Title :
Low temperature Seebeck coefficient measurement: Possible sources of uncertainty and spurious emf
Author :
Sivakumar, K.M. ; Singh, R.K. ; Gaur, N.K. ; Shelke, Vilas
Author_Institution :
RKDF Inst. of Sci. & Technol., Bhopal, India
Abstract :
In the present work we have addressed the possible sources of uncertainty and spurious emf in the low temperature Seebeck coefficient measurement (dc method) from 77 to 300 K in an apparatus based on copper block sandwich type design using a YBCO high temperature superconducting sample. Two identical differential copper-constantan thermocouples were used under different conditions for gradient measurement. Similarly, two identical pairs of signal leads (Copper) were used to measure the signal across the sample. A systematic comparison has been made by comparing the values of gradient and signal measured across the thermocouples and signal leads, which were connected/mounted under different methods and techniques. Besides, measurements were performed under different methods like slow cool down, cool down in an exchange gas atmosphere, natural warm-up, steady state cool down etc and a comparison has been made.
Keywords :
Seebeck effect; barium compounds; copper; measurement uncertainty; thermocouples; voltage measurement; yttrium compounds; 77 to 300 K; Cu; Cu block sandwich type design; DC method; YBaCuO; YBaCuO high temperature superconducting sample; differential copper-constantan thermocouples; exchange gas atmosphere; gradient measurement; low temperature Seebeck coefficient measurement; measurement uncertainty; natural warm-up; signal leads; slow cool down; spurious EMF; steady state cool down; Atmosphere; Atmospheric measurements; High temperature superconductors; Isothermal processes; Stability; Steady-state; Temperature distribution; Temperature measurement; Thermal conductivity; Yttrium barium copper oxide;
Conference_Titel :
Thermoelectrics, 2002. Proceedings ICT '02. Twenty-First International Conference on
Print_ISBN :
0-7803-7683-8
DOI :
10.1109/ICT.2002.1190340