Characteristics of electric power for thermoelectric generator with tube thickness

열전관의 두께변화에 따른 열전발전기의 발전 특성

  • Woo, B.C. (Korea Electrotechnology Research Institute) ;
  • Lee, H.W. (Korea Electrotechnology Research Institute) ;
  • Lee, D.Y. (Korea Electrotechnology Research Institute) ;
  • Kim, I.J. (Korea Electrotechnology Research Institute)
  • 우병철 (한국전기연구소 신소재응용연구그룹) ;
  • 이희웅 (한국전기연구소 신소재응용연구그룹) ;
  • 이동윤 (한국전기연구소 신소재응용연구그룹) ;
  • 김익준 (한국전기연구소 신소재응용연구그룹)
  • Published : 2001.07.18

Abstract

The purpose of this study is to manufacture and test a thermoelectric generator which converts unused energy from close-at-hand sources, such as garbage incineration heat and industrial exhaust, to electricity. A manufacturing process and the properties of a thermoelectric generator are discussed before simulation the thermal stress and thermal properties of a thermoelectric module located between an aluminum tube and alumina plate. We can design the thermoelectric modules having the good properties of thermoelectric generation. Resistivity of thermoelectric module for thermoelectric generation consisting of 62 cells was $0.15{\sim}0.4{\Omega}$. The maximum power of thermoelectric generator using thermoelectric generation modules can be defined as temperature function, and in this case. It can be analogized the lineal relation between current and voltage characteristics as function of temperature. The thermoelectric generator using 32 thermoelectric modules was assembled with 32 directly connected modules that they constrained for two kinds of heat transfer tube with key joints.

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