A control system for cooling of rectification self-cascading refrigeration system

A refrigeration system and control system technology, applied in refrigerators, refrigeration components, refrigeration and liquefaction, etc., can solve problems such as different optimal concentrations, high power consumption of heating compressors, and decreased cooling capacity, so as to reduce power consumption and The effect of heating power consumption and fast cooling rate

Active Publication Date: 2020-11-24
ZHEJIANG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0004] There are still some technical problems in the current mixed working medium single-stage compression cycle: (1) The exhaust pressure of the refrigeration system is high during the start-up process, which will pose a safety threat to the pipeline pressure. At the same time, as the system temperature drops, the system suction and discharge The air pressure also gradually decreases, which will lead to a decrease in cooling capacity. Therefore, pressure control is required during system start-up and cooling; (2) The optimal concentration required for different evaporation temperature levels is different, and it needs to be carried out during the cooling process; (3) ) For products such as high and low temperature test chambers and freeze dryers, when the system cools down to the target temperature, it is necessary to maintain the working condition. In order to ensure a high cooling rate for such products, when the target temperature is reached, the cooling capacity is often Larger, the system has the potential to further decrease, at this time, the heating capacity required to maintain the target temperature constant and the power consumption of the compressor are relatively large
The disadvantages of this solution are: there are many variable concentration circuits, and multiple storage tanks are used, which increases the complexity of control; at the same time, there is no suitable control system and clear switching conditions, which is not conducive to the use of standardized and commercial products.
The disadvantage of this solution is that the electric or manual opening adjustment valve is used to change, and the manual opening adjustment is not suitable for automatic control and standardized operation. The automatic control of the electric opening adjustment valve is more convenient than the on-off solenoid valve control. Complicated and at the same time more expensive

Method used

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  • A control system for cooling of rectification self-cascading refrigeration system
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  • A control system for cooling of rectification self-cascading refrigeration system

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Embodiment Construction

[0044] The present invention will be further specifically described in detail below in conjunction with specific embodiments.

[0045] like figure 1 As shown, the rectification type self-cascading refrigeration system provided by the present invention includes a compressor 1, an oil separator 2, a condenser 3, a rectification device 4, a high-temperature regenerator 5, a low-temperature regenerator 6, a first main section Throttle valve 7, second main throttle valve 8, evaporator 9, cold box 10, sub-throttle valve 11, air storage tank 12 and control system 13.

[0046] The components are connected by pipelines, and the connection relationship on the high-pressure side is: the exhaust port 1b of the compressor 1 is connected to the inlet 2a of the oil separator 2, and the outlet 2b of the oil separator 2 is connected to the inlet 3a of the condenser 3 , the oil return port 2c of the oil separator 2 is connected with the oil return port 1c of the compressor 1, the outlet 3b of ...

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Abstract

The invention discloses a control system for cooling a rectification type self-cascade refrigeration system: the rectification type self-cascade refrigeration system includes a compressor, an oil separator, a condenser, a rectification kettle, High-temperature regenerator, low-temperature regenerator, first main throttle valve, second main throttle valve, evaporator, cold box, sub-throttle valve, gas storage tank and control system; the control system consists of temperature controller, pressure Composed of controller and solenoid valve; the input parameters of the pressure controller and temperature controller are the exhaust pressure of the system and the temperature of the cold box; the opening and closing of the solenoid valve is controlled by the input parameters and the setting parameters of the pressure controller and temperature controller . The control system for the cooling of the rectification self-cascading refrigeration system provided by the present invention can simultaneously control the change of the exhaust pressure range and the concentration of the working medium during the cooling process to match the concentration requirements of different temperature positions and make the cooling rate faster; Reduce compressor power consumption and heating power consumption under maintenance conditions.

Description

technical field [0001] The invention belongs to the technical field of refrigeration, in particular to a control system for cooling a rectification type self-cascading refrigeration system. Background technique [0002] With the continuous development of refrigeration technology, the application of refrigeration equipment in the industrial field is becoming more and more extensive. In recent years, some refrigeration equipment with system cooling rate as the main index have appeared in the industry, such as high and low temperature test equipment, freeze drying equipment, etc. [0003] In practical industrial applications, equipment such as high and low temperature test chambers and freeze dryers require a higher cooling rate (20°C to -70°C cooling time ≤ 70min) and a lower evaporation temperature (-60°C to - 120°C). Due to the high-efficiency internal heat exchange of the mixed working fluid single-stage compression cycle, a single compressor can be used to reach the temp...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): F25B7/00F25B40/06F25B33/00F25B41/06F25B49/02F25B41/31
CPCF25B7/00F25B40/06F25B33/00F25B49/02F25B41/37
Inventor 张靖鹏王勤陈福胜宋琦罗介霖赵朕刘轶伦陈光明
Owner ZHEJIANG UNIV
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