Skid-mounted dust removal equipment and dust removal equipment debugging and transporting method

By adopting a skid-mounted dust removal equipment, using the combination of chassis and multiple independent functional modules, the cumbersome problems of off-site transportation, assembly and commissioning are solved, and rapid assembly and flexible transportation are achieved, reducing transportation and installation and commissioning costs.

CN120155007APending Publication Date: 2025-06-17MEGAUNITY ENVIRONMENTAL SOLUTIONS CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202311725297.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-12-15
Publication Date
2025-06-17

AI Technical Summary

Technical Problem

Existing dust removal equipment is cumbersome and inconvenient during off-site transportation, assembly and commissioning, and is expensive.

Method used

The dust removal equipment adopts a skid-mounted structure. Through the combination of the chassis and multiple independent functional modules, the functional modules can be detached and installed, disassembled and reassembled according to needs. The method of first assembling the whole machine and debugging, and then disassembly transporting to another place and reassembly in another place.

Benefits of technology

It realizes rapid assembly and flexible transportation of dust removal equipment, reduces transportation and installation and commissioning costs, and improves production efficiency and after-sales efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120155007A_ABST
    Figure CN120155007A_ABST
Patent Text Reader

Abstract

The invention provides skid-mounted dust removal equipment and a dust removal equipment debugging and transporting method, the equipment adopts a skid-mounted structure, a plurality of functional modules are mounted on a chassis, and the functional modules are connected through pipelines and cable bridges to form the whole dust removal equipment; the assembly and debugging work is firstly completed in a production workshop, then the dust removal equipment is disassembled and transported according to actual transportation conditions and requirements, and after the dust removal equipment is transported to a different place, the assembly work can be completed as long as the disassembled functional modules are reinstalled on the chassis; therefore, the device can be directly installed and used without remote debugging or only through simple debugging. The dust removal equipment with the skid-mounted structure can be quickly disassembled and assembled, and can be mounted on chassis of different models by flexibly assembling different functional modules, so that the quick assembly of different dust removal equipment is realized, the adaptability is higher, and the production efficiency is higher.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of dust removal equipment, and particularly to a skid-mounted dust removal equipment and a method for commissioning and transporting the dust removal equipment. Background Art

[0002] A dust collector is a device widely used in industrial production, providing a cleaner and healthier production environment. Currently, our company's dust collectors are sold both at home and abroad. When sending the equipment to customers, there are usually two methods: 1. Assemble and commission the entire unit of the dust collector in our company's production workshop, and then transport the entire dust removal equipment to domestic or even overseas customer companies. There is no need for further commissioning and it can be directly installed and used. However, due to the large size of the entire equipment, it exceeds the size of the usual transport carriage, and long-distance transportation, especially overseas transportation, is troublesome and costly; 2. Transport the various components of the dust collector to domestic or even overseas customer companies separately, and install and commission them at the customer's location. However, not all cities or countries where customers are located have our company's offices. The assembly, connection, and commissioning work between the various components is complex and cumbersome, and off-site assembly and commissioning, compared with assembling and commissioning in our company's production workshop, often result in slow progress due to the lack of necessary equipment or tools. Therefore, a new structure of dust removal equipment or a new method for commissioning and transporting is needed to solve the above problems. Summary of the Invention

[0003] The present invention is to provide a skid-mounted dust removal equipment and a method for commissioning and transporting the dust removal equipment to solve the problems of cumbersome and inconvenient off-site transportation, assembly, and commissioning of current dust removal equipment and high costs.

[0004] To achieve the above object, the present invention adopts the following technical solutions: A skid-mounted dust removal equipment includes a chassis and n independent functional modules, where n≥2, and the structures and functions of different functional modules are different from each other; the functional modules are detachably installed on the chassis, and the n functional modules are connected to each other according to the assembly requirements to form the whole machine of the skid-mounted dust removal equipment; the functional modules are used to be disassembled and reassembled according to actual needs after the whole machine of the skid-mounted dust removal equipment is assembled and commissioned.

