首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >EXPERIMENTAL STUDY OF THE STATIC AND DYNAMIC CHARACTERISTICS OF A LONG (L/D=0.75) LABYRINTH ANNULAR SEAL OPERATING UNDER TWO-PHASE (LIQUID/GAS) CONDITIONS
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EXPERIMENTAL STUDY OF THE STATIC AND DYNAMIC CHARACTERISTICS OF A LONG (L/D=0.75) LABYRINTH ANNULAR SEAL OPERATING UNDER TWO-PHASE (LIQUID/GAS) CONDITIONS

机译:在两相(液体/气体)条件下长(L / D = 0.75)迷宫环形密封的静态和动态特性的实验研究

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A 2-phase annular-seal stand (2PASS) at the Turbomachinery Laboratory of Texas A&M University is utilized to experimentally investigate a labyrinth seal operating under 2-phase flow conditions (a mixture of silicone oil and air). A long labyrinth seal (length-to-diameter ratio L/D = 0.75, diameter D = 114.729 mm, and radial clearance C_r = 0.213 mm) is tested at a supply pressure of 62 bars-g with inlet gas volume fraction GVF, ranging from 90-100%. Tests were conducted at three pressure ratios PR (0.3, 0.4, 0.5), three rotating speeds (5, 10,15 krpm), six GVF_i (90%, 92%, 94%, 96%, 98%, 100%), and three inlet-preswirl inserts, namely, zero, medium, and high. Specifically, the ratio between the fluid's circumferential velocity and the shaft surface's velocity, are in ranges of 0.0-0.2, 0.5-1.6, and 0.5-2.7 for the zero, medium, and high preswirls, respectively. The direct dynamic stiffness K_Ω is negative. As GVF, decreases (more liquid), K_Ω becomes more negative for the zero preswirl. The effect of changing GVF_i on K_Ω for the medium and high preswirls is not as clear as for the zero preswirl. For the zero preswirl, as GVF_i decreases, the cross-coupled dynamic stiffness k_Ω and direct damping C damping increases. However, the effective damping C_(eff) values converge to almost the same positive value for higher frequencies Hence, there is no significant effect of change in GVF_i for the zero preswirl. For the high preswirl, as GVF_i decreases, k_Ω decreases and C increases. As GVF_i decreases, C_(eff) becomes less negative and eventually becomes positive for frequencies higher than Ω_c. This result indicates that at certain frequencies, the presence of liquid can make the labyrinth seals with high preswirl more stable. For the seal tested, a compressor running at 15 krpm and PR (ratio of seal exit pressure and seal inlet pressure) = 0.5 with the first critical speed of 7500 rpm (125 Hz) would experience an increase in stability with presence of liquid in the flow stream for the medium and high preswirls. However, for the range of GVF_i considered here, if swirl brakes are used in a compressor application to reduce the preswirl, there would be no impact of liquid presence on the stability of the compressor. Concerning static measurements, leakage rate m increases with decreases in GVF, but remains unchanged with increasing preswirl.
机译:德克萨斯A&M大学涡轮机实验室的2相环形密封架(2pps)用于通过两相流条件(硅油和空气的混合物)进行实验研究迷宫式密封。长迷宫密封(长达直径比L / D = 0.75,直径D = 114.729 mm,径向间隙C_R = 0.213 mm)在62巴-G的供应压力下进行测试,其中入口气体体积分数GVF,测距从90-100%。测试是在三个压力比PR(0.3,0.4,0.5),三个旋转的速度(5,10,15 KRPM),六GVF_i(90%,92%,94%,96%,98%,100%)中进行,和三个入口 - 前奶插入,即零,中等和高。具体地,流体周向速度与轴表面速度之间的比例分别为0.0-0.2,0.5-1.6和0.5-2.7的范围,分别为零,培养基和高预期漩涡。直接动态刚度K_Ω为负。作为GVF,减少(液体更多),k_Ω对零预奶的变为更负。改变GVF_I对介质和高级预漩涡的K_Ω的影响并不像零预先生一样清晰。对于Zero PremWirl,随着GVF_I的降低,交叉耦合的动态刚度K_ω和直接阻尼C阻尼增加。然而,有效阻尼C_(EFF)值会聚到较高频率的几乎相同的正值,因此GVF_I对于ZERE SWIRL的变化没有显着影响。对于高级预调漩涡,因为GVF_I降低,K_ω降低,C增加。由于GVF_I降低,C_(EFF)变得更少,并且最终变为频率高于ω_c的频率。该结果表明,在某些频率下,液体的存在可以使迷宫密封具有高预奶瓶更稳定。对于检测到的密封,在15 krpm和pr(密封射线压力和密封液的比率的比例)= 0​​.5,第一临界速度为7500rpm(125 hz)将在存在液体存在的稳定性增加用于介质和高级预奶的流量流。然而,对于这里考虑的GVF_I的范围,如果在压缩机应用中使用旋流制动器以减少先前漩则,则不会对压缩机的稳定性产生液体存在不会影响。关于静态测量,泄漏率M随着GVF的降低而增加,但随着PRESWIRL的增加保持不变。

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