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A salt solution regenerator in super heavy vacuum state

A vacuum state, salt solution technology, applied in the field of salt solution regenerator, can solve the problems of high energy consumption of vacuum pump, affecting efficiency, and unable to discharge steam smoothly, and achieve the effect of safe and reliable operation, simple structure and compact structure

Active Publication Date: 2022-07-08
TIANJIN UNIV OF COMMERCE
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Problems solved by technology

However, the main problem of this method is that since the system operates under negative pressure, the steam cannot be discharged smoothly, and a water trap needs to be added, that is, a low-temperature cold source is used to condense the water vapor and discharge it; in addition, the maintenance of the vacuum degree generally depends on Vacuum pump, the operation of vacuum pump also consumes more energy, which affects the overall efficiency

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  • A salt solution regenerator in super heavy vacuum state
  • A salt solution regenerator in super heavy vacuum state
  • A salt solution regenerator in super heavy vacuum state

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Embodiment Construction

[0017] Attached below figure 1 , figure 2 , image 3 and Figure 4 The specific structure and implementation process of the present invention will be described in detail.

[0018] The invention provides an ultra-heavy vacuum solution regenerator, which specifically includes a shell part, an impeller part, an end cover part and a heat source, wherein the shell part, the impeller part and the end cover part form a closed annular space.

[0019] The shell part is composed of a shell 3, a heat source flow channel 7, a heat source inlet 5 and a heat source outlet 6; a plurality of annular heat source flow channels 7 are opened inside the shell 3, and every two adjacent heat source flow channels are formed. 7 is a group, and the heat source 11 in each group of heat source runners 7 enters from a heat source inlet 5 connected by a heat source runner, and flows out from a heat source outlet 6 connected by another heat source runner after circulating in the heat source runner 7 for...

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Abstract

The invention discloses a salt solution regenerator in an ultra-heavy vacuum state. The shell part of the regenerator of the invention is composed of a shell, a heat source flow channel, a heat source inlet and a heat source outlet; a plurality of annular heat source flow channels are opened inside the shell, and each adjacent two heat source flow channels are a group, The heat source in each group of heat source runners enters from the heat source inlet connected by one heat source runner, and flows out from the heat source outlet connected by another heat source runner after circulating in the heat source runner for two weeks. The invention uses the rotation of the impeller part to provide the solution with a supergravity field and a vacuum environment at the same time; at the same time, using the vacuum degree inside the regenerator, the solution can be automatically sucked into the regenerator for evaporation regeneration; using the centrifugal force of the high-speed rotating solution, after regeneration The solution can be automatically discharged, so that the structure of the solution regenerator is more compact, the efficiency is higher, and the operation is safer and more reliable.

Description

technical field [0001] The invention relates to the technical field of air conditioners, and more particularly, to a salt solution regenerator in an ultra-heavy vacuum state. Background technique [0002] In the solution dehumidification air conditioning system, the concentration of the salt solution becomes smaller after moisture absorption, and the moisture absorption capacity is reduced. This process is the regeneration process of the solution. There are two specific treatment methods for the regeneration process: one is the atmospheric heating and evaporation method, which requires higher heating heat source temperature, low energy utilization efficiency, and the temperature has a great influence on the hygroscopic performance of the salt solution. The hot solution can only be recycled after being cooled to room temperature, and the cooling process takes a long time; another method is to heat and evaporate the diluted solution in a closed container with a certain degree...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): F24F3/14
CPCF24F3/14F24F3/1417F24F2003/144F24F2003/1458Y02E60/14
Inventor 邹同华侯小兵
Owner TIANJIN UNIV OF COMMERCE