[0005] Preferably, after the whole machine of the skid-mounted dust removal equipment is assembled and commissioned and transported from the production site to the customer, if there is no need for disassembly and transportation, the whole machine is carried and moved.

[0006] Preferably, after the whole machine of the skid-mounted dust removal equipment is assembled and commissioned and transported from the production site to the customer, if the whole machine cannot be carried, the specified functional module is disassembled from the chassis and carried and moved according to the requirements. When transported to the customer, the disassembled functional module is reinstalled on the chassis and reconnected to other functional modules.

[0007] Preferably, the functional module removed from the chassis is a single functional module or a combination of multiple interconnected functional modules.

[0008] Preferably, the chassis includes an outer frame and cross beams. The cross beams are detachably installed inside the outer frame and divide the outer frame into multiple installation units, and the functional modules are correspondingly installed in the installation units.

[0009] Preferably, the functional modules are arranged in the X direction, and the cross beams are slidably installed in the outer frame in the X direction.

[0010] Preferably, the chassis further includes vertical support columns, pipelines and cable trays. The vertical support columns are installed on the outer frame or the cross beams, and the vertical support columns are used to support and reinforce the functional modules. The pipelines and cable trays are installed on the outer frame, or the cross beams, or the functional modules, and the pipelines and cable trays are used to support pipelines and cables.

[0011] Preferably, two-way forklift holes and lifting points are provided on the side of the chassis.

[0012] Preferably, the functional modules include a dust removal and filtration module, a high-efficiency module, a fan module, and an electrical cabinet module.

[0013] A debugging and transportation method for a dust removal device, which applies a skid-mounted dust removal device. The skid-mounted dust removal device includes a chassis and n functional modules, where n≥2. The functional modules are all detachably and fixedly installed on the chassis, and different functional modules are connected by pipelines and electrical cables to realize the overall functions of the dust removal device. The debugging and transportation method includes the following steps: S1. Assembly of the dust removal device: Select specified types and quantities of functional modules and a chassis of corresponding size according to production requirements. Fix and install all the functional modules on the chassis in the specified installation order, and connect the pipelines and electrical cables between the functional modules according to production requirements to assemble a complete dust removal device; S2. Overall debugging: Conduct overall debugging on the assembled dust removal device until the dust removal device can be directly installed and used; S3. Packaging of the dust removal device: Compare the size of the dust removal device with the size of the transportation container, and package and transport according to the following situations: S31. If the overall size of the dust removal device is smaller than the size of the transportation container, directly install the whole dust removal device into the transportation container, transport it as a whole to the remote customer, and proceed to S5; S32. If the size of the whole dust removal device exceeds the size of the transportation container, remove the functional modules of the dust removal device that exceed the size of the transportation container. After reasonably planning the chassis, the functional modules still installed on the chassis, and the removed functional modules, load them all into the transportation container, transport them to the customer at a different location, and then go to S4; S4. Reassemble the dust removal device; after the dust removal device is disassembled, transported to the customer at a different location and unloaded, reinstall the removed functional modules onto the chassis, and reconnect and install the pipes and electrical cables so that the dust removal device is reassembled, and then go to S5; S5. Install the dust removal device at a different location; directly install the dust removal device at the location specified by the customer and start it for trial operation until the dust removal device works properly at the customer's place.

[0014] Further, in step S32, the steps of removing the functional modules that exceed the size from the whole dust removal device are as follows: S321. Mark the oversized modules; compare the assembled whole dust removal device with the transportation container, and mark the quantity and respective positions of the functional modules on the whole dust removal device that exceed the size of the transportation container; S322. Select the disassembly area; preliminarily delimit the area on the whole dust removal device that needs to be removed from the chassis for transportation. The disassembly area includes all functional modules that exceed the size of the transportation container; S323. Plan the disassembly plan; split the disassembly area into m separate functional module groups according to the actual transportation conditions, so that all the functional module groups can be placed in the transportation container after planning, where m < n, and select the plan with the smallest m value among all disassembly plans as the final disassembly plan; the functional module group is composed of at least 1 functional module. When the number of functional modules in the functional module group is at least 2, the pipes and cables between the functional modules that make up the functional module group remain connected; S323. Plan the loading; load the functional module groups split from the chassis, the chassis, and the functional modules still installed on the chassis into the transportation container and wait for transportation.

