Intelligent temperature control adjusting system suitable for ocean platform

The intelligent temperature control system solves the problem of the inability to remotely control the temperature and humidity between transformers in existing technologies, enabling precise adjustment and real-time monitoring between transformers, extending their service life and reducing labor costs.

CN223870998UActive Publication Date: 2026-02-03闫玉龙
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Patent Information

Application Number
CN202422739459.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-11
Publication Date
2026-02-03
Estimated Expiration
2034-11-11

AI Technical Summary

Technical Problem

The temperature and humidity monitoring and regulation systems in transformer rooms on existing ships and offshore platforms cannot be remotely controlled, making it impossible for staff to accurately understand and adjust them, which affects the lifespan of the transformers.

Method used

An intelligent temperature control system was designed, including components such as wind-powered temperature control, air conditioning, temperature and humidity detectors, temperature and humidity control host, and host computer. Through wireless and wired connections, it realizes automatic control and remote monitoring. Equipped with power detectors and alarms, it ensures real-time adjustment and feedback of temperature and humidity in the transformer room.

Benefits of technology

It enables precise regulation and real-time monitoring of temperature and humidity between transformers, extending the service life of transformers, reducing maintenance frequency, lowering labor costs, and improving the system's emergency response capabilities.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an intelligent temperature control adjusting system suitable for an ocean platform, which comprises a transformer room and a central control room, main components of the transformer room comprise a wind power temperature controller, an air conditioner and a temperature and humidity detector, and the wind power temperature controller, the air conditioner and the temperature and humidity detector are installed in an isolated mode and do not interfere with one another. The wind power temperature controller and the air conditioner are both connected with the temperature and humidity detector to form automatic control, the wind power temperature controller and the air conditioner are both provided with local control, and the central control room mainly comprises a temperature control host, an upper computer, a power detection host and a power analysis host which are directly connected with the temperature control host. And the wind power temperature controller, the air conditioner and the temperature and humidity detector are connected with the temperature and humidity control host. By means of the device, workers can know the actual situation on site more clearly, the temperature and humidity between the transformers can be adjusted at any time, it is ensured that the transformers are in the optimal state, the service life of the transformers can be effectively prolonged, and the maintenance frequency is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of intelligent temperature control system technology, and in particular to an intelligent temperature control system suitable for marine platforms. Background Technology

[0002] In existing ships and offshore platforms, transformer rooms are generally equipped only with temperature and humidity detectors to monitor and alarm on the internal temperature and humidity. The air conditioning or ventilation equipment in the transformer room is usually controlled locally, with the central control room only displaying status information. The gas supply system on existing ships and offshore platforms can only cut off or shut down the air conditioning and ventilation equipment, and cannot remotely adjust the internal temperature and humidity. On-site personnel are required to operate and adjust them locally. The marine environment is harsh, and temperature and humidity have a significant impact on transformers. The existing system makes it impossible for staff to accurately understand and adjust the temperature and humidity in the transformer room, which affects the service life of the transformers. Utility Model Content

[0003] The purpose of this utility model is to solve at least one of the technical problems existing in the prior art, and to provide an intelligent temperature control system suitable for marine platforms. When in use, this system, through integrated and scalable design, can meet various user needs, reduce the labor costs of personnel on ships and marine platforms, enable staff to have a clearer understanding of the actual situation on site, provide a greater early warning function for various situations, and adjust the temperature and humidity between transformers at any time to ensure that the transformers are in optimal condition, effectively extend the service life of transformers and reduce the number of maintenance and repairs.

[0004] This utility model also provides an intelligent temperature control system suitable for marine platforms, comprising: a transformer room and a central control room. The main components of the transformer room include a wind-powered temperature controller, an air conditioner, and a temperature and humidity detector. The wind-powered temperature controller, air conditioner, and temperature and humidity detector are all installed in isolation to prevent interference. The wind-powered temperature controller and air conditioner are connected to the temperature and humidity detector to form an automatic control system, and both the wind-powered temperature controller and air conditioner are equipped with local control. The main components of the central control room include a temperature control host, a host computer, and a power detection host. The temperature control host and host computer are directly connected, and the power analysis host is directly connected to the temperature control host. The power analysis host and host computer do not interfere with each other when connected to the temperature control host. The wind-powered temperature controller, air conditioner, and temperature and humidity detector are connected to the temperature and humidity control host.

