2017
DOI: 10.1088/1742-6596/52/1/012096
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Prospects for energy efficiency improvement and reduction of emissions and life cycle costs for natural gas vehicles

Abstract: Abstract. This work is devoted to the experimental investigation of the possibilities to reduce greenhouse gas emissions and to increase energy efficiency of engines that use natural gas as the main fuel and the analysis of economic efficiency of use of dual fuel engines in vehicles compared to conventional diesel. The results of experimental investigation of a 190 kW dualfuel engine are presented; it is shown that quantitative and qualitative working process control may ensure thermal efficiency at the same l… Show more

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Cited by 6 publications
(3 citation statements)
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References 14 publications
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“…CNG has lower life cycle costs and fuel cost in most analyses, with values ranging from 50% lower life cycle costs than diesel (Kozlov et al, 2017), to 2% reduction (Sen et al, 2017), to 16% average increase (Sen et al, 2019). CNG is most appropriate for large fleets that conduct urban operations and can support private infrastructure (Askin et al, 2015) and, considering the lower cost of CNG compared to diesel (Grigoratos et al, 2016), fleets can pay back the incremental vehicle cost via the use of low-cost natural gas fuel (Cai et al, 2017).…”
Section: Economic Analysesmentioning
confidence: 99%
“…CNG has lower life cycle costs and fuel cost in most analyses, with values ranging from 50% lower life cycle costs than diesel (Kozlov et al, 2017), to 2% reduction (Sen et al, 2017), to 16% average increase (Sen et al, 2019). CNG is most appropriate for large fleets that conduct urban operations and can support private infrastructure (Askin et al, 2015) and, considering the lower cost of CNG compared to diesel (Grigoratos et al, 2016), fleets can pay back the incremental vehicle cost via the use of low-cost natural gas fuel (Cai et al, 2017).…”
Section: Economic Analysesmentioning
confidence: 99%
“…The authors believe that their proposed methodology can be used in future connected vehicles, equipped with computing power, data storage capability and improved sensor technology to optimize emissions depending on the spatial location. The study [11] was devoted to a pilot research of the potential to reduce the greenhouse gas emissions and to improve the engines' energy efficiency using natural gas as the main fuel, and vehicle's dual-fuel engines on compared to conventional diesel engines. The article authors have performed a technical and economic assessment of the dual-fuel engines used in heavy-duty vehicles, taking into account the entire life cycle.…”
Section: Environmental Problems Caused By Motorizationmentioning
confidence: 99%
“…The project was aimed toward developing a gas-fueled engine family derived from the diesel engine that was newly developed by the aforementioned HD vehicle manufacturer. One can find the details on the project and its results in References [7][8][9]. The main outcomes of the project were the gas-fueled engines (see example in Figure 1) operating with the Otto and Miller thermodynamic cycles.…”
mentioning
confidence: 99%