随着叶轮机械的工作转速越来越高,工程中发生了大量的密封流体激振问题。实验证明,高转速下的流体激振属于自激振动,但采用传统的刚度阻尼线形假设无法模拟出这一物理现象。本文发展了一种高精度的流固耦合计算方法,用这种算法成功地模... 随着叶轮机械的工作转速越来越高,工程中发生了大量的密封流体激振问题。实验证明,高转速下的流体激振属于自激振动,但采用传统的刚度阻尼线形假设无法模拟出这一物理现象。本文发展了一种高精度的流固耦合计算方法,用这种算法成功地模拟出转子密封系统在高转速下的自激振动,且捕捉到频率锁定的现象,而且发现随着转速的提高,固有频率也增大。另外,本文还得到了压比、预旋度对密封转子自激振动的影响规律。 展开更多
关键词 转子密封系统 NAVIER-STOKES方程 流固耦合 流体激振
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基于CFD的涡轮泵转子密封流体激振研究进展 被引量:9
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作者 徐悦 田爱梅 《火箭推进》 CAS 2005年第1期8-13,共6页
介绍了密封流体激振对转子稳定性的影响,重点论述了利用计算流体力学(CFD)方法进行密封流体激振研究的理论和试验测量方法,对当前研究中存在的难点、重点问题结合国内外发展情况进行了探讨,提出需要发展通用性更好的非稳态数值方法,并... 介绍了密封流体激振对转子稳定性的影响,重点论述了利用计算流体力学(CFD)方法进行密封流体激振研究的理论和试验测量方法,对当前研究中存在的难点、重点问题结合国内外发展情况进行了探讨,提出需要发展通用性更好的非稳态数值方法,并利用流体激振的特性来设计密封结构,改善转子动力特性。 展开更多
关键词 涡轮泵 转子 密封流体激振 CFD 稳定性 计算流体力学 液体火箭发动机
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乌江思林水电站溢流坝弧形工作闸门流激振动试验 被引量:10
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作者 蒋寅军 宋一乐 +2 位作者 王朝晖 何文娟 田士豪 《武汉大学学报(工学版)》 CAS CSCD 北大核心 2010年第4期467-471,共5页
为研究乌江思林水电站溢流坝弧形工作闸门可能出现的闸门流激振动问题,通过制作几何比尺为1/35的完全水弹性模型进行流激振动试验,研究该闸门在有止水和无止水2种工况下的静动力特性及不同开度的动力响应,提出了该闸门安全运行的合理化... 为研究乌江思林水电站溢流坝弧形工作闸门可能出现的闸门流激振动问题,通过制作几何比尺为1/35的完全水弹性模型进行流激振动试验,研究该闸门在有止水和无止水2种工况下的静动力特性及不同开度的动力响应,提出了该闸门安全运行的合理化建议.检测采用电测法,共进行静力试验2组,动力试验16组.静力试验结果表明该闸门结构设计合理,结构强度满足规范要求.动力试验结果表明结构的自振频率范围避开了水流脉动压力的高能区,正常运行情况下(止水良好)产生强烈振动的可能性不大,结构加速度最大值为0.228g,动应力最大值为0.92 MPa,各测点动力系数小于1.08,动力响应满足闸门抗振设计要求.闸门振动不利开度为0.6H和0.7H左右(H为水头).在漏水工况下运行时闸门振动加剧. 展开更多
关键词 弧形闸门 流激振动 水弹性 模型试验
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光滑环形密封阻塞流动特性研究 被引量:10
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作者 陈璐琪 张万福 +4 位作者 顾乾磊 张尧 马凯 李春 杨建刚 《中国电机工程学报》 EI CSCD 北大核心 2018年第22期6632-6639,共8页
光滑环形密封静态气流力及刚度系数直接影响转子系统稳定性。采用计算流体力学方法建立了光滑环形密封全三维数值分析模型,计算密封在阻塞/非阻塞、不同偏心及长径比情况下流动特性,分析导致光滑环形密封静态不稳定的形成机理及影响因... 光滑环形密封静态气流力及刚度系数直接影响转子系统稳定性。采用计算流体力学方法建立了光滑环形密封全三维数值分析模型,计算密封在阻塞/非阻塞、不同偏心及长径比情况下流动特性,分析导致光滑环形密封静态不稳定的形成机理及影响因素。结果表明:在高偏心状态下小间隙流体周向速度梯度变化引起的黏性效应增强是非阻塞状态下实验密封(L/D (28) 1)产生负静态刚度系数的主要原因。阻塞状态下,占主导作用的黏性效应与惯性效应使得密封即使处于低偏心状态也会产生负的密封气流力及静态刚度系数。随长径比增加,密封静态刚度系数变为负值,导致密封出现静态不稳定现象。 展开更多
