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Non-liquid energy adjustment system and device thereof

An energy-adjusting, non-liquid technology that is applied to fluid transmission devices, transmission devices, belts/chains/gears, etc., and can solve problems such as low efficiency, high liquid viscosity, and large flow loss

Inactive Publication Date: 2017-03-29
SHANGLING CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] Both hydraulic torque converters and hydraulic couplings use liquids, but due to the high viscosity of liquids and large flow losses, the efficiency of the above-mentioned mechanisms using liquids is low

Method used

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  • Non-liquid energy adjustment system and device thereof
  • Non-liquid energy adjustment system and device thereof
  • Non-liquid energy adjustment system and device thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0071] A non-liquid energy adjustment system such as figure 1 As shown, it includes a fluid mechanism A1 and a fluid mechanism B2. The fluid mechanism A1 and the fluid mechanism B2 are connected in series to form a gas circuit. The gas, gas-liquid two-phase mixture, and critical state fluid in the gas circuit , the bottom pressure of the supercritical fluid or the ultra-supercritical fluid is set to be greater than or equal to 0.1MPa, and one of the fluid mechanism A 1 and the fluid mechanism B 2 is set as a pressurization mechanism, and the bearing of the gas circuit The pressure capacity is greater than the base pressure multiplied by the pressure ratio of the booster mechanism.

Embodiment 2

[0073] A non-liquid energy adjustment system such as figure 2 As shown, it includes a fluid mechanism A1 and a fluid mechanism B2. The fluid mechanism A1 and the fluid mechanism B2 are connected in series to form a gas circuit. The gas, gas-liquid two-phase mixture, and critical state fluid in the gas circuit 1. The bottom pressure of supercritical fluid or ultra-supercritical fluid is set to be greater than or equal to 5.0MPa, and the fluid mechanism A 1 and the fluid mechanism B 2 are set as a pump-horse switching type, and the pressure bearing capacity of the gas circuit is greater than The pressure ratio of the pressure ratio of the fluid mechanism A1 and the pressure ratio of the fluid mechanism B2 that is larger is multiplied by the base pressure.

Embodiment 3

[0075] A non-liquid energy adjustment system such as image 3 As shown, it includes a fluid mechanism A1 and a fluid mechanism B2. The fluid mechanism A1 and the fluid mechanism B2 are connected in series to form a gas circuit, and the gas circuit is filled with gas, gas-liquid two-phase mixture, critical state Fluid, supercritical fluid or ultra-supercritical fluid, the pressure of the working medium in the gas circuit is greater than or equal to 10.0MPa, so that the fluid outlet of the fluid mechanism A1 is connected with the fluid inlet of the fluid mechanism B2 , and the fluid outlet of the fluid mechanism B2 communicates with the fluid inlet of the fluid mechanism A1.

[0076] As an alternative implementation manner, in Embodiment 3 of the present invention, at least one of the fluid mechanism A1 and the fluid mechanism B2 can be further selectively set as a variable type.

[0077] As a changeable implementation mode, the embodiment 1 and embodiment 2 of the present inve...

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PUM

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Abstract

The invention discloses a non-liquid energy adjustment system. The non-liquid energy adjustment system comprises a fluid mechanism A and a fluid mechanism B which are communicated in a series connection manner to form a gas loop; the base pressure of gas, a gas-liquid two phase mixture, critical state fluid and supercritical state fluid or ultra-supercritical state fluid in the gas loop is set to be larger than or equal to 0.1 MPa; one mechanism of the fluid mechanism A and the fluid mechanism B is arranged into a pressurizing mechanism; the pressure bearing capacity of the gas loop is larger than a value generated when the base pressure multiplies by the pressure ratio of the pressurizing mechanism; or the fluid mechanism A and the fluid mechanism B are arranged into a pump horsepower conversion type, and the pressure bearing capacity of the gas loop is larger than a value generated when a larger pressure ratio in the pressure ratio of the fluid mechanism A and the pressure ratio of the fluid mechanism B multiplies by the base pressure. The non-liquid energy adjustment system and a device applying the same both have the beneficial effects of being simple in structure, good in load response and high in efficiency.

Description

technical field [0001] The invention relates to the field of thermal energy and power, in particular to a non-liquid energy adjustment system, and also relates to a device using the non-liquid energy adjustment system. Background technique [0002] Liquids are used in torque converters and hydraulic couplings, but due to the high viscosity and large flow loss of liquids, the efficiency of the above mechanisms using liquids is low. Therefore, it is necessary to invent a novel energy adjustment system. Contents of the invention [0003] In order to solve the above problems, the technical scheme proposed by the present invention is as follows: [0004] Scheme 1: A non-liquid energy adjustment system, including a fluid mechanism A and a fluid mechanism B, the fluid mechanism A and the fluid mechanism B are connected in series to form a gas circuit, and the gas and gas-liquid two-phase mixture in the gas circuit , the bottom pressure of critical state fluid, supercritical sta...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F16H41/04F16H41/24
CPCF16H41/04F16H41/24
Inventor 靳北彪
Owner SHANGLING CO LTD
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