Fast-assembly type efficient energy-saving turbine skid block device
By designing a quick-load high-efficiency energy-saving turbine ski block device, using steel frames, grid frames, locking components and other structures, the rapid deployment and intelligent control of the turbine ski block device are achieved, which solves the problem of pipeline fixation difficulties and improves the stability and expansion of the device.
Patent Information
- Application Number
- CN202422641264.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-31
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-10-31
AI Technical Summary
During the module integration process, the interface location and pipeline arrangement are determined by the skid block installation designer, which is very arbitrary, resulting in difficulty in pipeline fixing and later maintenance.
A quick-load high-efficiency energy-saving turbine skid block device is designed, using steel frames, grid frames, protective frames, locking components, moving wheels and other structures. By moving to the required position and self-locking, intelligent control is achieved using the energy control system, the pipeline is fixed by the locking components, and the standard interface module is seamlessly connected with the energy control system.
It realizes the convenience of pipeline fixation and maintenance, ensures smooth fluid transmission, improves the stability and scalability of the device, and supports rapid deployment and flexible applications.
Smart Images

Figure CN223136211U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of skid-mounted technology, in particular to a quick-installation type high-efficiency energy-saving turbine skid block device. Background Technique
[0002] In modern industrial production, the efficient utilization of energy and the rapid deployment of equipment have become the key factors to improve production efficiency and reduce operating costs. Traditional energy conversion and supply equipment often has problems such as complex structure, cumbersome installation, and inconvenient migration, which limit its flexibility and adaptability in different application scenarios. The skid-mounted technology, as an advanced modular design concept, refers to integrating control instruments, flow meters, valves, pipelines, auxiliary equipment, intermediate connectors, cables, etc. on an integral steel structure platform, only reserving process connection ports, control power supplies, and communication interfaces. This integral integrated part is called a loading skid, which is assembled on a skid body and can be migrated as a whole like a sled. The turbine skid block device is a modular equipment integrating core components such as turbines, compressors, and generators.
[0003] During the module integration process, since the interface positions and pipeline layouts are determined by the skid block installation designers, there is great randomness, the pipelines are not easy to fix and are relatively scattered, and it is difficult to maintain in the later stage.
[0004] Therefore, it is particularly important to design a quick-installation type high-efficiency energy-saving turbine skid block device to change the above technical defects and improve the overall practicability. Content of the Utility Model
[0005] The purpose of the utility model is to provide a quick-installation type high-efficiency energy-saving turbine skid block device.
[0006] To achieve the above purpose, the utility model provides the following technical solutions:
[0007] A quick-installation type high-efficiency energy-saving turbine skid block device, including a steel frame. Slots are arranged on the four side surfaces of the steel frame. Movable wheels are arranged at the four corners of the steel frame. A grid frame is arranged at the center of the steel frame. A control system is arranged on the top of the grid frame. A plurality of protective frames are arranged on the top of the steel frame. Standard interface modules are arranged inside the protective frames. A plurality of support frames are arranged on the top of the steel frame. A plurality of locking components are arranged on the support frames, protective frames, and grid frame.
[0008] As a preferred embodiment of the present utility model, the controllable system includes a turbine module, a compressor module, a generator module, and a control system. The turbine module is connected to the compressor module through a coupling. The compressor module is connected to the exhaust part of the turbine module through a pipeline. The generator module is connected to the rotor of the turbine module through a transmission shaft and receives the mechanical energy output therefrom. The control system is connected to the turbine module, the compressor module, and the generator module through cables and is used to receive operation data and send control instructions.
[0009] As a preferred embodiment of the present utility model, the locking assembly includes an upper ring and a lower ring. An installation seat is provided at the bottom of the lower ring. The upper ring and the lower ring are rotatably connected through a hinge seat. Threaded grooves are provided at one end of the lower ring and the upper ring, and the upper ring and the lower ring are fixed through a threaded rod.
[0010] As a preferred embodiment of the present utility model, the moving wheels are universal wheels, and a self-locking structure is provided on the moving wheels.
[0011] As a preferred embodiment of the present utility model, the grid frame is fixedly connected to the steel frame. The position of the controllable system is fixed to the grid frame through bolts. The protective frame is welded to the steel frame. The locking assembly is fixed to the support frame, the protective frame, and the grid frame through bolts.
[0012] As a preferred embodiment of the present utility model, the standard interface module is seamlessly docked with the controllable system through a cable, and the standard interface module can be connected to external devices.