关键词 光滑环形密封 阻塞流动 气流力 静态刚度系数 稳定性
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叶片载荷对离心泵内流动激励力及噪声的影响 被引量:10
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作者 杨爱玲 徐洋 +1 位作者 李国平 章艺 《排灌机械工程学报》 EI 北大核心 2014年第1期23-28,共6页
基于大涡模拟技术和边界元方法分析离心泵内非定常流场及流动诱导的结构振动与噪声,研究叶片载荷对离心泵水力性能、流动激励力及流动噪声的影响.数值计算结果表明:相比于低叶片载荷的离心泵,高叶片载荷离心泵的水力效率提高了1.1%~2.9%... 基于大涡模拟技术和边界元方法分析离心泵内非定常流场及流动诱导的结构振动与噪声,研究叶片载荷对离心泵水力性能、流动激励力及流动噪声的影响.数值计算结果表明:相比于低叶片载荷的离心泵,高叶片载荷离心泵的水力效率提高了1.1%~2.9%,流场分布更均匀;相同工况下高叶片载荷离心泵的蜗舌压力脉动系数幅值比低叶片载荷泵高42.6%;叶轮受到的径向力脉动幅度也提高了7.63%;根据声场计算结果,蜗壳壁面振动速度在二阶叶频上最大,高叶片载荷离心泵蜗壳的最大振动速度是低叶片载荷离心泵的5~6倍;蜗壳振动向外辐射噪声的指向性分布也发生了变化,在10°~310°范围内高叶片载荷泵辐射的噪声声压级大于低叶片载荷泵.研究表明叶片载荷是影响离心泵内流动激励力和流动诱导振动与噪声的重要因素,低噪声低振动水泵的设计需综合考虑水力效率与泵内流动激励力. 展开更多
关键词 离心泵 叶片载荷 流动激励力 大涡模拟 流动噪声 声振耦合
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负错位密封流动特性研究 被引量:8
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作者 孙丹 肖忠会 +2 位作者 王学军 郑铁生 孟继纲 《中国电机工程学报》 EI CSCD 北大核心 2015年第12期3068-3074,共7页
随着旋转机械工作介质向高参数方向发展,密封气流激振力成为影响旋转机械转子稳定性的重要因素之一。介质参数提高后,由密封流体动压产生的气体轴承效应增强,密封气流激振力增大。借鉴错位轴承理论,提出一种负错位密封结构,可降低流体... 随着旋转机械工作介质向高参数方向发展,密封气流激振力成为影响旋转机械转子稳定性的重要因素之一。介质参数提高后,由密封流体动压产生的气体轴承效应增强,密封气流激振力增大。借鉴错位轴承理论,提出一种负错位密封结构,可降低流体动压效应,抑制密封气流激振力。应用CFD技术建立负错位密封与传统圆形密封流场特性求解模型,分析比较2种密封形式周向压力分布特性的差异,研究错位率、转速、偏心、压比等因素对2种密封形式气流力的影响规律。研究结果表明,负错位密封与传统圆形密封泄漏特性相当;与传统圆形密封相比,负错位密封周向压力差小,气流激振力小,负错位密封稳定性好。 展开更多
关键词 密封 气流激振 流体动压效应 气流力 计算流体力学
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国内换热器流体诱导振动的研究状况 被引量:9
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作者 李安军 邢桂菊 周丽雯 《辽宁化工》 CAS 2007年第12期849-852,856,共5页
回顾了国内换热器流体诱导振动研究的重要成果,其主要表现在两个方面,一是防止振动方面,通过分析致振原因,提出防振的具体措施,避免设备破坏;另一个是有效利用振动方面,即流体流动诱发新型传热结构的振动以实现强化传热。流体诱导振动... 回顾了国内换热器流体诱导振动研究的重要成果,其主要表现在两个方面,一是防止振动方面,通过分析致振原因,提出防振的具体措施,避免设备破坏;另一个是有效利用振动方面,即流体流动诱发新型传热结构的振动以实现强化传热。流体诱导振动是一门实用性很强的边缘学科,随着现代工业的发展,这一学科的前景非常广阔。 展开更多
关键词 换热器 流体诱导振动 强化传热
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行进绳索在横向流体激励下的运动 被引量:5
