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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 engineering practices and a theoretical basis to analyze the fluid–structure interaction of the seal-rotor system in future research. 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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篦齿结构对封严性能的影响 被引量:6
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作者 杨淋麟 张丽 朱惠人 《科学技术与工程》 北大核心 2013年第33期10069-10073,共5页
基于数值模拟方法建立二维篦齿模型.通过多种工况的计算,从分析齿腔内流场研究不同齿顶边缘以及齿顶倒角半径大小变化对封严特性的影响;并通过分别改变篦齿前后边倾斜角度,确定篦齿最佳倾斜度.将计算数据和实验数据进行比较,发现变化规... 基于数值模拟方法建立二维篦齿模型.通过多种工况的计算,从分析齿腔内流场研究不同齿顶边缘以及齿顶倒角半径大小变化对封严特性的影响;并通过分别改变篦齿前后边倾斜角度,确定篦齿最佳倾斜度.将计算数据和实验数据进行比较,发现变化规律一致,误差较小.研究表明:齿顶倒角半径是影响篦齿封严效果的重要因素.倒角半径小于0.07mm时,增大0.02mm,泄漏系数增大2%;倒角半径大于0.07mm时,每增大0.02mm,泄漏系数增大1%左右.当篦齿前倾角为20°左右,后倾角为35°~40°时为篦齿最佳倾斜度,且后倾角对篦齿封严的影响大于前倾角. 展开更多
关键词 封严特性 篦齿结构 齿顶倒角半径 最佳倾斜度
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几何参数对直通式斜齿封严泄漏特性影响的数值分析 被引量:2
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作者 李文凯 张勃 +4 位作者 吉洪湖 杜发青 刘红梅 陆海鹰 邓明春 《润滑与密封》 CAS CSCD 北大核心 2014年第5期17-22,共6页
改变直通式斜齿封严的7个主要的几何参数(封严间隙、齿高、齿距、齿宽、齿数、前倾角、后倾角),建立27个模型,通过数值模拟计算,研究气动参数(进出口落压比)及主要几何参数对其泄漏特性的影响规律。结果表明,斜齿封严的流量系数随着落... 改变直通式斜齿封严的7个主要的几何参数(封严间隙、齿高、齿距、齿宽、齿数、前倾角、后倾角),建立27个模型,通过数值模拟计算,研究气动参数(进出口落压比)及主要几何参数对其泄漏特性的影响规律。结果表明,斜齿封严的流量系数随着落压比和封严间隙、齿高、齿宽的增大而增大,随着齿距、齿数的增大而减小;前、后倾角对斜齿封严的流量系数有较为明显的影响,随着前倾角的增大流量系数先减小后增大,而随后倾角的增大流量系数单调减小。这是因为斜齿齿腔壁面出现局部涡旋,且随着后倾角增大涡旋区域增大,齿内流动耗散增强,因而流量系数减小。 展开更多
关键词 倾斜角度 直通式斜齿 流量系数
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