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Energy adjusting system and device adopting same

An energy adjustment, impeller technology, applied in transmission, fluid transmission, belt/chain/gear, etc., can solve the problems of increasing weight, occupying effective space, low efficiency, etc., achieving light weight, good load response, and occupying space small effect

Inactive Publication Date: 2017-03-08
SHANGLING CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In addition, motion systems with fast load changes, such as vehicles and tanks, often need to configure engines according to the highest load requirements because of the need to meet high load requirements, so that they are in the state of large horses and small carts most of the time. It not only takes up a lot of effective space and adds a lot of weight, but also causes serious inefficiency and energy waste. At the same time, if energy can be effectively transmitted back and forth, such as braking energy or downhill energy stored in the rotating inertial body, Release the kinetic energy of the rotating inertial body to the vehicle system when necessary, which will help energy conservation, environmental protection and improve efficiency

Method used

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  • Energy adjusting system and device adopting same
  • Energy adjusting system and device adopting same
  • Energy adjusting system and device adopting same

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0041] An energy regulation system such as Figure 1.1 and 1.2 As shown, it includes a fluid unit A 1 and a fluid unit B 2, the fluid unit A 1 includes at least one shaft impeller A 11 and at least one shell impeller A 12, the shaft impeller A 11 and the shell impeller A 12 are axially Arranged alternately and correspondingly, the fluid unit B 2 includes at least one shaft impeller B 21 and at least one casing impeller B22, the shaft impeller B 21 and the casing impeller B 22 are axially alternately arranged correspondingly, the fluid unit A 1 and The fluid units B2 are arranged in series.

[0042] As a changeable embodiment, the fluid unit A1 and the fluid unit B2 described in Embodiment 1 of the present invention can be selectively connected in series (such as Figure 1.1 shown) or disconnected (such as Figure 1.2 shown).

Embodiment 2

[0044] An energy regulation system such as Figure 2.1 and 2.2 As shown, fluid unit A 1 and fluid unit B 2 are included, the fluid unit A 1 includes at least one shaft impeller A 11 and at least one shell impeller A 12, the shaft impeller A 11 and the shell impeller A 12 are radial Arranged alternately and correspondingly, the fluid unit B 2 includes at least one shaft impeller B 21 and at least one shell impeller B22, the shaft impeller B 21 and the shell impeller B 22 are radially alternately arranged correspondingly, the fluid unit A 1 and The fluid units B2 are arranged in series.

[0045] As a changeable embodiment, it can be selectively selected to communicate the fluid unit A1 and the fluid unit B2 described in Embodiment 1 of the present invention (such as Figure 2.1 shown) or disconnected (such as Figure 2.2 shown).

Embodiment 3

[0047] An energy regulation system such as image 3 As shown, on the basis of Embodiment 1, the shaft impeller A 11 and the shaft impeller B 21 are further set in linkage.

[0048] As a transformable embodiment, Embodiment 2 and its transformable embodiment and the transformable embodiment of Embodiment 1 of the present invention may further make the shaft impeller A 11 and the shaft impeller B 21 set in linkage.

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PUM

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Abstract

The invention discloses an energy adjusting system which comprises a fluid unit A and a fluid unit B. The fluid unit A comprises at least one shaft impeller A and at least one shell impeller A. The shaft impellers A and the shell impellers A are arranged correspondingly in an alternating manner in the radial direction or correspondingly in an alternating manner in the axial direction. The fluid unit B comprises at least one shaft impeller B and at least one shell impeller B. The shaft impellers B and the shell impellers B are arranged correspondingly in an alternating manner in the radial direction or correspondingly in an alternating manner in the axial direction. The fluid unit A and the fluid unit B are arranged in series. The invention further discloses a device adopting the energy adjusting system. The energy adjusting system and the device thereof have the beneficial effects of being small in occupied space, low in weight, good in load response and efficient and saving energy.

Description

technical field [0001] The invention relates to the field of thermal energy and power, in particular to an energy adjustment system and a device using the same. Background technique [0002] The use of inertial body energy storage has many advantages such as simple structure, low cost, and no pollution. It is of great significance to invent a system that can efficiently use inertial body energy storage and energy discharge, especially to invent a system that can reduce the speed of inertial body A system whose speed is faster than the descending speed of the power shaft, or inventing a system in which the rotational speed of the inertial body fluctuates faster than the rotational speed of the power shaft will greatly promote the application of inertial body energy storage and discharge. In addition, the stability and load responsiveness of traditional power systems (such as transmission systems including motors and engines) are very important, which not only affect the noise...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F16H41/00F16H33/02
CPCF16H41/00F16H33/02
Inventor 靳北彪
Owner SHANGLING CO LTD
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