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SIMULATION MODEL OF PROPAGATION OF VIBRATIONS IN A SYSTEM OF CONNECTED BODIES FOR THE SOLUTION OF PROBLEMS OF VIBRATION DIAGNOSTICS

机译:解振动诊断问题的连接体系统中振动传播的仿真模型

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An approach to the construction of a mathematical model of the process of propagation of acoustic vibrations in equipment that is in the form of a system of connected bodies is considered. The proposed structure of the mathematical model is implemented as a graph whose edges are links between the elements of a system of connected bodies formalized by nonhomogeneous wave equations that take into account dissipative losses. Through the use of the mathematical model together with the introduction of sources of an external disturbance in any node of the graph, it becomes possible to describe a variation in the vibration signal at a contact point, estimate its properties, and select on a well-defined basis the point of attachment of the vibration signal sensor. The mathematical model is tested to assure it corresponds qualitatively to the actual processes in the propagation of vibration signals by means of test disturbances, and it is shown that it may be used to evaluate the selection of the points of attachment of the vibration signal sensors in problems of vibration diagnostics of equipment.
机译:考虑一种构造以连接体系统形式的设备中的声振动传播过程的数学模型的方法。数学模型的拟议结构以图的形式实现,其边缘是由考虑耗散损耗的非均匀波动方程形式化的连接体系统元素之间的链接。通过使用数学模型以及在图的任何节点中引入外部干扰源,可以描述接触点处振动信号的变化,估计其特性并在井下进行选择。确定振动信号传感器的连接点。对数学模型进行了测试,以确保它通过测试扰动在质量上与振动信号的传播过程中的实际过程相对应,并且表明该模型可用于评估振动信号传感器的连接点的选择。设备振动诊断问题。

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