The effect of material, thickness and the magnitude of heat generated by microcombustor on heat distribution along thermal spreader for thermoelectric power generator are investigated. Impact of various materials and physical properties was studied upon sample 3 cm × 3 cm. The effect of thermal conductivity, specific heat capacity and thickness towards temperature uniformity of thermal spreader is observed. The result provides temperature profile of the thermal spreader dependencies of the source of heat. Results show that copper is the best thermal spreader material for thermoelectric power generator
Thermoelectric-power generation poses challenges, which are of fundamental and technological nature....
Thermoelectric generators (TEGs) are devices that convert temperature differences into electrical en...
Abstract—In this paper, we describe ongoing work to investi-gate the properties of the heat spreader...
The objective of this project is to improve the heat removal efficiency of heat spreader by replacin...
Thermoelectric Generator (TEG) provides unique advantages as compared to other heat engines as it is...
The concept of a Peltier effect is a direct current that through the connection of two thermoelectri...
This chapter deals with heat transfer challenges in the microdomain. It focuses on practical issues ...
Thermoelectric power generation converts heat into electrical power. The thermoelectric effect was d...
This chapter deals with heat transfer challenges in the microdomain. It focuses on practical issues ...
Thermoelectric Generator (TEG) provides unique advantages as compared to other heat engines as it is...
Recently, there is a need for increase in energy efficiency and more energy due to increase in the h...
The thermoelectric material is considered to a good choice to recycle the waste heat in the power an...
Berbagai usaha dilakukan untuk mencari sumber energi listrik baru, salah satunya dengan pembangkit l...
Annular thermoelectric generators can eliminate the thermal contact resistance formed due to geometr...
Today many processes generate a lot of waste heat, for example industries or cars. One way to make t...
Thermoelectric-power generation poses challenges, which are of fundamental and technological nature....
Thermoelectric generators (TEGs) are devices that convert temperature differences into electrical en...
Abstract—In this paper, we describe ongoing work to investi-gate the properties of the heat spreader...
The objective of this project is to improve the heat removal efficiency of heat spreader by replacin...
Thermoelectric Generator (TEG) provides unique advantages as compared to other heat engines as it is...
The concept of a Peltier effect is a direct current that through the connection of two thermoelectri...
This chapter deals with heat transfer challenges in the microdomain. It focuses on practical issues ...
Thermoelectric power generation converts heat into electrical power. The thermoelectric effect was d...
This chapter deals with heat transfer challenges in the microdomain. It focuses on practical issues ...
Thermoelectric Generator (TEG) provides unique advantages as compared to other heat engines as it is...
Recently, there is a need for increase in energy efficiency and more energy due to increase in the h...
The thermoelectric material is considered to a good choice to recycle the waste heat in the power an...
Berbagai usaha dilakukan untuk mencari sumber energi listrik baru, salah satunya dengan pembangkit l...
Annular thermoelectric generators can eliminate the thermal contact resistance formed due to geometr...
Today many processes generate a lot of waste heat, for example industries or cars. One way to make t...
Thermoelectric-power generation poses challenges, which are of fundamental and technological nature....
Thermoelectric generators (TEGs) are devices that convert temperature differences into electrical en...
Abstract—In this paper, we describe ongoing work to investi-gate the properties of the heat spreader...