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EXPERIMENTAL AND ANALYTICAL LEAKAGE CHARACTERIZATION OF ANNULAR GAS SEALS: HONEYCOMB, LABYRINTH AND POCKET DAMPER SEALS

机译:环形密封件的实验和分析泄漏特性:蜂窝,拉贝林特和袋式阻尼器密封件

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Modern day turbomachinery requires the use of annular gas seals to provide flow restriction from high pressure to low pressure regions within the machine. These flow restrictions are critical design points in the overall performance of the machine and directly impact the system-level efficiency. Consequently, understanding the leakage performance of a given seal element as a function of operating pressure, rotor speed, and rotor offset is critical to the successful design of the turbomachine. In the present work, three annular gas seals are experimentally tested on a leakage test rig at GE Global Research (Niskayuna, New York). The test rig is capable of high-speed, high-pressure flow testing and has a radial degree of freedom that enables non-concentric leakage characterization. The leakage performances of a labyrinth, honeycomb and pocket damper seals are compared over a range of inlet pressures and pressure ratios. Analytical tools, including a CFD model and a Bulk Flow Code, are developed to provide leakage prediction and to establish understanding of underlying flow mechanisms. Predictions of the seal leakage are found to be in good agreement with experimental data.
机译:现代涡轮机械需要使用环形气封来提供从机器内高压区域到低压区域的流量限制。这些流量限制是机器整体性能的关键设计点,并直接影响系统级效率。因此,了解给定密封元件的泄漏性能随工作压力,转子速度和转子偏移的变化对涡轮机的成功设计至关重要。在当前的工作中,在GE Global Research(纽约州Niskayuna)的泄漏测试台上对三个环形气密封件进行了实验测试。该测试台能够进行高速,高压流量测试,并且具有径向自由度,能够进行非同心泄漏特征分析。在入口压力和压力比的范围内,比较了迷宫式,蜂窝式和袋式阻尼器密封的泄漏性能。开发了包括CFD模型和大流量代码在内的分析工具,以提供泄漏预测并建立对基本流量机制的理解。发现密封泄漏的预测与实验数据非常吻合。

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