[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0014] In the present utility model, a quick-installation and high-efficiency energy-saving turbine skid device is provided. By using the structures of the grid frame, the protective frame, the support frame, the locking assembly, the upper ring, and the lower ring, it is moved to the required position through the provided moving wheels and self-locked and fixed. The turbine module of the controllable system is started, and the power is transmitted to the compressor module for compression. The exhaust part is connected to the compressor to realize energy utilization. The generator module receives the mechanical energy of the turbine and converts it into electrical energy to supply the system or external devices. The controllable system is intelligently controlled, receives operation data and sends instructions to ensure efficient operation. The locking assembly fixes the pipeline, avoids staggered loosening, and ensures smooth fluid flow. The standard interface module is seamlessly docked with the controllable system, facilitating internal connection and external device expansion, and solving the problems that in the process of module integration, due to the fact that the interface positions and pipeline arrangements are determined by the skid installation designers, there is great randomness, the pipelines are not easy to fix and are relatively scattered, and it is difficult to maintain in the later stage. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1This is the overall structure diagram of the present utility model;
[0016] Figure 2 This is the schematic diagram of the steel frame assembly of the present utility model;
[0017] Figure 3 This is the schematic diagram of the locking assembly of the present utility model.
[0018] In the figure: 1. Steel frame; 101. Groove; 102. Movable wheel; 103. Grid frame; 104. Energy control system; 105. Protection frame; 106. Standard interface module; 107. Support frame; 108. Locking assembly; 201. Upper ring; 202. Lower ring. Specific implementation manners
[0019] Next, in combination with the embodiments of the present utility model, the technical solutions in the embodiments of the present utility model will be clearly and completely described.
[0020] Please refer to Figures 1 - 3 , the present utility model provides a quick-installation and high-efficiency energy-saving turbine skid device, including a steel frame 1. Grooves 101 are provided on the four side surfaces of the steel frame 1. Movable wheels 102 are provided at the four corners of the steel frame 1. A grid frame 103 is provided at the center of the steel frame 1. An energy control system 104 is provided on the top of the grid frame 103. A plurality of protection frames 105 are provided on the top of the steel frame 1. A standard interface module 106 is provided inside the protection frame 105. A plurality of support frames 107 are provided on the top of the steel frame 1. A plurality of locking assemblies 108 are provided on the support frames 107, the protection frames 105, and the grid frame 103. The device is easily moved to the required position through the movable wheels 102 and is stably fixed by a self-locking structure. Then, start the turbine module in the energy control system 104. The power generated by it is transmitted to the compressor module through a coupling for compression work. At the same time, the exhaust part of the turbine module is connected to the compressor module through a pipeline to realize the effective utilization of energy. The generator module receives the mechanical energy output by the turbine module through a transmission shaft and converts it into electrical energy to supply the entire system or external devices. Under the intelligent control of the energy control system, the control system receives the operation data of each module through a cable and sends corresponding control instructions to ensure the efficient and stable operation of the entire device. In addition, the pipelines inside the device are fixed through the locking assemblies 108, avoiding the intersection and loosening of the pipelines and ensuring the smooth transmission of fluids. The standard interface module 106 is seamlessly docked with the energy control system 104 through a cable, which not only facilitates the connection between internal modules but also enables the device to be easily connected to external devices, further expanding the application scope and functions of the device;
[0021] Among them, the controllable system 104 includes a turbine module, a compressor module, a generator module, and a control system. The turbine module is connected to the compressor module through a coupling. The compressor module is connected to the exhaust part of the turbine module through a pipeline. The generator module is connected to the rotor of the turbine module through a transmission shaft and receives the mechanical energy output by it. The control system is connected to the turbine module, the compressor module, and the generator module through cables, and is used to receive operation data and send control instructions. The controllable system integrates the turbine module, the compressor module, the generator module, and the control system, realizing a high degree of integration of energy conversion and supply and intelligent control. The locking assembly 108 includes an upper end ring 201 and a lower end ring 202. An installation seat is provided at the bottom of the lower end ring 202. The upper end ring 201 and the lower end ring 202 are rotatably connected through a hinge seat. Threaded grooves are provided at one end of both the lower end ring 202 and the upper end ring 201. The upper end ring 201 and the lower end ring 202 are fixed through a threaded rod. The locking assembly is used to fix the pipeline through the hinge connection of the upper end ring and the lower end ring and the fixation of the threaded rod, avoiding the intersection of pipelines. The moving wheel 102 is a universal wheel, and a self-locking structure is provided on the moving wheel 102. The moving wheel is designed as a universal wheel and equipped with a self-locking structure, enabling the turbine skid device to be easily moved when needed and stably fixed when not needed. The grid frame 103 is fixedly connected to the steel frame 1. The position of the controllable system 104 is fixed to the grid frame 103 through bolts. The protective frame 105 is welded to the steel frame 1. The locking assembly 108 is fixed to the support frame 107, the protective frame 105, and the grid frame 103 through bolts. The fixed connection between the grid frame and the steel frame, and the fixation of components such as the controllable system, the protective frame, and the locking assembly at their respective positions ensure the structural stability of the entire turbine skid device and the close cooperation between components. The standard interface module 106 is seamlessly docked with the controllable system 104 through a cable, and the standard interface module 106 can be connected to external devices. The standard interface module and the controllable system are seamlessly docked through a cable to unify the position of the interface. At the same time, the standard interface module can also be connected to external devices, expanding the application range and functions of the turbine skid device.
