The reuse or reduction of wasted heat supplies an excellent opportunity for cost saving in industrial and residential application. This paper deals with a Hybrid heat recovery system that reuses the thermal energy captured by exhaust gases to produce domestic hot water and generate electric power using thermoelectric generators (TEG). The heat recovery process is mainly affected by the temperature of exhaust gases. The effect of gases temperature on the performance of the system - water temperature and power generated - is studied including different residential applications. It shows that as the exhaust gases temperature increase the heat rate, water temperature, and power generated increases
The European Commission proposes to reduce CO2-emissions from heavy-duty vehicles by 35% by 2030 com...
The amount of energy wasted through the exhaust of an Internal Combustion Engine (ICE) vehicle is ro...
Energy demands in today’s world have increased and the main area of concerns is that approximately...
The reuse or reduction of wasted heat supplies an excellent opportunity for cost saving in industria...
Due to high dependence on Energy, researches on energies are of main concerns nowadays. Due to high ...
Heat recovery is the reutilization of lavished thermal energy. This paper proposes a hybrid heat rec...
The increasing growth of energy demand leads to issues associated with energy demand reduction and p...
Heat recovery is the reutilization of lavished thermal energy. This paper proposes a hybrid heat rec...
International audienceThis paper presents a parametric study that evaluates the heat that can be rec...
The demand for reducing fuel consumption and mitigating exhaust fumes accountable for the greenhouse...
Thermal energy recovery systems, based on thermoelectric generator (TEG) units, used in the internal...
This paper continued a detail review of heat pipe and thermoelectric generator application in indust...
Internal combustion Engines converts only a small portion of heat energy into useful work resulting ...
Currently, a great deal of the automotive industry’s R&D effort is focused on improving overall vehi...
High efficiency thermoelectric generators (TEG) can recover waste heat from both industrial and priv...
The European Commission proposes to reduce CO2-emissions from heavy-duty vehicles by 35% by 2030 com...
The amount of energy wasted through the exhaust of an Internal Combustion Engine (ICE) vehicle is ro...
Energy demands in today’s world have increased and the main area of concerns is that approximately...
The reuse or reduction of wasted heat supplies an excellent opportunity for cost saving in industria...
Due to high dependence on Energy, researches on energies are of main concerns nowadays. Due to high ...
Heat recovery is the reutilization of lavished thermal energy. This paper proposes a hybrid heat rec...
The increasing growth of energy demand leads to issues associated with energy demand reduction and p...
Heat recovery is the reutilization of lavished thermal energy. This paper proposes a hybrid heat rec...
International audienceThis paper presents a parametric study that evaluates the heat that can be rec...
The demand for reducing fuel consumption and mitigating exhaust fumes accountable for the greenhouse...
Thermal energy recovery systems, based on thermoelectric generator (TEG) units, used in the internal...
This paper continued a detail review of heat pipe and thermoelectric generator application in indust...
Internal combustion Engines converts only a small portion of heat energy into useful work resulting ...
Currently, a great deal of the automotive industry’s R&D effort is focused on improving overall vehi...
High efficiency thermoelectric generators (TEG) can recover waste heat from both industrial and priv...
The European Commission proposes to reduce CO2-emissions from heavy-duty vehicles by 35% by 2030 com...
The amount of energy wasted through the exhaust of an Internal Combustion Engine (ICE) vehicle is ro...
Energy demands in today’s world have increased and the main area of concerns is that approximately...