A heat transfer model that couples radiation/conduction/convection heat transfer with electrical potential distribution is developed for a thermoelectric converter (TEC) subjected to concentrated solar radiation. The 4-leg TEC module consists of two pairs of p-type La1.98Sr0.02CuO4 and n-type CaMn0.98Nb0.02O3 legs that are sandwiched between two ceramic Al2O3 hot/cold plates and connected electrically in series and thermally in parallel. The governing equations for heat transfer and electrical potential are formulated, discretized and solved numerically by applying the finite volume (FV) method. The model is validated in terms of experimentally measured temperatures and voltages/power using a set of TEC demonstrator modules, subjected to a ...
In a direct thermal coupling of a concentrated photovoltaic-thermoelectric (CPV-TE) system, copper p...
We have designed a new solar thermoelectric cogeneration system consisting of an evacuated tubular s...
The recent innovations in thermoelectric generating materials have led to exceptional technologies t...
A heat transfer model that couples radiation/conduction/convection heat transfer with electrical pot...
The direct conversion of concentrated high temperature solar heat into electrical energy was demonst...
Abstract Thermoelectricity does not only serve to profitably recover waste heat from many technical ...
The study presents a detailed analysis of thermoelectric conversion for power generation, and demons...
This research was conducted to determine the limiting values of the geometric concentration when use...
Thermoelectric power generation (TEG) is examined in case of the radiation heating. A constant heat ...
The efficient usage of energy at all stages along the energy supply chain and the utilization of ren...
Aim. This article is devoted to the conversion of solar radiation into electricity using the joint e...
System design of a thermoelectric (TE) power generation module is pursued in order to improve the TE...
The optimum implementation of a thermoelectric generator (TEG) is investigated. In order to study th...
A general theoretical model of thermoelectric generation (TEG) is proposed based on the one-dimensio...
Photon Enhanced Thermionic Emission (PETE) is a new concept in solar energy conversion, combining th...
In a direct thermal coupling of a concentrated photovoltaic-thermoelectric (CPV-TE) system, copper p...
We have designed a new solar thermoelectric cogeneration system consisting of an evacuated tubular s...
The recent innovations in thermoelectric generating materials have led to exceptional technologies t...
A heat transfer model that couples radiation/conduction/convection heat transfer with electrical pot...
The direct conversion of concentrated high temperature solar heat into electrical energy was demonst...
Abstract Thermoelectricity does not only serve to profitably recover waste heat from many technical ...
The study presents a detailed analysis of thermoelectric conversion for power generation, and demons...
This research was conducted to determine the limiting values of the geometric concentration when use...
Thermoelectric power generation (TEG) is examined in case of the radiation heating. A constant heat ...
The efficient usage of energy at all stages along the energy supply chain and the utilization of ren...
Aim. This article is devoted to the conversion of solar radiation into electricity using the joint e...
System design of a thermoelectric (TE) power generation module is pursued in order to improve the TE...
The optimum implementation of a thermoelectric generator (TEG) is investigated. In order to study th...
A general theoretical model of thermoelectric generation (TEG) is proposed based on the one-dimensio...
Photon Enhanced Thermionic Emission (PETE) is a new concept in solar energy conversion, combining th...
In a direct thermal coupling of a concentrated photovoltaic-thermoelectric (CPV-TE) system, copper p...
We have designed a new solar thermoelectric cogeneration system consisting of an evacuated tubular s...
The recent innovations in thermoelectric generating materials have led to exceptional technologies t...