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The thermal probe testing technology and its theory were introduced.
Thermal properties were investigated using the thermal probe method (ASTM D5334).
The thermal conductivity was measured by a thermal probe at room temperature.
Another is transient thermal probe method using the temperature variation of the thermal probe and Monte Carlo inversion method to calculate the heat transfer parameters of the pebble bed.
With this in view, efforts were made to develop a field thermal probe, which works on the principle of transient method and is a magnified version of the laboratory thermal probe developed by the authors.
Based on the theory, a new instrument is designed employing three components of electrical current to drive a thermal probe.
A novel design of a thermal probe to measure the energy influx of RF plasma has been achieved.
The procedure is based on the measurement of temporal slope of a thermal probe (substrate) during beam operation.
Here, a contact-free method using a pyrometer and the sample as a thermal probe is presented.
The measurements, for which a thermal probe was designed, are based on time evolution of the substrate temperature during the deposition process.
In the work described here, a thermal probe based on the hot wire method was used to measure the thermal conductivity of compacted bentonite specimens.
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