[0015] Compared with the prior art, the present invention improves the overall structure of the dust removal device into a skid-mounted structure in which each functional module is assembled and installed on the chassis. And if long-distance transportation is required, it can be first assembled and debugged as a whole, then disassembled and transported to a different place, and directly installed and used without debugging after reassembling the disassembled parts at the different place; the beneficial effects of the above improvement are: 1. The dust removal equipment adopts a skid-mounted structure, which can realize the rapid assembly of different dust removal equipment by flexibly assembling different functional modules and installing them on chassis of different models, with stronger flexibility, adaptability and higher production efficiency. In addition, the skid-mounted dust removal equipment is convenient for quick disassembly and assembly. When transporting, the oversized functional modules can be quickly disassembled separately for transportation, and then reassembled separately after arriving at the destination. There is no need to use special large-size transportation containers, nor on-site assembly and debugging, which reduces transportation costs, installation and debugging transportation difficulties, and improves after-sales efficiency.

[0016] 2. First, complete the assembly and debugging work in the production workshop, and then disassemble and transport the dust removal equipment according to the actual transportation situation and requirements. After arriving at the destination, as long as the disassembled functional modules are reinstalled on the chassis, the assembly work is completed. And since it has been debugged before transportation, there is no need for on-site debugging or only simple debugging is required to directly install and use, effectively solving the problems of high cost, great difficulty and complicated work in current remote transportation, installation and debugging. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 FIG. is a schematic structural diagram of a skid-mounted dust removal equipment applying the debugging and transportation method of the present invention; Figure 2 FIG. is a schematic structural diagram of the chassis; Figure 3 FIG. is a schematic structural diagram of the outer frame and cross beam of the chassis; Figure 4 FIG. is a flowchart of a debugging and transportation method for a dust removal equipment; Figure 5 FIG. is a flowchart of the disassembly steps before the whole machine transportation in a debugging and transportation method for a dust removal equipment.

[0018] Wherein, the chassis is 1, the functional module is 2, the outer frame is 11, the cross beam is 12, the two-way forklift hole is 13, the lifting point is 14, the vertical support column is 15, and the pipeline and cable bridge is 16. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0019] For a further understanding of the purpose, structure, features and functions of the present invention, the following is a detailed description in conjunction with the embodiments.

[0020] Please refer to Figures 1 - 3 , a skid-mounted dust removal equipment, including a chassis 1 and n independent functional modules 2, where n≥2, and the structures and functions of different functional modules 2 are different from each other; the functional modules 2 are detachably installed on the chassis 1, and the n functional modules 2 are connected to each other according to the assembly requirements to form the whole machine of the skid-mounted dust removal equipment; the functional modules 2 are used to be disassembled and reassembled according to actual needs after the skid-mounted dust removal equipment is assembled and debugged.

[0021] In existing dust collectors, each component is usually tightly connected and uniformly installed within the housing. Therefore, when a customer purchases one, if the equipment is first installed and debugged and then transported as a whole, some dust collection equipment is large in size and inconvenient to load, especially for foreign customers, and the transportation cost is even higher. If all components are transported to the customer's location for assembly, debugging, and installation, the company's technical personnel need to accompany them. Due to limitations in technology, equipment, software, and hardware, the cost is also high and the progress is slow.

