Trends in education, 2013 (vol. 6), issue 1

TVV 2013, 6(1):159-162

DESIGN OF MEASURING CHAIN FOR SENZOR TEMPERATURE IN THERMOSYPHON

VALENTOVÁ Karina, ČERNECKÝ Jozef
Katedra environmentálnej techniky, Fakulta environmentálnej a výrobnej techniky, TU vo Zvolene, ©tudentská 26, 960 53 Zvolen, SR

This paper deals with the design of temperature measurement chain, which is required for measurement of temperature in thermosyphon. The proposal of the measurement chain will be used as a framework of PhD thesis, which deals with the efficient transmission of heat in the heat pipe. With use of a measuring chain can be observed temperature changes during heating in the evaporation part, in adiabatic and condensation part of thermosyphon. Designed temperature measuring chain use LabView software and can be used in a laboratory measurement in subject Process engineering.

Keywords: temperature, measuring chain temperature, thermosyphon

Published: July 1, 2013  Show citation

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VALENTOVÁ, K., & ČERNECKÝ, J. (2013). DESIGN OF MEASURING CHAIN FOR SENZOR TEMPERATURE IN THERMOSYPHON. Trends in education6(1), 159-162
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References

  1. BRODNIANSKÁ, Z. - KONIAR, J. Vplyv medzných vrstiev na prenos tepla okolo rovinných a tvarovaných povrchov. In Trendy ve vzdělávání 2011: sborník z medzinárodní konference TVV 2011. Olomouc: Univerzita Palackého v Olomouci. 2011, 38 - 41 s. ISBN 978-80-86768-34-2.
  2. CHENG, K. C. Some observations on Carnot cycle as the genesis of the heat pipe and thermosyphon. In International Journal of Mechanical Engineering Education. Canada: 1998.
  3. CHUDÝ, V. - PALENČÁR, R. - KUREKOVÁ, E. - HALAJ, M. Meranie technických veličín. Bratislava: STU, 1999, 678 s. ISBN 80-227-1275-2.
  4. KONIAR, J. - BRODNIANSKÁ, Z.: Vizualizácia teplotných polí okolo zakrivených povrchov pomocou termovízie. In Trendy ve vzdělávání 2012: sborník příspěvku z medzinárodní vědecko-odborné konference TVV 2012 - Olomouc: GEVAK s.r.o, 2012, 134 - 137 s. ISBN 978-80-86768-36-6.
  5. MATSUMOTO, T. - KOBAYASHI, Y. Effect of Non-condensable Gas on the Vapor Flow in Thermosyphon. (In Japanese), Asakura Pub. Co., 1985.
  6. VLACH, J. - HAVLÍČEK, J. - VLACH, M. Začínáme s LabVIEW. 1. Praha: BEN, 2008, 248 s. ISBN 978-80-7300-245-9.

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