Title :
Design of A Novel Micro Thermo-Fluidic Gyroscope
Author :
Ai, Ye ; Luo, Xiaobing ; Liu, Sheng
Author_Institution :
Wuhan Nat. Lab. for Optoelectronics, Inst. of Microsystems of HUST, Wuhan
Abstract :
This paper reports the design and analysis of a novel micro thermo-fluidic gyroscope utilizing dual directional liquids. Compared with the traditional jet deflection method, the proposed gyroscope comprises two pairs of symmetric microchannels splitting from the main channel. When the Coriolis force induced by external rotation acts on the fluid, the mass flow rate of the symmetric microchannels will be unequal, which results in different thermal convections between the fluid and thermistors inside the split microchannels. Through measuring the temperature difference between the symmetric thermistors, the angular rate is obtained. The gyroscope is applicable for both even and uneven angular rate condition. Numerical simulation is applied to investigate the gyroscope performance, which concludes that the mass flow rate difference between the symmetric microchannels and the temperature difference between the symmetric thermistors show good linearity to the angular rate, the nonlinearity are 0.099% and 0.15% respectively
Keywords :
convection; gyroscopes; microchannel flow; thermistors; Coriolis force; angular rate; dual directional liquids; jet deflection method; mass flow rate; micro thermo fluidic gyroscope; split microchannels; symmetric microchannels; symmetric thermistors; temperature difference; thermal convections; Acceleration; Fluid flow; Gyroscopes; Linearity; Microchannel; Micropumps; Numerical simulation; Temperature; Thermal force; Thermistors;
Conference_Titel :
Electronic Packaging Technology, 2006. ICEPT '06. 7th International Conference on
Conference_Location :
Shanghai
Print_ISBN :
1-4244-0619-6
Electronic_ISBN :
1-4244-0620-X
DOI :
10.1109/ICEPT.2006.359811