[0005] According to the present invention, an intelligent temperature control system suitable for offshore platforms includes a wind-driven temperature control system with a fan and a sliding device as its main components. These devices work together to improve the sensitivity of the wind-driven temperature control function.

[0006] According to the present invention, an intelligent temperature control system suitable for offshore platforms is provided, in which the mounting end of the fan is directly connected to the base of the sliding device, and the base of the sliding device is fixedly connected to the wall between the transformer and the fan. This device improves the ease of disassembling the fan.

[0007] According to the present invention, an intelligent temperature control system suitable for marine platforms is provided, in which the wind-powered temperature controller, air conditioner, temperature and humidity detector, and temperature and humidity control host are connected via both wireless and wired connections as needed. This system saves internal space on the ship.

[0008] According to the intelligent temperature control system for offshore platforms described in this utility model, both the fan and the air conditioner are equipped with power detectors, and the power detectors are wirelessly connected to the power analysis host. The power detectors are also directly connected to an alarm. This device facilitates the detection of the operating power of the fan and air conditioner.

[0009] According to the intelligent temperature control system for offshore platforms described in this utility model, the central control room is equipped with an alarm signal receiver, which is wiredly connected to the power analysis host. This device expands the effective range of the alarm.

[0010] Beneficial effects

[0011] 1. Compared with existing technologies, this intelligent temperature control system suitable for marine platforms, through temperature and humidity detectors, temperature and humidity control host, and host computer, allows staff to conveniently observe and adjust the temperature in the transformer room at any time, ensuring that staff can always keep track of the internal conditions of the transformer room.

[0012] 2. Compared with existing technologies, this intelligent temperature control system suitable for marine platforms can easily change the working range of the wind power mechanism through a fan and sliding device, improve the overall effect of the wind power mechanism when it is in operation, and facilitate the cleaning of the fan by staff.

[0013] 3. Compared with existing technologies, this intelligent temperature control system suitable for marine platforms, through a power analysis host, power detector, alarm, and alarm signal receiver, facilitates the detection of the operation of the temperature control device, makes it easier for staff to determine the feedback effect of the temperature control device on the commands of the central control terminal, and further improves the working effect of the temperature control device. Attached Figure Description

[0014] The present invention will be further described below with reference to the accompanying drawings and embodiments;

[0015] Figure 1 This is a structural diagram of the transformer compartment of an intelligent temperature control system suitable for offshore platforms according to this utility model;

[0016] Figure 2 This is a structural diagram of a power detection system for an intelligent temperature control system suitable for marine platforms according to this utility model;

[0017] Figure 3 This is a structural diagram of the central control room of an intelligent temperature control system suitable for marine platforms according to this utility model;

[0018] Figure 4 This is a structural diagram of the overall temperature control system of an intelligent temperature control and regulation system suitable for marine platforms according to this utility model. Detailed Implementation

[0019] This section will describe in detail the specific embodiments of the present utility model. The preferred embodiments of the present utility model are shown in the accompanying drawings. The purpose of the drawings is to supplement the textual description with graphics, so that people can intuitively and vividly understand each technical feature and the overall technical solution of the present utility model, but they should not be construed as limiting the scope of protection of the present utility model.

[0020] Reference Figure 1-4 This utility model discloses an intelligent temperature control system suitable for offshore platforms, comprising: a transformer room and a central control room. The transformer room's main components include a wind-powered temperature controller, an air conditioner, and a temperature and humidity detector. These three components are installed in isolation to prevent interference. The wind-powered temperature controller and air conditioner are connected to the temperature and humidity detector to form an automatic control system, and both have local control functions. These devices cooperate to form an intelligent constant temperature system and an intelligent environmental control system. The intelligent constant temperature system, composed of the wind-powered temperature controller, air conditioner, and temperature and humidity detector, can monitor the transformer room's indoor temperature in real time and automatically adjust the operating status of the air conditioner and fan equipment to maintain a constant indoor temperature. The intelligent environmental control system, composed of the wind-powered temperature controller and the temperature and humidity detector, can control the humidity in the transformer room by adjusting the operation of the fan equipment to enhance ventilation efficiency and adjust indoor humidity and air quality.

