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SENSITIVITY ANALYSIS OF THE ONE-CONTROL VOLUME BULK-FLOW MODEL FOR A 14 TEETH-ON-STATOR STRAIGHT-THROUGH LABYRINTH SEAL

机译:通过迷宫直通式14齿齿轮机型储物体散流模型的灵敏度分析

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Since the 80s, academic research in the rotordynamics field has developed mathematical treatment for the prediction of the dynamic coefficients of sealing components. Dealing with the straight-through labyrinth seal, Iwatsubo [1], at a first stage, and Childs [2], later on, have developed the one-control volume bulk flow model. The model allows evaluating the surrounding fluid forces acting on the rotor, analyzing the fluid dynamics within the seal: the continuity, circumferential momentum and energy equations are solved for each cavity. To consider axial fluid dynamics, correlations, aiming to estimate the leakage and the pressure distribution, are required. Several correlations have been proposed in the literature for the estimation of the leakage, of the kinetic energy carry-over coefficient (KE), of the discharge coefficient and of the friction factor. After decades of research in the field of seal dynamics, the bulk-flow model has been confirmed as the most popular code in the industries, however, it is not clear which is the best set of correlations for the prediction of seal dynamic coefficients. This paper allows identifying the most accurate combination of correlations to be implemented in the bulk-flow model. The correlations are related to: the leakage formula, the flow coefficient, the KE and the friction factor. Investigating the results of several models (32 models), which consider different sets of correlations, in comparison to the experimental data (performed by General Electric Oil & Gas), it is possible to observe the dependence, of the model correlations, on the operating conditions. The experimental results, performed using a 14 teeth-on-stator labyrinth seal, investigate several operating conditions of pressure drop.
机译:自80年代以来,Rotordynamics领域的学术研究已经开发了用于预测密封部件的动态系数的数学处理。在稍后的第一阶段和Childs [2]的一阶段和Childs [2]的直通迷宫封印,Iwatsubo [1]正在开发了单控制卷散装流模型。该模型允许评估作用在转子上的周围的流体力,分析密封内的流体动力学:为每个腔求解连续性,周向动量和能量方程。为了考虑轴向流体动力学,需要估计泄漏和压力分布的相关性。在文献中提出了几种相关性,用于估计泄漏的动能传递系数(KE),放电系数和摩擦因子的泄漏。在密封动态领域几十年的研究之后,散装流模型已被证实为行业中最流行的代码,但是,尚不清楚这是对密封动态系数预测的最佳相关性。本文允许识别在散装流模型中实现的最准确的相关性组合。相关性与:泄漏公式,流量系数,KE和摩擦因子有关。与实验数据相比,调查多种模型(32种型号)的结果,该模型(32种型号)考虑了不同的相关性集合(由一般电气油和气体执行),可以观察模型相关性的依赖性状况。使用14个齿轮迷宫式密封进行的实验结果研究了几种压降的操作条件。

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