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Solar-driven efficient moisture absorption-thermal chemical reaction two-stage air conditioning system

A thermochemical reaction and air conditioning system technology, applied in the field of solar-driven high-efficiency moisture absorption-thermochemical reaction two-stage air conditioning system, can solve the problems of large energy loss, low energy storage efficiency, large initial investment, etc. The effect of high energy density and improved circulation moisture absorption

Inactive Publication Date: 2014-10-08
SHANGHAI JIAO TONG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

However, the control mode of this invention is relatively complicated, and its initial investment is relatively large. At the same time, because its energy is stored in the soil, the energy loss is relatively large, and the energy storage efficiency is low.

Method used

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  • Solar-driven efficient moisture absorption-thermal chemical reaction two-stage air conditioning system
  • Solar-driven efficient moisture absorption-thermal chemical reaction two-stage air conditioning system

Examples

Experimental program
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Embodiment

[0034] Such as figure 1 As shown, a solar-driven high-efficiency moisture absorption-thermochemical reaction two-stage air-conditioning system includes a left high-temperature adsorption bed 1, a left low-temperature adsorption bed 9, a left condensation evaporator 11, a right high-temperature adsorption bed 15, and a right low-temperature adsorption bed 23 And the right condensing evaporator 25, the left high-temperature adsorption bed 1 communicates with the left low-temperature adsorption bed 9 through the refrigerant straight-through valve n8, and the refrigerant straight-through valve n8 is connected to the bottom of the left high-temperature adsorption bed 1 and the left low-temperature adsorption bed 9 between the tops; the bottom of the left low-temperature adsorption bed 9 communicates with the left condensation evaporator 11 through the refrigerant straight-through valve r10; the right high-temperature adsorption bed 15 is connected with the right low-temperature adso...

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Abstract

The invention relates to a solar-driven efficient moisture absorption-thermal chemical reaction two-stage air conditioning system. The system comprises a left high-temperature adsorption bed (1), a left low-temperature adsorption bed (9), a left condensation evaporator (11), a right high-temperature adsorption bed (15), a right low-temperature adsorption bed (23) and a right condensation evaporator (25). The whole circulation process comprises absorption, crystallization and a thermal chemical reaction of moisture absorption salt. Compared with the prior art, a chlorate / expanded graphite-water two-stage mode is adopted, continuous cold supply can be achieved through the whole circulation process, internal energy storage can be achieved as well, an external auxiliary energy storage device does not need to be additionally arranged, energy loss is small, and energy storage efficiency is high.

Description

technical field [0001] The invention belongs to the technical field of solar energy, and relates to a solar-driven high-efficiency moisture absorption-thermochemical reaction two-stage air-conditioning system. Background technique [0002] The areas rich in solar energy resources in my country account for more than two-thirds of the country's land area, and the annual radiation exceeds 6 billion joules per square meter. The annual solar energy absorbed by the surface is equivalent to about 1.7 trillion tons of standard coal energy. 450 times the total consumption. [0003] However, due to the periodicity, discontinuity and volatility of solar energy, this leads to the instability of solar energy utilization, and at the same time, it is also limited by site, process and other conditions. [0004] Energy storage technology is an effective way to alleviate this problem. Traditional energy storage technologies are sensible heat storage (such as water and stones) and latent heat...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F25B17/08F25B27/00
CPCY02A30/27Y02B30/62
Inventor 陆紫生
Owner SHANGHAI JIAO TONG UNIV
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