Publication | Open Access
Estimates of the difference between thermodynamic temperature and the International Temperature Scale of 1990 in the range 118 K to 303 K
35
Citations
41
References
2016
Year
AeroacousticsEngineeringAtmospheric AcousticTemperature PredictionThermoacoustic Heat EngineEarth ScienceRange 118Thermodynamic ModellingThermodynamic TemperaturePhysical AcousticAcoustic ResonatorThermal AnalysisThermophysicsThermodynamicsInstrumentationAcoustic AnalysisClimate ChangePhysicsGeographyThermal PhysicsHeat TransferUltrasoundInternational Temperature ScaleTemperature MeasurementApplied PhysicsGlobal Warming PotentialThermal Engineering
Using exceptionally accurate measurements of the speed of sound in argon, we have made estimates of the difference between thermodynamic temperature, T, and the temperature estimated using the International Temperature Scale of 1990, T90, in the range 118 K to 303 K. Thermodynamic temperature was estimated using the technique of relative primary acoustic thermometry in the NPL-Cranfield combined microwave and acoustic resonator. Our values of (T-T90) agree well with most recent estimates, but because we have taken data at closely spaced temperature intervals, the data reveal previously unseen detail. Most strikingly, we see undulations in (T-T90) below 273.16 K, and the discontinuity in the slope of (T-T90) at 273.16 K appears to have the opposite sign to that previously reported.
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