2003Unpublished venueRequires access

Optimization of Peltier thermocouple using distributed Peltier effect

Igor Belov, Vladimir P. Volkov, O. Manyakin

Open publisher page 7 citations

Abstract

Calculations of maximum temperature difference and coefficient of performance of double segment Peltier thermocouple are presented. Distinction of thermoelectric properties of p- and n-type segments is taken into account. Obtained results are compared with measured characteristics of manufactured Peltier thermocouples. It is shown that efficiency of thermocouples using distributed Peltier effect can be improved if optimized thermoelectric properties of segments depending on temperature are used.

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What this paper is about

Calculations of maximum temperature difference and coefficient of performance of double segment Peltier thermocouple are presented. Distinction of thermoelectric properties of p- and n-type segments is taken into account. Obtained results are compared with measured characteristics of manufactured Peltier thermocouples. It is shown that efficiency of thermocouples using distributed Peltier effect can be improved if optimized thermoelectric properties of segments depending on temperature are used.

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OpenAlex reports 7 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Calculations of maximum temperature difference and coefficient of performance of double segment Peltier thermocouple are presented. Distinction of thermoelectric properties of p- and n-type segments is taken into account. Obtained results are compared with measured characteristics of manufactured Peltier thermocouples. It is shown that efficiency of thermocouples using distributed Peltier effect can be improved if optimized thermoelectric properties of segments depending on temperature are used.

Key concepts: Thermocouple, Thermoelectric effect, Computer science, Thermoelectric cooling, Materials science, Thermodynamics, Composite material, Physics

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