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Development research of reflection-absorption compound type fluid pulsation attenuator

机译:反射吸收复合型流体脉动衰减器的开发研究

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Based on the disadvantages analysis of the existing fluid pulsation attenuator, two reflection-absorption compound type of fluid pulsation attenuators which are both composed of a chamber and a mass-spring-damping system are developed: in-line reflection-absorption compound type of fluid pulsation attenuators (in-line RAFPA) and side-branch reflection-absorption compound type of fluid pulsation attenuators (side-branch RAFPA). The transfer matrix models of the two attenuators are established as well as expansion chamber attenuator and Helmholtz resonator. Based on the transfer matrix model, the transmission loss of the four attenuators is given out to evaluate their attenuation characteristic. The attenuation characteristic comparisons of in-line RAFPA with expansion chamber attenuator and side-branch RAFPA with Helmholtz resonator are carried out respectively. And the effect of the mass-spring-damping system to in-line RAFPA and side-branch RAFPA is investigated. The simulation reveals the two reflection-absorption compound type of fluid pulsation attenuators have better attenuation characteristic and are more compact than expansion chamber attenuator and Helmholtz resonator.
机译:基于现有的流体脉动衰减器的缺点分析,开发了两种反射吸收复合复合物的流体脉动衰减器,其由腔室和质量弹簧阻尼系统组成:在线反射吸收复合物类型的流体脉动衰减器(在线RAFPA)和侧分支反射吸收复合型流体脉动衰减器(侧分支RAFPA)。建立了两个衰减器的传输矩阵模型以及膨胀室衰减器和亥姆霍兹谐振器。基于传输矩阵模型,给出了四个衰减器的传输损耗来评估它们的衰减特性。分别进行了与亥姆霍兹谐振器与膨胀室衰减器和侧分支RAFPA在线RAFPA的衰减特性比较。并研究了质量弹簧阻尼系统对线RAFPA和侧分支RAFPA的影响。仿真揭示了两种反射吸收复合类型的流体脉动衰减器具有更好的衰减特性,并且比膨胀室衰减器和亥姆霍兹谐振器更紧凑。

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