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作者 金栋平 胡海岩 《力学学报》 EI CSCD 北大核心 2001年第4期525-530,共6页
 给出横向流体对行进绳索的作用力描述,建立了绳索的动力学方程.由于该方程具有零刚度特征,引入Pilipchuk变换,以自平衡状态起度量的径向振动和回转运动来描述绳的运动,获得非零刚度系统.然后,用两变量参数振动法求得...  给出横向流体对行进绳索的作用力描述,建立了绳索的动力学方程.由于该方程具有零刚度特征,引入Pilipchuk变换,以自平衡状态起度量的径向振动和回转运动来描述绳的运动,获得非零刚度系统.然后,用两变量参数振动法求得绳索关于扩张振动和回转运动的约化型,使得绳索运动可近似由一个二维动力系统来描述.最后,用数值方法讨论了行进速度和重力对绳索运动形态的影响. 展开更多
关键词 行进绳索 海底电缆 铺设 横向流体 激励 行进速度 绳索动力学 二维动力系统 零刚度 数值方法
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在定常流动下混流式水轮机叶片横向振动特性分析 被引量:8
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作者 张立翔 张洪明 《水电能源科学》 2004年第3期78-81,共4页
使用一般壳体理论及ALE描述下叶片近壁区流动控制方程,在正交流线坐标系中建立了描述混流式水轮机叶片振动的一般方程,并将叶片在流向与展向的振动对横向振动的影响表示为参数函数,构造出描述叶片横向振动的Mathieu方程,从而可利用数学... 使用一般壳体理论及ALE描述下叶片近壁区流动控制方程,在正交流线坐标系中建立了描述混流式水轮机叶片振动的一般方程,并将叶片在流向与展向的振动对横向振动的影响表示为参数函数,构造出描述叶片横向振动的Mathieu方程,从而可利用数学上熟知的Mathieu方程的特性分析叶片的横向振动。 展开更多
关键词 混流式水轮机 水轮机叶片 流激振动
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倾斜转子对密封流体激振特性的影响 被引量:7
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作者 陈慈伟 张万福 《动力工程学报》 CAS CSCD 北大核心 2017年第3期213-217,共5页
建立了具有倾斜转子的普通梳齿密封全三维数值计算模型,利用计算流体力学方法对转子倾斜情况下密封流体激振力进行了数值研究,得出偏转角度、偏心距、入口压力和转速对泄漏量和流体激振力的影响.结果表明:偏转角度和偏心距对泄漏量影响... 建立了具有倾斜转子的普通梳齿密封全三维数值计算模型,利用计算流体力学方法对转子倾斜情况下密封流体激振力进行了数值研究,得出偏转角度、偏心距、入口压力和转速对泄漏量和流体激振力的影响.结果表明:偏转角度和偏心距对泄漏量影响较小;入口压力与泄漏量呈线性关系;偏转角度、偏心距、入口压力和转速对径向力和切向力的影响基本呈线性关系,偏转角度、偏心距、入口压力以及转速对径向力的影响较对切向力的影响大;由于转子倾斜,径向力随转速和偏心距的增大逐渐减小. 展开更多
关键词 梳齿密封 倾斜转子 流体激振力 计算流体力学
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地质过程中几种重要的构造—流体作用 被引量:5
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作者 彭渤 陈广浩 《地质论评》 CAS CSCD 北大核心 2002年第5期495-504,共10页
构造(应力)和流体是许多地质作用过程中发挥重要作用的两个基本因素。构造作用与流体的关系十分密切,两者相互影响、相互作用的关系称为构造—流体作用。压溶作用、流体致裂作用和裂隙闭合作用等是重要类型的构造—流体作用。本文阐述... 构造(应力)和流体是许多地质作用过程中发挥重要作用的两个基本因素。构造作用与流体的关系十分密切,两者相互影响、相互作用的关系称为构造—流体作用。压溶作用、流体致裂作用和裂隙闭合作用等是重要类型的构造—流体作用。本文阐述了它们的发育机理和地质意义。深入研究这些构造—流体作用及其效应,可为重塑地质历史和过程的研究提供重要的“化石”材料。 展开更多
关键词 构造-流体作用 压溶作用 流体致裂作用 裂隙闭合作用 发育机理
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