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Application of 3-omega method for thin-film heat flux gauge calibration

Journal Article · · Measurement Science and Technology

Not provided.

Research Organization:
Pennsylvania State Univ., University Park, PA (United States)
Sponsoring Organization:
USDOE Office of Fossil Energy (FE)
DOE Contract Number:
FE0025011
OSTI ID:
1979288
Journal Information:
Measurement Science and Technology, Vol. 32, Issue 11; ISSN 0957-0233
Publisher:
IOP Publishing
Country of Publication:
United States
Language:
English

References (23)

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Comparison of Thin Film Heat Flux Gauge Technologies Emphasizing Continuous-Duration Operation July 2020
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1ω,2ω, and 3ω methods for measurements of thermal properties December 2005
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Variation of Cooling Mass Flow Rate and its Effect on Unsteady Aerodynamic and Heat Transfer Performance of a Rotating Turbine Stage August 2020
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Design, fabrication and characterization of thin film resistances for heat flux sensing application July 2016
Reusable bi-directional 3 ω sensor to measure thermal conductivity of 100- μ m thick biological tissues January 2015
Measuring the Thermal Conductivity of thin Films: 3 Omega and Related Electrothermal Methods January 2013
Numerical simulation of the 3ω method for measuring the thermal conductivity April 2002
A semianalytical solution for the 3ω method including the effect of heater thermal conduction June 2008
Data reduction in 3ω method for thin-film thermal conductivity determination April 2001
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Impulse Response Processing of Transient Heat Transfer Gauge Signals March 2008
Microfabricated sensor platform with through-glass vias for bidirectional 3-omega thermal characterization of solid and liquid samples August 2018
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Thermal conductivity measurement under hydrostatic pressure using the 3ω method November 2004
The 3ω technique for measuring dynamic specific heat and thermal conductivity of a liquid or solid January 1996