首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >Leakage and Force Coefficients of a Grooved Wet (Bubbly Liquid) Seal for Multiphase Pumps and Comparisons with Prior Test Results for a Three Wave Seal
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Leakage and Force Coefficients of a Grooved Wet (Bubbly Liquid) Seal for Multiphase Pumps and Comparisons with Prior Test Results for a Three Wave Seal

机译:用于多相泵的带槽湿(起泡液)密封的泄漏和力系数,以及三波密封的现有测试结果的比较

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In the subsea oil and gas industry, multiphase pumps and wet gas compressors are engineered choices saving transportation and separation facility costs. In these machines, seals handling multiple phase components must be able to operate without affecting the system efficiency and its dynamic stability. This paper, extending prior work conducted with uniform clearance and wavy surface annular seals, presents measurements of leakage and dynamic force coefficients in a grooved seal whose dimensions are scaled from an impeller wear ring seal in a boiler feed pump. The 14-grooves seal has diameter D=127 mm, length L=0.34 D, and clearance c=0.211 mm; each groove has shallow depth d_g~2.6 c and length L_g~3.4% L. At a shaft speed of 3.5 krpm (surface speed = 23.3 m/s), a mixture of air in ISO VG 10 oil with inlet gas volume fraction (GVF) ranging from 0 (just oil) to 0.7 (mostly air) lubricates the seal. The pressure ratio (inlet/exit) is 2.9. The flow is laminar since the liquid is viscous and the pressure drop is low. The measured mixture mass flow decreases continuously with an increase in inlet GVF. The seal stiffnesses (direct K and cross coupled k), added mass (M), and direct damping (Q coefficients are constant when the supplied mixture is low in gas content, GVF≤ 0.1. As the gas content increases, 0.2 ≤ GVF ≤ 0.5, the seal direct dynamic stiffness becomes nil with an increase in excitation frequency, whereas k and C reduce steadily with GVF. In general, for GVF ≤ 0.5 the direct damping is invariant with frequency; variations appearing for GVF =0.7. Compared against a three wave annular seal, the grooved seal offers much lower force coefficients, in particular the viscous damping. Thus, for laminar flow operation (heavy oil) with a low pressure drop as in a wear ring seal, a three wave seal is recommended as it also offers a significant centering stiffness.
机译:在海底石油和天然气工业中,多相泵和湿气体压缩机是节省运输和分离设施成本的工程选择。在这些机器中,处理多相组件的密封必须能够在不影响系统效率及其动态稳定性的情况下进行操作。本文以均匀的间隙和波浪表面环形密封件为延伸的现有工作,呈现泄漏和动态力系数的测量,其横向密封件,其尺寸从锅炉供给泵中的叶轮磨损环密封缩放。 14槽密封直径d = 127mm,长度L = 0.34d,间隙C = 0.211mm;每个凹槽具有浅深度d_g〜2.6c和长度L_g〜3.4%L.在3.5 krpm的轴速度(表面速度= 23.3米/ s),ISO Vg 10油中的空气混合物,入口气体体积分数(GVF )从0(仅油)到0.7(大多是空气)润滑密封件。压力比(入口/出口)为2.9。流动是层状,因为液体是粘性的,并且压降低。测量的混合物质量流量随着入口GVF的增加而连续降低。密封刚度(直接k和交叉偶联k),加入质量(m)和直接阻尼(q系数在供应的混合物在气体含量低时恒定,Gvf≤0.1。随着气体含量的增加,0.2≤gvf≤ 0.5,密封直接动态刚度随着激发频率的增加而变为零,而K和C与GVF稳定地减少。一般来说,对于GVF≤0.5,直接阻尼频率不变; GVF = 0.7出现的变化。与A相比三波环形密封件,凹槽密封件提供了更低的力系数,特别是粘性阻尼。因此,对于具有低压降的层流操作(重油),如在磨损环密封上,建议使用三波密封还提供了一个重要的定心刚度。

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