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Dual-vortex negative pressure internal combustion engine

A technology of internal combustion engine and double scroll, applied in the direction of machine/engine, gas turbine device, mechanical equipment, etc., can solve the problems of unreasonable structure and device, and achieve the effect of simple and reasonable structure, saving mechanical loss and high thermal efficiency

Inactive Publication Date: 2015-09-09
汪一平
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Due to the defects of the thermodynamic principle of the internal combustion engine, the irrationality of the structural device, and the limitation of the air intake pressurization at the front end of the heat engine, the improvement and development of the traditional internal combustion engine have reached the limit.

Method used

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Embodiment 1

[0037] see Figure 1-7 , In the embodiment of the present invention, a twin-scroll negative pressure internal combustion engine starts from two aspects: first, the expansion of the working principle; second, the innovation of the structure.

[0038]1. Expansion of working principle;

[0039] (1) In the working principle of the present invention, the traditional four-program control work, that is, compression-combustion-expansion work-exhaust, has hardly changed for more than one hundred years, and the main feature of its combustion chamber: normal temperature before the explosion point Atmospheric pressure and constant density (P 0 V 0 / T 0 ) environment work, thermal efficiency in (P 0 V 0 / T 0 ) and (P max V max / T max ), except for the ultra-low temperature where the coolant is artificially used. At present, the application of internal combustion engine working principle has reached the limit and it is difficult to improve.

[0040] (2) The twin-scroll negative p...

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PUM

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Abstract

The present invention discloses a dual-vortex negative pressure internal combustion engine, which comprises a pressure stabilization fuel tank, a main shaft rod, a shaft rod sleeve, a forward cylinder, a combustion chamber, an internal combustion engine housing, a reverse cylinder and an inertia flywheel, wherein the main shaft rod penetrates through the internal combustion engine housing, the forward cylinder contained inside the internal combustion engine housing, the combustion chamber contained inside the internal combustion engine housing and the reverse cylinder contained inside the internal combustion engine housing, the forward cylinder is connected with one side of the combustion chamber sequentially through a forward cylinder bottom portion round disk control sheet, a round disk control sheet and a combustion chamber front end round disk control sheet, the other side of the combustion chamber is connected with the reverse cylinder sequentially through a combustion chamber rear end round disk control sheet, a round disk control sheet and a reverse cylinder bottom portion round disk control sheet, the pressure stabilization fuel tank is arranged on one end of the main shaft rod and is connected with the forward cylinder through an oil inlet pipeline, a fuel tank internal pressure stabilization and adjustment foam is arranged in the pressure stabilization fuel tank, and the inertia flywheel is arranged on the other end of the main shaft rod. The dual-vortex negative pressure internal combustion engine of the present invention has characteristics of energy source saving, high thermal efficiency, high capacity, high power, long service life, safety, environmental protection, easy production, easy maintenance, and multi-purpose.

Description

technical field [0001] The invention relates to the field of engines, in particular to a twin-scroll negative pressure internal combustion engine. Background technique [0002] The power sources of automobiles / ships / transmission parts are mostly internal combustion thermal power devices, referred to as internal combustion engines or internal combustion engines. The internal combustion engine uses the fluid (including liquid, gas or powdery solid) state of the working medium to explode and burn in a sealed container, and the heat energy of combustion is converted into mechanical energy in different ways. In 1876, the German Otto first proposed the reciprocating piston four-stroke automobile engine on the basis of the atmospheric pressure type. The thermal energy efficiency is converted into the linear motion of the piston, which is converted into the classic mode of rotary motion through the transverse crankshaft. In 1846, the geometry of today's rotary engine workshops eme...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F02C3/04F02C3/14
Inventor 汪一平
Owner 汪一平
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