Who invented the first combustion engine for cars?
Answers from top 19 papers
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Papers (19) | Insight |
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46 Citations | Measurements in fired engine operation demonstrate the influence of the flow field on combustion dynamics. |
76 Citations | The dependence of engine performance on air-heating methods could be explained by the e nding that the M6 engine combustion was partially reaction controlled. |
01 Jan 2001 83 Citations | This suggests that a new combustion technique should be developed to yield improved primary combustion processes inside the engine with drastically reduced exhaust gas emissions. |
It enabled thermodynamic analysis of the pilot-fuel combustion without these phenomena being masked by the rapid premixed-flame propagation like in the engine test rigs with turbulent charge. | |
The ability to ensure fully representative combustion and emissions behaviour of optical engines ultimately increases the value of optical engine data, highlighting the importance of using such engines as research tools for the further development of innovative, low emission combustion concepts. | |
89 Citations | Combustion of first firing cycle can be promoted significantly by introducing EGR. |
25 Citations | The AR combustion engine, consequently, has good prospects for the practical use. |
01 Jun 2009 | With a simpler implementation of combustion chamber insulation due to the low side forces on the piston, it is argued that the free-piston engine should be well suited for such an operation. |
Engine fueled with natural gas–hydrogen blends combining with proper EGR rate can realize the stable low temperature combustion in gas engine. | |
67 Citations | There is a good flow structure with good swirling flow before combustion that makes fuel more suitable for starting combustion. |
39 Citations | The results show that there always exists an optimized combustion phasing for best engine thermal efficiency. |
The thermodynamic results show that the combustion process can be optimized to an ideal engine cycle. | |
It was proved that the developed combustion rate model could be used to successfully predict and optimize the combustion process of dual fuel engine. | |
The results strongly support the idea of using GAs for designing optimal combustion processes and exploring new combustion technologies. | |
76 Citations | The results show that pure-rotational fs/ps CARS is a robust and quantitative tool when applied across a wide range of flame conditions spanning lean H 2 /air combustion to fuel-rich sooting hydrocarbon flames. |
It precludes the possibility of matching the piston motion in some sophisticated fashion to the nonlinear combustion kinetics in order to improve the engine efficiency. | |
101 Citations | The incorporated investigations that analyze the combustion behavior, engine efficiency, and emission performance underline the potential of tailoring fuels to desired properties. |
The results show that the first order reaction kinetics model can use fuel more effectively, and can provide heat engine with higher temperature heat source to increase the power output of the heat engine. | |
The combustion characteristics of the fuels for advanced combustion engines are well represented and the present models are well suited for practical engine computations. |
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When first car was invented?4 answersThe first car was invented in 1769 by N. J. Cugnot, a Frenchman, creating a three-wheel steam-engined vehicle that reached a speed of 3.5 kilometers per hour before breaking down. However, the concept of autonomous vehicles began to evolve significantly later, with the first step taken in 1898 involving remote control of a vehicle. The availability of lightweight combustion engines around 1885 marked a paradigm shift, enabling various vehicles and devices to be equipped with engines running on liquid fuel, revolutionizing transportation and individual mobility. The invention of the wheel itself dates back over 6000 years ago to around 4000 B.C. in Mesopotamia, with the oldest wheels being made of wood and serving as a crucial milestone in human innovation.
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