Knowledge Agora



Scientific Article details

Title Acceleration-Insensitive Pressure Sensor for Aerodynamic Analysis
ID_Doc 14924
Authors Szczerba, Z; Szczerba, P; Szczerba, K; Pytel, K
Title Acceleration-Insensitive Pressure Sensor for Aerodynamic Analysis
Year 2023
Published Energies, 16, 7
DOI 10.3390/en16073040
Abstract This paper presents a method for preparing a pressure sensor that is insensitive to acceleration along with experimental evidence of its efficacy in aerodynamic analysis. A literature review and preliminary studies revealed the undesirable effect of acceleration on sensors that are located on moving elements, as evidenced by deviations from actual pressure values for piezoresistive pressure sensors that are made using MEMS technology. To address this, the authors developed a double-membrane sensor geometry that eliminated this imperfection; a method of implementing two solo pressure sensors as a new geometry-designed sensor was also proposed. Experimental tests of this suggested solution were conducted; these measurements are presented here. The results indicated that this new sensor concept could be used to measure the dynamic pressures of rotating and moving objects in order to obtain measurement results that are more reliable and closer to the true values that are derived from aerodynamic analyses. The published results confirm the reliability of the proposed device.
Author Keywords energy; piezoresistive pressure sensor; aerodynamic; compensation of acceleration effect; air flow measurements; aircraft flight speed measurement; wind turbine blade measurements; fluid flow; emission reduction; circular economy in renewable energy
Index Keywords Index Keywords
Document Type Other
Open Access Open Access
Source Science Citation Index Expanded (SCI-EXPANDED)
EID WOS:000969716200001
WoS Category Energy & Fuels
Research Area Energy & Fuels
PDF
Similar atricles
Scroll