Optimization of a Thermal Flow Meter for Failure Management of the Shunt in Pediatric Hydrocephalus Patients*

Author(s):  
Zhijie Charles Chen ◽  
Ashlyn Gary ◽  
Vivek Gupta ◽  
Gerald Grant ◽  
Richard E. Fan
2015 ◽  
Vol 36 (3) ◽  
pp. 149-160 ◽  
Author(s):  
Artur Cebula

Abstract The paper presents analytical and numerical model calculation results of the temperature distribution along the thermal flow meter. Results show a very good conformity between numerical and analytical model. Apart from the calculation results the experimental investigations are presented. The author performed the test where a temperature of duct wall surface was measured. The relation between mass flow rate in terms of the duct surface temperature difference was developed.


2008 ◽  
Vol 15 (8) ◽  
pp. 1179-1186 ◽  
Author(s):  
P. Bruschi ◽  
M. Dei ◽  
M. Piotto

2012 ◽  
Vol 499 ◽  
pp. 409-413
Author(s):  
Jing Hou ◽  
Wan Jiang Zhang ◽  
Yan Ling Sun

In this paper, an effective and innovative thermal flow meter is presented. It is based on TDC-GP1 chip and the principle of time difference type ultrasonic flow measurement. Ultrasonic flow meter is applied widely and has some advantages such as non-contact, easily installed and maintained. But it is necessary to make the meter work more stable. The method of time difference can improve the stabilization and measured precision of the ultrasonic flow meter. TDC-GP1 is a chip which can transform time intervals into digital values with high precision. The design of the ultrasonic thermal flow meter is given details in the paper. Results of the experiments show that the innovative meter has low power consumption and high measured precision.


2018 ◽  
Vol 2018 ◽  
pp. 1-8
Author(s):  
Nai-Yuan Liu ◽  
Yue Deng ◽  
Francis Tsow ◽  
Devon Bridgeman ◽  
Xiaojun Xian ◽  
...  

This work evaluates the use of a new flow meter to assess exhalation rate. A mobile indirect calorimeter (MIC) was designed and used to measure resting metabolic rate (RMR), which relies on the measure of O2 consumption rate (VO2) and CO2 production rate (VCO2). The device was produced from a commercially available and well-established indirect calorimeter and implemented with a new flow meter for the purpose of this study. VO2 and VCO2 were assessed by measuring exhalation rates using the new flow meter and O2 and CO2 concentrations in breath using the original colorimetric sensors of the indirect calorimeter. The new flow meter was based on a thermal flow meter (TFM) affixed to an orifice with a diameter of 6.8 mm used as a passage for exhaled breath from 16 subjects. The results were compared with a metabolic cart (Medical Graphics), which was connected in series to the modified device. We found that 69% of the results had more than a 10% difference between the modified MIC device and the reference instrument, suggesting that the sensitivity of the thermal flow meter changed over time, which precluded its use as a flow meter for breath flow rate measurement.


2014 ◽  
Vol 989-994 ◽  
pp. 3270-3273
Author(s):  
Zhi Li Zhang ◽  
Yuan Qing Wu ◽  
Chun Mei Liu

In order to reduce consumption of thermal flow meter and prolong its working life, this article makes a research on cantilever switch, which control the circuit and save its energy. A cantilever was added into flow meter and was put into the air flow aisle in front of sensors. Process was designed and nanoimprint method was used to realize cantilever. The device was simulated and the effect on reducing consumption was certified, which has great significance on thermal flow meter.


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