Multi-stage hybrid pressurizing system used for engine and provided with electric pressurizer arranged front

A technology of electric supercharging and supercharging system, which is applied in the direction of engine components, combustion engines, machines/engines, etc. It can solve the problems of not being able to take into account both low-speed and high-speed performance, insufficient supercharging pressure, and poor low-speed torque performance, etc., to achieve Improve low-speed response and avoid aerodynamic lag

Inactive Publication Date: 2020-12-04
DONGFENG COMML VEHICLE CO LTD
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] Generally, turbocharged engines have insufficient boost pressure at low speeds due to insufficient exhaust gas capacity, which limits the increase in fuel injection volume, resulting in poor torque performance at low speeds, which is detrimental to the power performance of the car
[0005] Turbocharging cannot take into account both low-speed and high-speed performance at the same time. Reducing the turbocharger volute will improve low-speed performa

Method used

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  • Multi-stage hybrid pressurizing system used for engine and provided with electric pressurizer arranged front

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Embodiment Construction

[0022] The present invention will be further described in detail below in conjunction with the accompanying drawings and specific embodiments to facilitate a clear understanding of the present invention, but they do not limit the present invention.

[0023] Such as figure 1 As shown, the present invention provides a multi-stage hybrid supercharging system with an electric supercharging front for an engine, including an electric supercharger, an engine 1, a turbocharger, an air storage tank 5, and a controller 11; The port communicates with the intake ports of the first compressor 3 of the electric supercharger and the second compressor 9 of the turbocharger respectively through pipelines, and the outlet port of the first compressor 3 is connected with the intake port of the second compressor 9. The end is communicated with through the pipeline; The pipeline that the air inlet is communicated with the second compressor 9 is provided with a check valve 2; The pipeline is provid...

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Abstract

The invention provides a multi-stage hybrid pressurizing system used for an engine and provided with an electric pressurizer arranged front. An air inlet communicates with the air input end of a firstair compressor of the electric pressurizer and the air input end of a second air compressor of a turbine pressurizer through a pipeline. The air output end of the first air compressor communicates with the air input end of the second air compressor through a pipeline. A one-way valve is arranged on the pipeline, communicating with the second air compressor, of the air inlet. The air output end ofan air storing tank communicates with the air input end of the first air compressor through a pipeline, and the pipeline is provided with a compressed air nozzle. The air output end of the second aircompressor communicates with an air input pipe of the engine. An air output pipe of the engine communicates with a turbine air input end of the turbine pressurizer. The air output end of the turbinepressurizer communicates with external air. A pressure sensor is arranged in the air input pipe of the engine.

Description

technical field [0001] The invention belongs to the technical field of engines, and in particular relates to a multi-stage hybrid supercharging system with an electric supercharging front for the engine. Background technique [0002] Turbocharging is a technology that uses the exhaust gas generated by the engine to drive the air compressor. The purpose of supercharging is to increase the intake air volume of the engine without increasing the displacement of the engine, increase the equivalent compression ratio of the engine, and thereby increase the power density and torque density of the engine. [0003] When the engine is working, the high-temperature and high-pressure exhaust gas from the exhaust impacts the turbine blades at a high speed at a certain angle, driving the turbine to rotate at a high speed, and the turbine drives the coaxial compressor impeller to rotate at a high speed, so that the air is pressurized and enters the cylinder. When the engine speed increases...

Claims

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Application Information

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IPC IPC(8): F02B37/10F02B37/12F02B37/14F02B39/10
CPCF02B37/10F02B37/12F02B37/14F02B39/10Y02T10/12
Inventor 谢毅胡前张明张鑫占伟刘嘉璐王元真
Owner DONGFENG COMML VEHICLE CO LTD
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