[0022] The dust collection equipment of the present invention has a skid-mounted structure. Each functional component is designed as an independent functional module 2. All functional modules 2 can be installed on the chassis 1 and connected through pipelines and electrical cables. During assembly, only the required functional modules 2 need to be selected and fixedly installed on the chassis 1, and then the connection between the functional modules 2 is completed through pipelines and electrical cables, that is, the assembly work of the dust collection equipment is completed. Compared with the prior art, the independent modular design of the present invention enables higher assembly efficiency, and different functional modules 2 can be flexibly selected and assembled into different dust collection equipment, with a wider adaptability. In addition, this skid-mounted structure with modular combined installation can be quickly disassembled. It is first assembled and debugged as a whole in the production workshop. During transportation, the over-sized functional module 2 can be separately disassembled and transported separately. After arriving at a different location, as long as the disassembled functional module 2 is reinstalled on the chassis 1, there is no need to reassemble everything again, nor is it necessary to use professional equipment and software for cumbersome debugging. It can be directly installed at the customer-specified location for use. Even if re-debugging is required, only simple debugging is needed, effectively solving the problems of high cost, great difficulty, and cumbersome work in current long-distance remote transportation, installation, and debugging. Embodiment 1

[0023] Select appropriate functional modules 2 according to the customer's requirements, install them on the chassis 1, and connect and assemble each functional module 2 using pipelines and electrical cables. After the skid-mounted dust collection equipment is assembled and debugged as a whole, it is transported from the production site to the customer. If there is no need for disassembly and transportation, it is carried and moved as a whole. When the customer's location is relatively close, the transportation distance is short, and there are no high requirements for the overall size of the equipment, it can be directly carried as a whole; or it can be carried using a transportation tool. Since the overall size of the dust collection equipment is smaller than the size of the transportation container, it can also be directly transported as a whole. After being transported to the customer, it can be directly installed and used, and there is no need for off-site debugging and assembly. Embodiment 2

[0024] Select a suitable functional module 2 according to the customer's requirements, install it on the chassis 1, and connect and assemble each functional module 2 using pipelines and electrical cables. After the skid-mounted dust removal equipment is assembled and debugged, it is transported from the production site to the customer. If the whole machine cannot be transported, the specified functional module 2 is disassembled from the chassis 1 according to the requirements, transported, and when it arrives at the customer, the disassembled functional module 2 is reinstalled on the chassis 1 and reconnected to other functional modules 2. Under some limited transportation conditions, the whole skid-mounted dust removal equipment of the present invention cannot be directly loaded into the transportation container for whole machine transportation, but the over-sized functional module 2 or a combination of multiple functional modules 2 can be directly disassembled according to the situation, so that after being rearranged, it can be loaded into the specified transportation container, reducing transportation costs and improving transportation efficiency. And when it is sent to the customer, only the disassembled functional module 2 needs to be reassembled, without the need for re-debugging, or only simple secondary debugging for the reassembled functional module 2 is required to be directly installed and used.

[0025] Preferably, the functional module 2 disassembled from the chassis 1 is a single functional module 2 or a combination of multiple interconnected functional modules 2, and the best disassembly plan is selected according to the actual situation.

[0026] In an embodiment, the functional module 2 includes a dust removal and filtration module, a high-efficiency module, a fan module, and an electrical cabinet module. The number and type of the functional module 2 of the present invention are not limited. The number of the same type of functional module 2 can be increased according to actual needs, such as setting 2-3 dust removal and filtration modules, two fan modules, etc., or other functional components can also be split into separate functional modules 2, such as a dust collection module, a pre-spraying module, a flame arrester module, etc. It is to split and improve the functional components of the existing dust collector into an independent modular structure, and the modules are connected by pipelines and electrical cables. The above functional module 2 is improved from the commonly used components of the dust removal equipment.

[0027] In an embodiment, the chassis 1 includes an outer frame 11 and a cross beam 12. The cross beam 12 is installed inside the outer frame 11 and divides the outer frame 11 into n installation units, and n functional modules 2 are correspondingly installed in the n installation units. The bottom installation dimensions between each functional module 2 and its corresponding installation unit are corresponding, and it can be installed by means of screw fixation, etc., which is convenient, fast, and highly flexible, and is applicable to the installation of different functional modules 2; the functional module 2 and the chassis 1 can be fixed by screws, and the disassembly and assembly are flexible and convenient, applicable to different models of functional modules 2 and chassis 1, and do not occupy much space. Any other existing fixed installation method can also be used.

