Dynamical Responses of a Valveless Fluid Loop Excited by the Impact of a Compression Actuator
Chi-Chung Wang, Tian-Shiang Yang

TL;DR
This study explores the complex dynamics of a valveless fluid loop system influenced by actuator impacts, revealing various response types and their dependence on system parameters and driving frequency.
Contribution
It provides a comprehensive numerical analysis of the system responses, identifying different response types and their parameter boundaries, extending previous preliminary findings.
Findings
Multiple distinct system response types identified
Response types depend on driving frequency and system parameters
Interrelations between response types elucidated
Abstract
Valveless pumping assists in fluid transport in various organisms and engineering systems. In a previous work, to study the actuator impact effects on valveless pumping, we constructed a piecewise-linear lumped-parameter model for a closed-loop system, which consists of two distensible fluid reservoirs connected by two rigid tubes. The preliminary asymptotic and numerical results of that work indicated that the system dynamics is rather rich and complex, and strongly depends upon the driving frequency of the actuator (which periodically compresses one of the distensible reservoirs) and other system parameters. Here, a more comprehensive numerical study on the aforementioned model is carried out, so as to clarify how many different types of system responses can be excited, and to locate the parameter boundaries within which each type exists. Moreover, by examining the driving-frequency…
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Taxonomy
TopicsHydraulic and Pneumatic Systems · Magnetic confinement fusion research · Quantum chaos and dynamical systems
