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Titlebook: Alternative Fuels and Advanced Combustion Techniques as Sustainable Solutions for Internal Combustio; Akhilendra Pratap Singh,Dhananjay Ku

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https://doi.org/10.1057/9781137489128carbon mono-oxide (CO), 10.71% in unburned hydrocarbon (HC), 4.29% in carbon dioxide (CO.) and 17.5% increase in NO. emission, respectively. Though the performance characteristics seem to be lesser in the case of WCO blends, WCO10 showed very less reduction among the other test fuels. Also, combusti
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https://doi.org/10.1007/978-3-031-17523-7 carbon monoxide (CO) and unburned hydrocarbon (HC) decreased for 1,4-dioxane emulsified fuel at 27° bTDC. Besides, oxides of nitrogen (NO.) escalated in the advanced injection timing. To sum up, except for NO., 1,4-dioxane performed better at the injection timing of 27° bTDC concerning the performa
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https://doi.org/10.1007/978-94-010-1615-5sisted spark-ignition (MASI) system. The major objective of these advanced ignition system is to increase the supplied ignition energy and induce multi-point ignition to support the development of lean-burn SI engines. The principle of operation, fundamental understanding, engine characteristics, ad
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Part I. Beyond the Doubt of a Shadowoducts and active radicals ignite a lean mixture—is a robust yet straightforward ignition strategy that has potential to solve challenges encountered at lean-burn operation. The current study explores the fundamentals as well as the scalability aspect of the TJI strategy. Even though the TJI system
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Thought, Language and Philosophymbustion technologies to comply with strict emission norms being adopted in future. Gasoline compression ignition (GCI) is advanced and promising low-temperature combustion (LTC) technology, which takes advantage of higher volatility and auto-ignition temperature of gasoline-like fuels and higher co
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https://doi.org/10.1007/978-94-010-1615-5lations are performed on two piston bowl designs, base and modified designs. They differ in geometric parameters of the bowl with the identical compression ratio and injection parameters. The fuel distribution, in-cylinder gas temperature and squish flow are analyzed to understand the effect of the
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