[0028] Further, the functional modules 2 are arranged along the X direction. The cross beam 12 is slidably installed in the outer frame 11 along the X direction. By sliding the cross beam 12 along the X direction, the size of the installation unit divided by it can be adjusted to match the installation of functional modules 2 of different sizes. The installation structure between the outer frame 11 and the cross beam 12 can be that slide rails are arranged on the inner side of the outer frame 11, and sliders are arranged at both ends of the cross beam 12. The cross beam 12 slides in the outer frame 11 through the cooperation of the sliders and the slide rails and is fixed by structural parts such as fixing pins; it can also be that a plurality of fixing holes are arranged along the X direction on the inner side of the outer frame 11, fixing blocks are arranged at both ends of the cross beam 12, and the position of the cross beam 12 is adjusted and moved along the X direction through the cooperation of the fixing blocks and different fixing holes; in addition to the above structures, any other current structure can also be used to achieve the purpose of the cross beam 12 sliding along the X direction in this embodiment.

[0029] Furthermore, the cross beam 12 is detachably installed in the outer frame 11, which is convenient for adjusting the position of the cross beam 12, replacing the cross beam 12, and increasing or decreasing the number of cross beams 12, so as to provide a more stable and flexible support and fixing effect.

[0030] In one embodiment, the sizes of the chassis 1 are different. Dust removal devices of different models select the corresponding chassis 1, avoiding the chassis 1 being too large, which increases transportation difficulties, and at the same time avoiding the chassis 1 being too small, which affects the skid-mounted fixing effect of the functional modules 2.

[0031] Preferably, the chassis 1 further includes vertical support columns 15, and a pipe and cable bridge 16. The vertical support columns 15 are installed on the outer frame 11 or the cross beam 12. The vertical support columns 15 are used to support and reinforce the functional modules 2. The pipe and cable bridge 16 is installed on the outer frame 11, or the cross beam 12, or the functional module 2. The pipe and cable bridge 16 is used to support pipes and cables.

[0032] In one embodiment, two-way forklift holes 13 and lifting points 14 are provided on the side of the chassis 1, which is convenient for the dust removal device to be easily lifted and moved by a forklift or lifted by a crane after the overall assembly.

[0033] Please refer to Figure 4 and Figure 5 , the present invention also provides a debugging and transportation method for a dust removal device, which applies a skid-mounted dust removal device. The skid-mounted dust removal device includes a chassis 1 and n functional modules 2, where n≥2. The functional modules 2 are all detachably and fixedly installed on the chassis 1. Different functional modules 2 are connected by pipes and electrical cables to realize the overall functions of the dust removal device; the debugging and transportation method includes the following steps: S1. Dust removal equipment assembly: Select specified types and quantities of functional modules 2 and chassis 1 of corresponding sizes according to production requirements. Fix and install all functional modules 2 on the chassis 1 in the specified installation order, and connect the pipelines and electrical cables between the functional modules 2 according to production requirements to assemble a complete dust removal equipment; S2. Whole machine debugging: Conduct whole machine debugging on the assembled dust removal equipment until the dust removal equipment can be directly installed and used; S3. Packing the dust removal equipment: Compare the size of the dust removal equipment with the size of the transportation container and pack and transport according to the following situations: S31. If the size of the whole dust removal equipment is smaller than the size of the transportation container, directly install the whole dust removal equipment into the transportation container, transport it as a whole to the customer at a different location, and proceed to S5; S32. If the size of the whole dust removal equipment exceeds the size of the transportation container, disassemble the functional modules 2 that exceed the size of the transportation container from the dust removal equipment. Reasonably plan and pack the chassis 1, the functional modules 2 still installed on the chassis 1, and the disassembled functional modules 2 into the transportation container, transport them to the customer at a different location, and proceed to S4; S4. Reassembling the dust removal equipment: After the dust removal equipment is disassembled, transported to the customer at a different location and unloaded, reinstall the disassembled functional modules 2 on the chassis 1, and reconnect and install the pipelines and electrical cables to complete the reassembly of the dust removal equipment, and proceed to S5; S5. Installing the dust removal equipment at a different location: Directly install the dust removal equipment at the location specified by the customer and start the trial operation until the dust removal equipment works properly at the customer's place.

