Waste gas cylinder inner direct injection turbulent combustion system and method
A combustion system, waste cylinder technology, applied in the charging system, exhaust gas recirculation, engine components, etc., can solve the problems of reducing intake air, potential risks of soot emissions, and reduction of excess air coefficient, to prevent local mixing The effect of excessively rich gas, promoting fuel diffusion and mixing, and suppressing NOx generation
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Embodiment 1
[0034] Such as figure 1 , figure 2 and image 3 Commonly shown, a waste gas in-cylinder direct injection turbulent combustion system includes a cylinder 1 and an exhaust pipe 2 communicating with the cylinder 1. The gas tank 3 communicates with the exhaust pipe 2 through the waste gas introduction pipe 4. The gas tank 3 is provided with Cooling system 31, the exhaust gas introduction pipe 4 is provided with an intercooler 5 and a compressor 6 in sequence along the exhaust gas flow direction; the exhaust gas injector 7 communicates with the gas tank 3 through the exhaust gas injection pipe 8, and the exhaust gas injector 7 is installed on the cylinder of the cylinder 1 Cover, the exhaust gas injector 7 injects exhaust gas into the cylinder 1 at a certain angle; the working condition detection unit 9 is used to detect the engine working condition, and output signals to the electronic control unit 10 (engine ECU); the electronic control unit 10 is used to detect the engine work...
Embodiment 2
[0048] This embodiment is basically the same as Embodiment 1, the difference is that, as Figure 4 and Figure 5 Commonly shown, the outlet of the exhaust gas injector 7 is not provided with a guide channel 71, and the cylinder head of the cylinder 1 is provided with a guide channel 15 at the exhaust gas injector 7, and a guide channel 15 is provided between the guide channel 15 and the center line of the cylinder 1. There are angles.
[0049] To sum up, the waste gas in-cylinder direct injection turbulent combustion system and method provided by the embodiments of the present invention simultaneously reduce NOx and soot emissions without causing a decrease in engine power and economic performance; Optimal power, economy and emissions performance.
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