Title :
Fluid structure interaction analysis and simulation of micromachined cantilever-based flow sensor
Author :
Pei Chen ; Yulong Zhao ; Yiyao Li
Author_Institution :
State Key Lab. for Manuf. Syst. Eng., Xi´an Jiaotong Univ., Xi´an, China
Abstract :
Numerical analysis and analog simulation are used to investigate the FSI (fluid structure interaction) characteristics of a differential pressure flow sensor. The FSI model is created using the hydromechanics and elastic mechanics, and a systematic theory is created to finish the numerical analysis. Then the working mechanism of the flow sensor is analyzed depend on the FSI results. The commercial software FLUENT and ANSYS are used to finish the analog simulation. The result of numerical analysis is similar to that of analog simulation. Depend on the results of numerical analysis and analog simulation, the shape and size of the flow sensor are optimized. The optimized flow sensor is fabricated and calibrated. The calibration results show that the cantilever based differential pressure flow sensor achieves ideal static characteristics and works well in the practical applications.
Keywords :
cantilevers; flow sensors; flow simulation; microfluidics; micromachining; microsensors; numerical analysis; pressure sensors; ANSYS; FLUENT; FSI characteristics; FSI model; analog simulation; cantilever based differential pressure flow sensor; elastic mechanics; flow sensor shape; flow sensor size; fluid structure interaction analysis; hydromechanics; ideal static characteristics; micromachined cantilever-based flow sensor simulation; numerical analysis; optimized flow sensor; systematic theory; working mechanism; Analytical models; Equations; Finite element analysis; Fluids; Numerical models; FSI; MEMS; analog simulation; flow sensor; numerical analysis;
Conference_Titel :
Nano/Micro Engineered and Molecular Systems (NEMS), 2014 9th IEEE International Conference on
Conference_Location :
Waikiki Beach, HI
DOI :
10.1109/NEMS.2014.6908824