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Electricity generation apparatus using atmospheric (air) latent heat

A power generation device and air technology, which is applied in steam engine devices, machines/engines, mechanisms for generating mechanical power, etc., can solve problems such as the self-load cannot bear, and achieve the effect of solving the increase of carbon dioxide

Inactive Publication Date: 2015-11-25
莱西亚株式会社
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] At present, if the coefficient of performance (C.O.P) is calculated by applying these variables of the coefficient of performance, the general refrigerator is below 6.5. With this coefficient of performance (C.O.P), the power generated by itself cannot be used as an external power source, and the internal power supply of the system cannot be connected. I can't bear my own load

Method used

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  • Electricity generation apparatus using atmospheric (air) latent heat
  • Electricity generation apparatus using atmospheric (air) latent heat
  • Electricity generation apparatus using atmospheric (air) latent heat

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Embodiment Construction

[0025] Hereinafter, embodiments of the present invention will be described in detail with reference to the accompanying drawings, so that those skilled in the art of the present invention can easily implement the present invention.

[0026] The present invention can be implemented in various ways and is not limited to the embodiments described here.

[0027] figure 1 In order to show the cross-sectional view of the power generation device utilizing air (atmosphere) latent heat of the present invention, figure 2 It is a graph showing a T-S (temperature-entropy) graph and thermal efficiency in different intervals.

[0028] The air at 25°C in the heat (latent heat) contained in the air 10 is used as a heat source, and the ammonia (NH 3 ) refrigerant to absorb heat.

[0029] The air (atmosphere) to be used is exhausted to the outside by the first forced fan 50 .

[0030] The vaporized ammonia (NH 3 ) refrigerant, when the compression ratio is 4.94, the discharge temperature ...

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Abstract

The present invention relates to an electricity generation apparatus using atmospheric (air) latent heat, comprising: an ammonia evaporator which vaporizes ammonia (NH3) and absorbs hot air by drawing the latent heat included in the atmosphere into the apparatus and allowing the NH3 to pass through a pipe therein, whereby power or electric energy is autonomously produced by absorbing the latent heat at 25°C into the apparatus using NH3 as a working fluid and using energy produced by self-circulation of the fluid; a first forced ventilator which discharges the used atmosphere (air) to the outside; a heat pump which compresses the vaporized NH3 refrigerant to further increase the temperature; a heat exchanger which generates steam by allowing the compressed and vaporized NH3 refrigerant to pass through the pipe so that an R-123 solution accommodated therein is boiled; a steam engine which is operated by adiabatically expanding the generated steam; a BL generator which generates electricity by the operation of the steam engine; a wet steam cooler which liquefies the R-123, which is in a wet steam state after the adiabatic expansion, by compressing the R-123 with a second compression motor and allowing the R-123 to pass through the pipe, followed by further cooling of the liquefied R-123; a second forced ventilator which discharges hot ambient air to the outside; a first compression motor which accelerates the R-123 that has passed through the wet steam cooler so that the R-123 is injected into the heat exchanger; and an expansion valve which decompresses the high-pressure NH3 that has passed through the heat exchanger to a low pressure before the NH3 is sent to the ammonia evaporator and adjusts the flow of the NH3.

Description

technical field [0001] The present invention relates to a power generation device utilizing latent heat of air (atmosphere), which uses the working fluid ammonia (NH 3 ) is used as a working fluid that introduces latent heat in the air. After using the heat pump to compress the absorbed heat to produce a heat source, the R-123 refrigerant is used as the second working fluid and the vaporized fluid expands adiabatically to make the installed power generation The machine's steam engine works to produce electricity. Background technique [0002] As we all know, "internal combustion engine" refers to a power generation device that converts heat energy generated during fuel combustion into mechanical work. If hydrocarbon fuel (coal, petroleum, etc.) and air are mixed in an appropriate ratio and burned inside the steam pipe A high-temperature, high-pressure gas is powered by the expansion pressure of the gas. Examples of such internal combustion engines include diesel engines, g...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F01K25/10F01K25/00F03G7/04
CPCF01K25/00F01K25/10F03G7/04F01K5/02
Inventor 韓相求
Owner 莱西亚株式会社