[0021] The main components of the wind-powered temperature control system include a fan and a sliding device. The fan's mounting end is directly connected to the base of the sliding device, and the base of the sliding device is fixedly connected to the wall between the transformers. The sliding device has two slide rails, one horizontal and one vertical. The horizontal slide rail extends to the edge of the transformer room. Under normal conditions, only the vertical slide rail is used to easily control and adjust the height of the fan, increase the fan's blowing range, reduce the total number of fans installed, and reduce the heat generated by auxiliary equipment. When cleaning the fan, the horizontal slide rail is used to move the fan equipment to the periphery of the transformer room, making it convenient for staff to clean the impurities attached to the fan surface.

[0022] Both the fan and the air conditioner are equipped with power detectors, which are directly connected to alarms. An alarm signal receiver is installed in the central control room. The power detectors are wirelessly connected to the power analysis host. These devices facilitate the detection of the operating power of the fan and the air conditioner. The power detectors and the alarms work together to remind staff of the fan and air conditioner's response to commands from the central control room. This avoids situations where the fan and air conditioner fail to respond after a remote operation command is issued, reminding staff to manually adjust the fan and air conditioner in a timely manner. It also reminds staff to check for abnormalities in the remote control system.

[0023] The central control room mainly consists of a temperature control host, a host computer, and a power analysis host. The temperature control host and the host computer are directly connected, as is the power analysis host. These connections are independent of each other. The fan-driven temperature controller, air conditioner, and temperature and humidity detector are connected to the temperature and humidity control host. These devices can be connected wirelessly or via wired connections as needed. The central control room is equipped with an alarm signal receiver, which is connected to the power analysis host. These devices form the system control terminal, enhancing remote control of the air conditioner and fans by staff and providing feedback on the adjustment status. Simultaneously, the system automatically or manually adjusts the temperature and humidity recorder to manage the air conditioner and fans. If the recorder malfunctions, remote manual control is performed on the host computer. If this fails, local control is required. These three control methods enhance the overall emergency response capability of the system.

[0024] Working principle: After receiving signals from the temperature and humidity detector or the temperature and humidity control host, the air conditioner adjusts its own set temperature and current mode. After receiving signals from the temperature and humidity detector or the temperature and humidity control host, the fan changes its own operating status. The host computer displays the detected temperature and humidity of the corresponding room, the air conditioner status (including temperature setting, mode setting, whether it is enabled), the fan status, and the alarm status.

[0025] The embodiments of the present utility model have been described in detail above with reference to the accompanying drawings. However, the present utility model is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present utility model.

Claims

1. An intelligent temperature control system suitable for offshore platforms, characterized in that, The system includes a transformer room and a central control room. The main components of the transformer room are a fan-driven temperature controller, an air conditioner, a temperature and humidity detector, and a power detector. The fan-driven temperature controller, air conditioner, and temperature and humidity detector are all installed in isolation to prevent interference. The fan-driven temperature controller and air conditioner are connected to the temperature and humidity detector to form an automatic control system, and both the fan-driven temperature controller and air conditioner are equipped with local control. The main components of the central control room are a temperature control host, a host computer, and a power analysis host. The temperature control host and host computer are directly connected, and the power analysis host is directly connected to the temperature control host. The power analysis host and host computer do not interfere with each other when connected to the temperature control host. The fan-driven temperature controller, air conditioner, and temperature and humidity detector are connected to the temperature and humidity control host.

2. The intelligent temperature control system for marine platforms according to claim 1, characterized in that, The main components of the wind-powered temperature control system include a fan and a sliding device.

3. The intelligent temperature control system for marine platforms according to claim 2, characterized in that, The installation end of the fan is directly connected to the base of the sliding device, and the base of the sliding device is fixedly connected to the wall between the transformers.

4. The intelligent temperature control system for offshore platforms according to claim 1, characterized in that, The wind-powered temperature controller, air conditioner, temperature and humidity detector, and temperature and humidity control host can be connected via either wireless or wired connection as needed.

5. The intelligent temperature control system for offshore platforms according to claim 1, characterized in that, Both the fan and the air conditioner are equipped with power detectors, and the power detectors are wirelessly connected to the power analysis host. The power detectors are also directly connected to an alarm.

6. The intelligent temperature control system for offshore platforms according to claim 1, characterized in that, The central control room is equipped with an alarm signal receiver, which is connected to the power analysis host.