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Development of a stochastic dynamical model for hermetic compressor's components with experimental investigation

机译:基于实验研究的密闭式压缩机部件随机动力学模型的开发

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The analysis of household compressor's components is typically evaluated by using mathematical-mechanical models, and many decisions are taken based on simulations. However, such an investigation is usually performed in a deterministic framework, which cannot consider manufacturing variabilities and epistemic uncertainties. In this paper, a stochastic structural model that considers data and model uncertainties is developed for a discharge pipe connected to a hermetic compressor's shell. An experimental test rig is constructed to test each part separately, and an identification strategy is proposed to fit the stochastic model to experimental results. Finally, the impact of the uncertainties in each structural component on the dynamical responses of the whole system is investigated. It turns out that: (1) the proposed stochastic dynamical model presented very good results when compared to the experimental responses, and (2) uncertainties in the discharge pipe model play an important role in the coupled system dynamics.
机译:家用压缩机组件的分析通常通过使用数学-机械模型进行评估,并且许多决策都是基于仿真做出的。但是,这种调查通常是在确定性框架内进行的,该框架不能考虑制造差异和认知不确定性。在本文中,为连接到封闭式压缩机壳体的排气管开发了一种考虑数据和模型不确定性的随机结构模型。构建了一个试验台来分别测试每个零件,并提出了一种识别策略,以使随机模型适合实验结果。最后,研究了每个结构部件的不确定性对整个系统动力响应的影响。结果表明:(1)与实验响应相比,所提出的随机动力学模型具有很好的结果;(2)排放管模型中的不确定性在耦合系统动力学中起着重要作用。

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