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A nonlinear dynamic model for flow rate maneuvering in long pipes by means of actuated butterfly valves

机译:通过驱动的蝶阀在长管中操纵流量操纵的非线性动力学模型

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摘要

This paper presents a comprehensive and modular model for flow rate maneuvering systems. The nonlinear system equations are derived starting from physical principles, and describe the power unit, the mechanical transmission, the butterfly valve, the load torques and the fluid flow inside the pipe. The system equations are subsequently parametrized using data from blue prints and experiments in order to perform numerical investigations. It is shown that the hydrodynamic torque plays an important role in operation, and that pipe pressure losses affect the hydrodynamic torque. Also, the effects of fluid dynamics are shown and discussed. The proposed model provides insights for the design of both actuation.
机译:本文介绍了流量操纵系统的全面和模块化模型。从物理原理开始导出非线性系统方程,并描述电源单元,机械传动,蝶阀,负载扭矩和管内的流体流动。随后使用来自蓝色打印和实验的数据进行参数化系统方程,以便执行数值研究。结果表明,流体动力扭矩在操作中起着重要作用,并且管道压力损失影响了流体动力扭矩。而且,示出并讨论了流体动力学的影响。拟议的模型为致动设计提供了洞察力。

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