[0034] In step S32, the disassembled functional modules 2 are an independent functional module 2, or multiple independent functional modules 2, or a combination of multiple interconnected functional modules 2.

[0035] In step S32, the steps for disassembling the functional modules 2 that exceed the size from the whole dust removal equipment are as follows: S321. Marking the oversized modules: Compare the assembled whole dust removal equipment with the transportation container, and mark the quantity and respective positions of the functional modules 2 on the whole dust removal equipment that exceed the size of the transportation container; S322. Selecting the disassembly area: Initially delimit the area on the whole dust removal equipment that needs to be disassembled from the chassis 1 for transportation. The disassembly area includes all functional modules 2 that exceed the size of the transportation container; S323. Plan the disassembly plan; divide the disassembly area into m separate functional module groups 2 according to the actual transportation conditions, so that all the functional module groups 2 can be placed in the transportation container after planning, where m < n. Select the plan with the smallest m value, the simplest disassembly and reinstallation among all disassembly plans as the final disassembly plan; the functional module groups 2 are composed of at least 1 functional module 2. When the number of functional modules 2 in the functional module group 2 is at least 2, the pipelines and cables between the functional modules 2 that make up the functional module group 2 remain connected. S323. Plan the loading; load the functional module groups 2 disassembled from the chassis 1, the chassis 1, and the functional modules 2 still installed on the chassis 1 into the transportation container and wait for transportation.

[0036] In this step, the principle for the disassembly of the functional module 2 is mainly to minimize the number of disassembled functional module groups 2 on the premise that all the functional modules 2 and the chassis 1 can be loaded into the transportation container after disassembly, that is, to take the smallest m value in step S323, so as to facilitate loading and reassembly at the destination customer. Disassemble according to the size of the transportation container, and it is necessary to ensure that the disassembled functional module 2 can be firmly placed in the transportation container with the chassis 1 and the undismantled ones on it after changing the posture or position. In addition, try to reduce the number of disassembled pipelines and electrical cables to facilitate later reassembly.

[0037] In an embodiment, a total of 4 functional modules 2 are assembled along the X direction on the chassis 1 of the dust removal equipment. The height dimensions of the first and third functional modules 2 exceed the range of the transportation container. Then, to facilitate reassembly, the first, second, and third functional modules 2 are selected as the disassembly area, and the following disassembly plans are generated: Plan 1, m = 1, that is, the first, second, and third functional modules 2 are disassembled as a whole functional module group 2; Second, m = 2. The two disassembled functional module groups 2 can be the first and second as a group, and the third as a group; or the first as a group, and the second and third as a group; or the first as a group, the third as a group, and the second functional module 2 remains installed on the chassis 1 without disassembly. Select the plans that can place all the functional module groups 2 in the transportation container after planning for comparison. If all can be realized, select the plan with the smallest m value and the simplest disassembly and reinstallation as the final disassembly plan, that is, Plan 1 with m = 1 is the final disassembly plan. Such a disassembly and transportation method can achieve the lowest cost, the simplest installation and commissioning work.

