Javascript must be enabled to continue!
GASTONE: New Powertrain Concept for CNG Engines
View through CrossRef
<div class="section abstract"><div class="htmlview paragraph">The present concern in the reduction of CO<sub>2</sub> emissions occasioned by heavy duty trucks is leading to a technological evolution, among others, in powertrain electrification. Towards this objective, the EU has funded the project GASTone targeting the development of a new powertrain concept based on the energy recovery from the exhaust gases and kinetic losses in order to make possible the electrification of the main auxiliaries. This new concept will follow a cascade approach in which the exhaust gases energy will be recovered by the integration of an advanced thermoelectric generator followed by a turbo-generator. This system will be combined with a smart kinetic energy recovery device which will recover the energy losses in the deceleration periods of the vehicle. The recovered energy will be used in the electrified auxiliaries. The average performance in a Natural Gas Engine under constant conditions is about 38% (fuel efficiency); with this new concept is expected to rise it by 4% thanks to the engine improvement, by 1% due to the modification of the liquid charge air cooler, by 2% from the reduction of the belt drive, by 1% from the system strategy and management optimization and by 7% from the exhaust heat recovery. The project is in the initial design phase and a dynamic model has been developed to size the different components and to optimize the control strategy in order to minimize the fuel consumption of the engine for a target driving cycle.</div></div>
Title: GASTONE: New Powertrain Concept for CNG Engines
Description:
<div class="section abstract"><div class="htmlview paragraph">The present concern in the reduction of CO<sub>2</sub> emissions occasioned by heavy duty trucks is leading to a technological evolution, among others, in powertrain electrification.
Towards this objective, the EU has funded the project GASTone targeting the development of a new powertrain concept based on the energy recovery from the exhaust gases and kinetic losses in order to make possible the electrification of the main auxiliaries.
This new concept will follow a cascade approach in which the exhaust gases energy will be recovered by the integration of an advanced thermoelectric generator followed by a turbo-generator.
This system will be combined with a smart kinetic energy recovery device which will recover the energy losses in the deceleration periods of the vehicle.
The recovered energy will be used in the electrified auxiliaries.
The average performance in a Natural Gas Engine under constant conditions is about 38% (fuel efficiency); with this new concept is expected to rise it by 4% thanks to the engine improvement, by 1% due to the modification of the liquid charge air cooler, by 2% from the reduction of the belt drive, by 1% from the system strategy and management optimization and by 7% from the exhaust heat recovery.
The project is in the initial design phase and a dynamic model has been developed to size the different components and to optimize the control strategy in order to minimize the fuel consumption of the engine for a target driving cycle.
</div></div>.
Related Results
SS: CNG Transportation Technology in 2009, Marine CNG - Why hasn't it happened?
SS: CNG Transportation Technology in 2009, Marine CNG - Why hasn't it happened?
Abstract
Marine Compressed Natural Gas (CNG) is a technology that has evolved to a point where technical challenges no longer pose a hurdle to project development...
การวิเคราะห์เปรียบเทียบต้นทุนและผลได้ของการใช้ก๊าซ LPG และก๊าซ CNG ในรถยนต์
การวิเคราะห์เปรียบเทียบต้นทุนและผลได้ของการใช้ก๊าซ LPG และก๊าซ CNG ในรถยนต์
วิเคราะห์เปรียบเทียบต้นทุนและผลได้ทางเอกชน (Private cost-benefit analysis) โดยวิเคราะห์มูลค่าปัจจุบันผลตอบแทนสุทธิ (NPV) และ จุดคุ้มทุน (Break even analysis) แบ่งออกเป็น กรณีราคาเช...
CNG Application in Qatar
CNG Application in Qatar
Abstract
Natural gas has been considered as the most promising alternative fuel for its cleanliness and abundance. It has been widely replacing other conventional...
An Economic Study of CNG Floating Processing and Storage Platform and the Supporting CNG Carriers
An Economic Study of CNG Floating Processing and Storage Platform and the Supporting CNG Carriers
Abstract
An Economic Study of CNG Floating Processing and Storage Platform and the CNG Carriers to support it are presentenced. There are many small (Stranded) ga...
ANALISA KINERJA CNG COOLER PADA SISTEM CNG PLANT
ANALISA KINERJA CNG COOLER PADA SISTEM CNG PLANT
CNG Cooler is a heat exchanger in CNG Plant System which has function to reduce CNG temperature. CNG (Compressed Natural Gas) is natural gas which compressed by gas compressor from...
SS: CNG and Other LNG Alternatives- CNG Marine Gas Transport Solution: Tested and Ready
SS: CNG and Other LNG Alternatives- CNG Marine Gas Transport Solution: Tested and Ready
Abstract
EnerSea has advanced its design for the marine transport of compressed natural gas (CNG) through use of its proprietary technology, VOTRANSTM ("Volume Op...
A New Era in CNG Transportation
A New Era in CNG Transportation
Introduction
Floating Pipeline Company Incorporated (FPC Inc), a Canadian Corporation based in Halifax, Nova Scotia, is the licensed manufacturer for TransCanada ...
Means of filling gas-cylinder cars with compressed natural gas. Lecture № 8. Design features of stationary automobile gas filling compressor stations (CNG Stations)
Means of filling gas-cylinder cars with compressed natural gas. Lecture № 8. Design features of stationary automobile gas filling compressor stations (CNG Stations)
The classification and standard8size range of modern automobile gas-filling compressor stations (CNG stations) are given. A fragment of the CNG filling station master plan is prese...

