一种温度自适应调节装置

By introducing a temperature adaptive regulation device into the industrial cooling system, the problems of high energy consumption and poor regulation capability have been solved, enabling precise monitoring of the temperature field, dynamic adjustment of flow rate, and regional temperature control, thereby improving energy efficiency.

CN224516972UActive Publication Date: 2026-07-17JIANGSU ETERN OPTICAL FIBER TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGSU ETERN OPTICAL FIBER TECH CO LTD
Filing Date
2025-07-24
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Traditional industrial cooling systems suffer from high energy consumption, poor regulation capabilities, limited temperature acquisition, simple cooling coil structure, and low integration of air duct systems during optical fiber production, resulting in low energy efficiency and unstable quality of optical fiber products.

Method used

The device employs a temperature adaptive regulation system. By installing temperature acquisition units in the plant and cooling tower, and combining them with the cooling circulation mechanism, central refrigeration mechanism, and refrigeration circulation mechanism, it utilizes frequency converters and PLC controllers to achieve dynamic regulation of coolant and air volume, forming a multi-layer air duct and independent butterfly valve structure, thereby realizing the correlation regulation between ambient temperature and cooling tower temperature.

Benefits of technology

It achieves precise temperature field monitoring, dynamic flow rate adjustment, and regional temperature control, reducing energy consumption and increasing the system's energy efficiency ratio to 4.1, which is 46% higher than that of traditional systems.

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Abstract

本实用新型涉及一种温度自适应调节装置,其包括第一温度采集单元,设置于厂房车间中;第二温度采集单元,设置于冷却塔中;冷却循环机构,包括设置于冷却塔内部的第一冷却盘管,第一冷却盘管上设置有驱动内部冷却液循环周转的第一驱动电机;中央制冷机构,包括第二冷却盘管,第二冷却盘管上设置有驱动内部冷却液循环周转的第二驱动电机,第一冷却盘管与第二冷却盘管通过连接管路相连,在连接管路上设置有第三驱动电机;制冷循环机构,其通过变频器分别与驱动电机电连接;控制器,温度采集单元接入控制器的信号输入端,控制器的控制输出端与各变频器相连。本申请实现对工厂环境温度与冷却塔温度的关联调节,降低能耗,却能达到更佳的整体调节效果。
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Claims

1. A temperature self-adapting regulating device, characterized in that, include: The first temperature acquisition unit is installed in the factory workshop; The second temperature acquisition unit is installed in the cooling tower; The cooling circulation mechanism includes a first cooling coil disposed inside the cooling tower, the first cooling coil containing coolant, and a first drive motor disposed on the first cooling coil to drive the coolant to circulate. The central refrigeration unit includes a second cooling coil, a cooling fan, and a cooling duct installed in the factory space. The second cooling coil contains coolant and is equipped with a second drive motor that drives the coolant to circulate. The first cooling coil and the second cooling coil are connected by a connecting pipe, and a third drive motor is installed on the connecting pipe. The refrigeration cycle mechanism includes multiple frequency converters, each of which is electrically connected to a drive motor to control the operation of the drive motor and adjust the flow rate of the coolant in the pipeline. The controller has the first and second temperature acquisition units connected to its signal input terminals, and the controller's control output terminals connected to each frequency converter.

2. The temperature self-adapting regulating device according to claim 1, characterized in that, In the central refrigeration unit, the cooling fan draws the external circulating cold air from the second cooling coil to the cooling air duct.

3. Temperature self-adapting regulating device according to claim 1 or 2, characterized in that The cooling duct is provided with several air outlets spaced apart.

4. The temperature self-adapting regulating device of claim 1, wherein, The frequency converter used is a Danfoss frequency converter.

5. The temperature self-adapting regulating device of claim 1, wherein, The controller is a PLC controller.

6. The temperature self-adapting regulating device of claim 1, wherein, The cooling air ducts in the central refrigeration unit are arranged in layers, with each layer of air ducts independently equipped with an air outlet and an air volume regulating valve. The air volume regulating valve is installed at the air inlet of each layer of the cooling air duct.

7. The temperature self-adapting regulating device according to claim 6, characterized in that, The first temperature acquisition unit is set up in different areas of the factory workshop, and the controller controls the opening degree of the air volume regulating valve of each layer of the air duct according to the data of the first temperature acquisition unit in different areas of the factory workshop.