PROBLEM SOLUTION FOR CONSTRUCTION OF THERMAL CONDUCTIVITY METER FOR THERMAL INSULATION MATERIALS
Abstract
The problems of constructing thermal conductivity meter for thermal insulating materials areconsidered in the article. Different versions of the constituent elements of the device are given.
Three ways to assemble thermal conductivity meter (three structural model of a framework) are
worked out and produced. Selected balanced circuit of the meter eliminates the need for heat meter
in the instrument, which is quite problematic measurement means. The tests show satisfactory reliability
and acceptable accuracy of thermal conductivity meter. Positive experience of the use of the
meter in the laboratory and a number of scientific and research work is indicated. The meter is also
suitable for measuring thermal resistance of the thermal conductivity of the sample, including a multilayer
one.
Keywords: thermal conductivity coefficient, heat-measuring cell, heat flow density, heater,
cooling radiator, heat meter, thermal insulation materials.
References
Bogoyavlenskiy A.I., Platonov A.S., Hankov S.I. Method of measuring thermal resistance of a uniform
insulation layer Thermal Engineering. 2008. Vol. 55. no 7. pp. 579–581. DOI: 10.1134/S0040601508070094.
Bogoyavlenskiy A.I., Isakov P.G., Lapovok Ye.V., Khankov S.I. Devices for measuring thermal resistance
of building enclosures by means of contact methods under steady-state conditions. Thermal Engineering.
Vol. 56. no 3. pp. 239-244. DOI: 10.1134/S0040601509030094
Evdokimov A.S., Kozintsev V.M., Mel'nik O.E., Popov A.L., Stoyanov S.V., Chelyubeev D.A. [A simple
method for determining the thermal conductivity of the bounded plate]. Vestnik MGSU [Bulletin MGSU], 2014.
no. 2. pp. 114–124.
Platunov E.S., Buravoy S.E., Kurepin V.V., Petrov. G.S. Teplofizicheskie izmereniya i pribory [Thermophysical
measurements and instrumentation], Leningrad,Engineering, Leningrad. Dep-of, 1986. 256 p.
Gerashhenko, O.A. Osnovy teplometrii [Fundamentals of thermal measurements], Kiev, Naukova Dumka,
192 p.
Afanas'ev V.N., Afonin A.A., Isaev S.I. and others Laboratornyy praktikum po termodinamike i teploperedache:
Ucheb. posobie dlya vuzov [Laboratory practical work on thermodynamics and heat transfer: manual for
high schools], Moscow Higher School, 1988. 216 p.
processes]. Moscow, Energy, 1969. 392 p.
Platunov E.S. Teplofizicheskie izmereniya v monotonnom rezhime [Thermophysical measurements in a
monotone mode]. Leningrad, Energy, 1973. 144 p.
Yaryshev N.A. Teoreticheskie osnovy izmereniya nestatsionarnoy temperatury [Theoretical Foundations
of measuring non-stationary temperature]. Leningrad, Energoatomizdat, 1990. 256 p.
Gordov A.N., Zhagullo O.M., Ivanova A.G. Osnovy temperaturnykh izmereniy [Fundamentals of temperature
measurements]. Moscow, Energoatomizdat, 1992. 304 p.
Bulat L.P. Termoyelektricheskoe okhlazhdenie: Tekst lekciy. [Thermoelectric cooling: Text of lectures].
St. Petersburg, SPbGUNiPT, 2002. 147 p.
Sapozhnikov S.Z., Mityakov V.Yu., Mityakov A.V., Mozhayskiy S.A. State and prospects of development of
gradient calorimetry Thermal Engineering. 2009. Vol. 56. no 3. pp. 181–190. DOI: 10.1134/S004060150903001X
Panferov V.I., Emel'yanov V.P., Kalyagin G.I. [Development of Thermal Conductivity of thermal insulation
materials] Kachestvo vnutrennego vozduha i okruzhayushhey sredy: materialy III Mezhdunarodnoy nauchnoy
konferentsii.[ Indoor air quality and the environment: Proceedings of the III International Scientific Conference].
Volgograd: VolgGASU, 2005. pp. 226–232.
Panferov V.I., Emel'yanov V.P., Kalyagin G.I. [Development of Thermal Conductivity meter of thermal
insulation materials]. Vestnik UGTU-UPI. Stroitel'stvo i obrazovanie. [Construction and Education]. 2005.
no. 14. pp. 353–355. (in Russ).





