Dependence of Seebeck coefficient on a load resistance and energy conversion efficiency in a thermoelectric composite

被引:3
|
作者
Yamashita, Osamu
Odahara, Hirotaka
Ochi, Takahiro
Satou, Kouji
机构
[1] Mat Sci Co Ltd, Osaka 5670046, Japan
[2] Adv Mat Co Ltd, Osaka 5770827, Japan
[3] Ehime Univ, Fac Engn, Matsuyama, Ehime 7908577, Japan
关键词
electronic materials; crystal growth; thermal conductivity;
D O I
10.1016/j.materresbull.2007.07.003
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The thermo-emf Delta Vand current Delta I generated by imposing the alternating temperature gradients (ATG) at a period of Tand the steady temperature gradient (STG) on a thermoelectric (TE) composite were measured as a function of t, where t is the lapsed time and T was varied from 60 to or infinity s. The STG and ATG were produced by imposing steadily and alternatively a source voltage Vin the range from 1.0 to 4.0 Von two Peltier modules sandwiching a composite. Delta T, Delta V Delta l and V-p oscillate at a period Tand their waveforms vary significantly with a change of T, where Delta V and Vp are the voltage drops in a load resistance R-L and in resistance R-p of two modules. The resultant Seebeck coefficient |alpha| = |Delta| I Delta T/Delta Tof a composite under the STG was found to be expressed as |alpha| = |alpha(0|) (1-R-comp/R-T), where R-T is the total resistance of a circuit for measuring the output signals and R,,,,,p is the resistance of a composite. The effective generating power Delta(Weff) has a local maximum at T = 960 s for the p-type composite and at T = 480 s for the n-type one. The maximum energy conversion efficiency eta of the p- and n-type composites under the ATG produced by imposing a voltage of 4.0 V at an optimum period were 0.22 and 0.23% at Delta T-eff, = 50 K, respectively, which are 42 and 43% higher than those at Delta T= 42 K under the STG. These maximum eta for a TE composite sandwiched between two Peltier modules, were found to be expressed theoretically in terms of Rp, RT, RL, alpha(p) and alpha, where up and alpha are the resultant Seebeck coefficients of Peltier modules and a TE composite. (c) 2007 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1785 / 1803
页数:19
相关论文
共 50 条
  • [21] Energy Conversion Efficiency of an Exponentially Graded Thermoelectric Material
    Jin, Zhi-He
    Wallace, Travis T.
    Lad, Robert J.
    Su, Ji
    JOURNAL OF ELECTRONIC MATERIALS, 2014, 43 (02) : 308 - 313
  • [22] Analysis on conversion of waste heat into electrical energy using different seebeck coefficient materials
    Seralathan, S.
    Rao, Nagarapu Naga Mohan
    Lella, Joshi Vardhan
    Srikanth, Nalabolu
    Sivakumar, D. Dayyala
    Hariram, V
    MATERIALS TODAY-PROCEEDINGS, 2020, 33 : 3702 - 3707
  • [23] Enhancing energy conversion efficiency of electromagnetic repulsion mechanisms through resistance coefficient optimization model
    Cui, Puyi
    Li, Guoli
    Zhang, Qian
    SCIENTIFIC REPORTS, 2024, 14 (01):
  • [24] Electrical Conductivity, Thermal Behavior, and Seebeck Coefficient of Conductive Films for Printed Thermoelectric Energy Harvesting Systems
    Krishnamraju Ankireddy
    Akanksha K. Menon
    Brian Iezzi
    Shannon K. Yee
    Mark D. Losego
    Jesse S. Jur
    Journal of Electronic Materials, 2016, 45 : 5561 - 5569
  • [25] Electrical Conductivity, Thermal Behavior, and Seebeck Coefficient of Conductive Films for Printed Thermoelectric Energy Harvesting Systems
    Ankireddy, Krishnamraju
    Menon, Akanksha K.
    Iezzi, Brian
    Yee, Shannon K.
    Losego, Mark D.
    Jur, Jesse S.
    JOURNAL OF ELECTRONIC MATERIALS, 2016, 45 (11) : 5561 - 5569
  • [26] Thermoelectric converter with stepwise legs for high energy conversion efficiency
    Maksymuk, Mykola
    Parashchuk, Taras
    Burbelko, Andriy
    Wojciechowski, Krzysztof T.
    CHEMICAL ENGINEERING JOURNAL, 2023, 472
  • [27] Temperature Distribution in a Nonprismatic Thermoelectric Leg and the Energy Conversion Efficiency
    Jin, Zhihe
    ASME JOURNAL OF HEAT AND MASS TRANSFER, 2024, 146 (05):
  • [28] Relationship between thermoelectric figure of merit and energy conversion efficiency
    Kim, Hee Seok
    Liu, Weishu
    Chen, Gang
    Chua, Ching-Wu
    Ren, Zhifeng
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2015, 112 (27) : 8205 - 8210
  • [29] Improvement of the efficiency of thermoelectric energy conversion by utilizing potential barriers
    Nishio, K
    Hirano, T
    JAPANESE JOURNAL OF APPLIED PHYSICS PART 1-REGULAR PAPERS BRIEF COMMUNICATIONS & REVIEW PAPERS, 1997, 36 (1A): : 170 - 174
  • [30] Energy Conversion Efficiency of Thermoelectric Power Generators With Cylindrical Legs
    Pang, Dandan
    Zhang, Aibing
    Wen, Zhenfei
    Wang, Baolin
    Wang, Ji
    JOURNAL OF ENERGY RESOURCES TECHNOLOGY-TRANSACTIONS OF THE ASME, 2022, 144 (03):