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Labyrinth Seal and Pocket Damper Seal High Pressure Rotordynamic Test Data

机译:迷宫式密封和袋式阻尼器密封的高压转子动力学测试数据

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The current centrifugal compressor design for the oil & gas market is more and more challenging, and the presence of many competitors is pushing technology towards both a casing size reduction and a rotational speed increase. The first point is leading to an increase in the number of wheels per rotor (to do the same service), and the second point is forcing to cross two or even three rotor modes (hence a higher control of rotor damping is necessary). The two points together are leading to increase the rotor "flexibility ratio" (defined as the ratio between the maximum continuous speed and the first critical speed at infinite support stiffness according to API standard, and finally the rotordynamic stability is very much challenged. The centrifugal compressor's rotordynamic stability is strongly related to the internal seals' dynamic behavior, and for this reason, the authors' company decided several years ago to develop internally a high pressure seal test rig to measure internal seals stiffness and damping. The rig is now in operation, and in a previous paper the authors described its main capabilities, the applied identification procedures, and the preliminary test results captured for a long labyrinth seal (smooth rotor, straight toothed stator) tested up to 200 bar. This paper is intended to show more data for the same long Laby with special focus on some peculiar test as negative preswirl test, single frequency versus multifrequency test, offset versus centered seal test. The negative preswirl test shows a drastic change in the effective damping (from destabilizing to stabilizing) and provides a support in favor of the selection of swirl reversal devices at seals upstream. The multifrequency excitation test approach (based on the concurrent presence of several frequencies not multiples at each other) is compared with a single frequency excitation providing similar results and thus confirming the soundness of the multiple effects linear superimposition assumption. The effect of a static offset (simulating the real position of a rotor inside an annular seal) is also investigated proving that the relevant impact is negligible within the range of eccentricity explored (10% of seal clearance). Moreover, a pocket damper seal (PDS) with the same nominal diameter, clearance, and effective length has been tested (up to 300 bar) and compared with the Laby. As expected, the PDS shows both a higher effective stiffness and damping at the same test conditions, so the promising results already collected in a previous test campaign which was performed on a smaller scale and lower pressure test rig were mostly confirmed with the only exception for the effective damping crossover frequency which was lower than expected.
机译:当前用于石油和天然气市场的离心压缩机设计越来越具有挑战性,并且许多竞争对手的存在正在推动技术朝着减小外壳尺寸和增加转速的方向发展。第一点是导致每个转子的轮数增加(以进行相同的服务),第二点是迫使跨越两个或什至三个转子模式(因此必须对转子阻尼进行更高的控制)。这两点共同导致转子的“柔韧性比”(根据API标准定义为无限连续刚度下的最大连续速度与第一临界速度之比),最后转子的稳定性受到很大挑战。压缩机的转子动态稳定性与内部密封件的动态特性密切相关,因此,作者的公司几年前决定在内部开发一种高压密封试验台,以测量内部密封件的刚度和阻尼。在以前的论文中,作者描述了它的主要性能,应用的识别程序以及在200 bar以下测试的长迷宫式密封件(光滑转子,直齿定子)的初步测试结果。同一长Laby的数据,特别侧重于某些特殊测试,如负涡旋测试,单频与多频频率测试,偏置与中心密封测试。负预旋流测试显示有效阻尼发生了急剧变化(从去稳定到稳定),并为选择上游密封处的旋流反向装置提供了支持。将多频励磁测试方法(基于多个互不重叠的多个频率的并发存在)与提供相似结果的单频励磁进行比较,从而确认了多重效应线性叠加假设的正确性。还研究了静态偏移(模拟转子在环形密封件内部的实际位置)的影响,证明在所探索的偏心距范围内(密封件间隙的10%),相关影响可忽略不计。此外,已经测试了具有相同公称直径,游隙和有效长度的袋式减震器密封件(PDS)(最高300 bar),并与Laby进行了比较。正如预期的那样,PDS在相同的测试条件下显示出更高的有效刚度和阻尼,因此,在先前的测试活动中已经获得了有希望的结果,该结果是在较小规模和较低压力的测试平台上进行的,除有效的阻尼交叉频率低于预期。

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