[0022] When using this quick-installation high-efficiency and energy-saving turbine skid-mounted device, first, move the device to the required position easily through the moving wheels 102 and fix it stably by using the self-locking structure. Then, start the turbine module in the energy control system 104. The power generated by it is transmitted to the compressor module through the coupling for compression work. At the same time, the exhaust part of the turbine module is connected to the compressor module through a pipeline to achieve effective utilization of energy. The generator module receives the mechanical energy output by the turbine module through the transmission shaft and converts it into electrical energy to supply the entire system or external devices. Under the intelligent control of the energy control system, the control system receives the operation data of each module through the cable and sends corresponding control instructions to ensure the efficient and stable operation of the entire device. In addition, the pipelines inside the device are fixed by the locking assembly 108 to avoid the intersection and loosening of the pipelines and ensure the smooth transmission of the fluid. The standard interface module 106 is seamlessly docked with the energy control system 104 through the cable, which not only facilitates the connection between internal modules but also enables the device to be easily connected to external devices, further expanding the application scope and functions of the device.
[0023] The standard parts used in this application document can all be purchased from the market. The specific connection methods of each part all adopt conventional means such as bolts, rivets, and welding that are mature in the prior art. The machinery, parts, and equipment all adopt conventional models in the prior art. Among them, the energy control system and the standard interface module are existing mature technologies. The control method is to control through the control system, and its control circuit can be realized by simple circuit connection by those skilled in the art, which belongs to the common knowledge in this field. Therefore, the control method and circuit connection will not be explained in detail in this application document.
Claims
1. A quick-installation and highly energy-efficient turbine skid-mounted unit, comprising a steel frame (1), characterized in that: The four side surfaces of the steel frame (1) are provided with slots (101), the four corners of the steel frame (1) are provided with moving wheels (102), a grid frame (103) is provided at the center of the steel frame (1), a control system (104) is provided at the top of the grid frame (103), a plurality of protective frames (105) are provided at the top of the steel frame (1), a standard interface module (106) is provided inside the protective frame (105), a plurality of support frames (107) are provided at the top of the steel frame (1), and a plurality of locking components (108) are provided on the support frames (107), protective frames (105), and grid frame (103).
2. The quick-installation and high-efficiency energy-saving turbine skid-mounted device according to claim 1, characterized in that: The control system (104) includes a turbine module, a compressor module, a generator module, and a control system. The turbine module is connected to the compressor module through a coupling. The compressor module is connected to the exhaust part of the turbine module through a pipeline. The generator module is connected to the rotor of the turbine module through a transmission shaft to receive the mechanical energy output by it. The control system is connected to the turbine module, compressor module, and generator module through cables for receiving operation data and sending control instructions.
3. The quick-installation and high-efficiency energy-saving turbine skid-mounted device according to claim 1, characterized in that: The locking component (108) includes an upper end ring (201) and a lower end ring (202). An installation seat is provided at the bottom of the lower end ring (202). The upper end ring (201) and the lower end ring (202) are rotatably connected through a hinge seat. Threaded grooves are provided at one end of both the lower end ring (202) and the upper end ring (201). The upper end ring (201) and the lower end ring (202) are fixed through a threaded rod.
4. The quick-installation and high-efficiency energy-saving turbine skid-mounted device according to claim 1, characterized in that: The moving wheel (102) is a universal wheel, and a self-locking structure is provided on the moving wheel (102).
5. A quick-installation type high-efficiency energy-saving turbine skid-mounted device according to claim 1, characterized in that: The grid frame (103) is fixedly connected to the steel frame (1). The control system (104) is fixed in position with respect to the grid frame (103) through bolts. The protective frame (105) is welded to the steel frame (1). The locking component (108) is fixed in position with respect to the support frame (107), protective frame (105), and grid frame (103) through bolts.
6. The quick-installation type high-efficiency energy-saving turbine skid-mounted unit device according to claim 1, characterized in that: The standard interface module (106) is seamlessly docked with the control system (104) through a cable, and the standard interface module (106) can be connected to external devices.