A Transient Hot Wire Thermal Conductivity Apparatus for Fluids

Установка для измерения теплопроводности жидкостей и газов методом переходящей нагретой нити
H. M. Roder
1981-09-01

Wheatstone bridgehigh-pressure fluidskinetic theory of gasesthermal conductivitytransient hot wire
A new apparatus for measuring the thermal conductivity of fluids is described. This is an absolute method utilizing a transient hot wire. Measurements are made with a 12.7 p,m diameter platinum wire at real times of up to 1 second. The data acquisition system includes a minicomputer and a digital voltmeter. The experimental core of the system incorporates a compensating hot wire in a Wheatstone bridge circuit. The cell containing the core of the apparatus is designed to accommodate pressures from 0 to 70 MPa and temperatures from 70 to 320 K. Oxygel1 was measured over a wide range of physical states including the dilute gas, the moderately dense gas, the near critical region, the compressed liquid states, and the vapor ai temperatures below the critical temper ature. Performance checks of the apparatus were conducted with nitrogen, helium and argon. Measurement of rare gases allows a direct comparison to the kinetic theory of gases through the viscosity. A second check looks at the variation of the measured thermal conductivity as a function of the applied power. The precision (2 a) of the new system is between 0.5 and 0.8 percent for wire temperature transients of 4 to 5 K, while the accuracy is estitnated at around 1.5 percent.
1
A new absolute transient hot-wire apparatus measures fluid thermal conductivity using a 12.7 μm platinum wire and real-time measurements up to 1 second.
2
Nitrogen, helium, and argon performance checks supported validation through kinetic-theory comparisons and power-dependence tests.
3
Oxygen was measured across dilute and dense gas, near-critical, compressed-liquid, and subcritical vapor states.
4
Precision is 0.5–0.8% for 4–5 K wire-temperature transients, with estimated accuracy of approximately 1.5%.
5
The apparatus uses a compensating hot wire in a Wheatstone bridge with minicomputer and digital-voltmeter data acquisition.
6
The measurement cell accommodates pressures from 0 to 70 MPa and temperatures from 70 to 320 K.

Thermal conductivity of fluids, characterized using oxygen across gas, near-critical, compressed-liquid, and vapor states

Absolute transient-hot-wire measurement performance, including thermal-conductivity values, pressure- and temperature-range applicability, precision, accuracy, and validation against reference gases and kinetic-theory behavior

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1981-09-01
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H. M. Roder
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