Heat recovery systems & CHP, ISSN 0890-4332, 1987
Journal
SAE technical paper series, Volume 780686.
Truck engines currently reject up to 40% of the total fuel energy in the exhaust. Because of increasing petroleum costs there is growing interest in techniques...
Diesel / Compression Ignition engines | Waste heat utilization
Diesel / Compression Ignition engines | Waste heat utilization
eJournal
1976, BSRIA bibliography, ISBN 9780860220251, Volume 104/76, 42 p. --
Book
SAE technical paper series, Volume 2013-01-2433.
The paper presents a novel concept of very efficient transportation engines for operation with CNG, LNG or LPG. The combustion system permits mixed...
Gas engines | Waste heat utilization | Engine cooling systems
Gas engines | Waste heat utilization | Engine cooling systems
eJournal
SAE technical paper series, Volume 2013-01-2433.
The paper presents a novel concept of very efficient transportation engines for operation with CNG, LNG or LPG. The combustion system permits mixed...
Gas engines | Waste heat utilization | Engine cooling systems
Gas engines | Waste heat utilization | Engine cooling systems
eJournal
1963, 406
Book
SAE technical paper series, Volume 2016-01-8084.
In order to comply with demanding Greenhous Gas (GHG) standards, future automotive engines employ advanced engine technologies including waste heat recovery...
Environmental technologies | Thermodynamics | Diesel / Compression Ignition engines | Waste heat utilization | Emissions
Environmental technologies | Thermodynamics | Diesel / Compression Ignition engines | Waste heat utilization | Emissions
eJournal
SAE technical paper series, Volume 2001-01-1021.
The potential for thermoelectric power generation via waste heat recovery onboard automobiles to displace alternators and/or provide additional charging to a...
Air conditioning | Waste heat utilization | Vehicle performance | Engine cooling systems | Radiators
Air conditioning | Waste heat utilization | Vehicle performance | Engine cooling systems | Radiators
eJournal
1984, 2nd ed. --, Library bibliography / BSRIA, ISBN 0860221512, Volume 104, 31
Book
SAE technical paper series, Volume 2015-01-2792.
The automotive industry have become more and more interested in recovering waste heat from internal combustion engines, especially with future, tighter fuel...
Waste heat utilization | Thermal management | Engine cooling systems | Radiators
Waste heat utilization | Thermal management | Engine cooling systems | Radiators
eJournal
SAE technical paper series, Volume 2016-01-2161.
In this research, the Mg2Si1-xSnx thermoelectric material is used in the exhaust temperature difference power-generating system, and the material's heat...
Materials | Waste heat utilization | Thermal management | Coolants | Exhaust systems
Materials | Waste heat utilization | Thermal management | Coolants | Exhaust systems
eJournal
SAE technical paper series, Volume 860588.
Cross-flow heat exchangers, serving as hydride-containing reactors and aimed to absorb high temperature heat of exhaust gases, for the purpose of driving a...
Air conditioning | Diesel / Compression Ignition engines | Parts | Buses | Waste heat utilization | Tests and Testing | Heat exchangers
Air conditioning | Diesel / Compression Ignition engines | Parts | Buses | Waste heat utilization | Tests and Testing | Heat exchangers
eJournal
Journal of heat recovery systems, ISSN 0198-7593, 1981
Journal
Energy, ISSN 0360-5442, 10/2018, Volume 160, pp. 1 - 2
The growing energy demands has led to a soaring level of greenhouse gas (GHG) production, with the implementation of EU legislations, the production of GHG and...
Waste heat recovery | Heat exchangers | Energy storage | ENERGY | MANAGEMENT | THERMODYNAMICS | ENERGY & FUELS | PERFORMANCE | GAS | ELECTRICITY GENERATOR | SYSTEMS | EXCHANGERS | Waste management | Pyrolysis | Thermodynamics | Industrial wastes | Refuse and refuse disposal | Air pollution | Fossil fuels | Global warming | Energy minerals | Mechanical engineering | Greenhouse gases
Waste heat recovery | Heat exchangers | Energy storage | ENERGY | MANAGEMENT | THERMODYNAMICS | ENERGY & FUELS | PERFORMANCE | GAS | ELECTRICITY GENERATOR | SYSTEMS | EXCHANGERS | Waste management | Pyrolysis | Thermodynamics | Industrial wastes | Refuse and refuse disposal | Air pollution | Fossil fuels | Global warming | Energy minerals | Mechanical engineering | Greenhouse gases
Journal Article
SAE technical paper series, Volume 2012-01-1942.
In any internal combustion engine, the amount of heat rejected from the engine, and associated systems, is a result of the engine inefficiency. Successfully...
Hybrid engines | Waste heat utilization
Hybrid engines | Waste heat utilization
eJournal
18.
Full Text
Experimental Validation of a Dynamic Waste Heat Recovery System Model for Control Purposes
SAE technical paper series, Volume 2013-01-1647.
This paper presents the identification and validation of a dynamic Waste Heat Recovery (WHR) system model. Driven by upcoming CO₂ emission targets and...
Waste heat utilization | Exhaust systems
Waste heat utilization | Exhaust systems
eJournal
19.
Full Text
Experimental Validation of a Dynamic Waste Heat Recovery System Model for Control Purposes
SAE technical paper series, Volume 2013-01-1647.
This paper presents the identification and validation of a dynamic Waste Heat Recovery (WHR) system model. Driven by upcoming CO₂ emission targets and...
Waste heat utilization | Exhaust systems
Waste heat utilization | Exhaust systems
eJournal
SAE technical paper series, Volume 2016-01-0228.
Vehicle exhaust waste-heat recovery with thermoelectric power generators can improve energy efficiency, as well as vehicle fuel economy. In the conventional...
Computer simulation | Waste heat utilization | Thermal management
Computer simulation | Waste heat utilization | Thermal management
eJournal
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