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◆ Heat Transfer2026-02-03· Thermoelectric effect

The Question of Thermoelectric Devices Electrical Resistance—A Practical Investigation From a Peltier Effect (Thermoelectric Cooler/Thermoelectric Heater) Perspective

Nganyang Paul Bayendang, Mohamed Tariq Kahn, Vipin Balyan

原始摘要(英文原文)· Original abstract
ABSTRACT Thermoelectric devices (TEDs) intrinsic electrical resistance is fundamental to its operation. This internal electrical resistance value negatively affects a TED's performance when it is operated as a thermoelectric cooler (TEC), and positively affects a TED when operated as a thermoelectric heater (TEH). TEDs inherent electrical resistance value is temperature dependent, making it difficult to measure/know the exact value. As a result, it is hardly published/discussed in details in most technical/scholarly works. This study practically researched and present in detailed, TEDs electrical resistance from a Peltier effect (TEC/TEH) perspective. Sixteen identical TEDs were in turns operated as TECs (until maximum cooling) and TEHs (at 0, 5, and 10 min of operation) with 4, 6, 8, 10, and 12 V direct current (DC) power supply. A total of 320 observations were made to practically and accurately determine the TEDs electrical resistance to be mostly between 3Ω and 4Ω and furthermore, a novel analytical framework based on power regression analysis was introduced as the study highlight, to validate it. It was employed to easily and accurately compute the ×16 TEDs electrical resistance mean at 12, 10, 8, 6 and 4 V to be respectively 3.43Ω, 3.38Ω, 3.34Ω, 3.33Ω and 3.34Ω; as well as their combined final mean to be 3.39Ω; with corresponding standard deviations of 0.227Ω, 0.211Ω, 0.213Ω, 0.222Ω, 0.248Ω; as well as 0.224Ω.
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The Question of Thermoelectric Devices Electrical Resistance—A Practical Investigation From a Peltier Effect (Thermoelectric Cooler/Thermoelectric Heater) Perspective — 科研速览 Science Skim