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CLEARANCE REGULATION OF MECHANICAL GAS FACE SEALS: PART I - MODELING

机译:机械气面密封的清关调节:第一部分 - 建模

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摘要

A new state space model is presented for coned face flexibly mounted stator (FMS) mechanical gas face seals. The model employs an analytical representation of the linearized gas film stiffness and damping properties. States are defined for the generalized gas film force modes and the mechanical dynamic modes. The state space formulation is convenient for determining stability limits and also allows for efficient time domain simulation as compared to simulations where convolution integrals must be computed or full numerical simulations employing the Reynolds equation. The modeling techniques are applied to a noncontacting mechanical gas face seal, the stability limit is found and simulation results are compared to a full numerical simulation utilizing the Reynolds equation. The simulation results validate the developed model. The state space model is utilized in Part II to perform controllability and observability analyses, and to design reduced order observers to estimate states that cannot be measured and robust tracking controllers to regulate the seal clearance to maintain system stability.
机译:为柔性安装定子(FMS)机械气面密封件呈现新的状态空间模型。该模型采用线性化气体膜刚度和阻尼性能的分析表示。为广义的气体膜力模式和机械动态模式定义了各种状态。状态空间配方方便地确定稳定性限制,并且还允许有效的时域模拟,与模拟必须计算卷积积分或采用雷诺方程的完整数值模拟。建模技术应用于非接触式机械气面密封,发现稳定性极限并将仿真结果与利用雷诺方程的全数值模拟进行比较。仿真结果验证了开发的模型。第二种空间模型在第二部分中用于执行可控性和可观察性分析,并设计减少的顺序观察者来估计无法测量和稳健跟踪控制器来调节密封间隙以保持系统稳定性的状态。

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