[0038] The commissioning and transportation method of the skid-mounted dust removal equipment of the present invention, compared with the existing commissioning and transportation methods, neither requires transporting the entire dust removal equipment at high cost nor sending technicians to customers in different places or even overseas to assemble and commission from scratch. In the present invention, the dust removal equipment is first assembled in the production workshop, and with the complete commissioning equipment and tools in the factory, the dust removal equipment is pre-assembled. Then, by comparing the size of the transportation container, if the entire dust removal equipment can be loaded, it can be directly transported to the customer as a whole and can be installed and used directly upon arrival at the customer's place; if the size of some modules of the dust removal equipment exceeds the size of the transportation container and cannot be loaded as a whole, then one or some of the functional modules 2 that exceed the size can be separately disassembled, and their transportation placement positions or transportation postures can be changed so that the dust removal equipment can be loaded into the transportation container in a disassembled state. When transported to the customer, the disassembled functional modules 2 are reinstalled. Since it has been commissioned before transportation, after reinstallation, no commissioning is required, or only simple commissioning is needed, and it can be directly installed and used. Therefore, the transportation and commissioning method of the present invention does not require the use of special large-sized transportation containers, nor does it require off-site assembly and commissioning, reducing transportation costs, reducing the difficulty of installation, commissioning, and transportation, and improving after-sales efficiency.

[0039] The present invention has been described by the above related embodiments. However, the above embodiments are only examples of implementing the present invention. It must be pointed out that the disclosed embodiments do not limit the scope of the present invention. On the contrary, changes and modifications made without departing from the spirit and scope of the present invention fall within the scope of patent protection of the present invention.

Claims

1. A skid-mounted dust removal device, characterized in that: It includes a chassis and n independent functional modules, where n ≥ 2, and the structures and functions of different functional modules are different; the functional modules are all detachably installed on the chassis, and the n functional modules are connected to each other according to the assembly requirements to form the whole skid-mounted dust removal equipment; the functional modules are used to be disassembled and reassembled according to actual needs after the whole skid-mounted dust removal equipment is assembled and debugged.

2. The skid-mounted dust removal device according to claim 1, characterized in that: After the whole skid-mounted dust removal equipment is assembled and debugged, it is transported from the production site to the customer. If there is no need for disassembly and transportation, the whole machine is carried and moved.

3. The skid-mounted dust removal device according to claim 1, characterized in that: After the whole skid-mounted dust removal equipment is assembled and debugged, it is transported from the production site to the customer. If the whole machine cannot be carried, the specified functional module is disassembled from the chassis according to the requirements and carried and moved. When it is transported to the customer, the disassembled functional module is reinstalled on the chassis and reconnected to other functional modules.

4. The skid-mounted dust removal device according to claim 3, characterized in that: The functional module disassembled from the chassis is a single functional module or a combination of multiple interconnected functional modules.

5. The skid-mounted dust removal device according to claim 1, characterized in that: The chassis includes an outer frame and cross beams. The cross beams are detachably installed inside the outer frame and divide the outer frame into multiple installation units, and the functional modules are correspondingly installed in the installation units.

6. The skid-mounted dust removal device according to claim 5, characterized in that: The functional modules are arranged in the X direction, and the cross beams are slidably installed in the outer frame in the X direction.

7. The skid-mounted dust removal device according to claim 5, characterized in that: The chassis further includes vertical support columns, pipelines and cable trays. The vertical support columns are installed on the outer frame or the cross beams, and the vertical support columns are used to support and reinforce the functional modules. The pipelines and cable trays are installed on the outer frame, or the cross beams, or the functional modules, and the pipelines and cable trays are used to support pipelines and cables.

8. The skid-mounted dust removal device according to claim 1, characterized in that: Two-way forklift holes and lifting points are provided on the side of the chassis.

9. The skid-mounted dust removal device according to claim 1, characterized in that: The functional modules include a dust removal and filtration module, a high-efficiency module, a fan module, and an electrical cabinet module.

10. A method for commissioning and transporting a dust removal device, characterized in that, Applying the skid-mounted dust removal equipment, the skid-mounted dust removal equipment includes a chassis and n functional modules, where n ≥ 2. The functional modules are all detachably and fixedly installed on the chassis, and different functional modules are connected through pipelines and electrical cables to realize the whole machine function of the dust removal equipment; the debugging and transportation method includes the following steps: S1. Assembly of the dust removal equipment: Select the specified types and quantities of functional modules and the chassis with corresponding sizes according to production requirements, fixedly install all the functional modules on the chassis in the specified installation order, connect the pipelines and electrical cables between the functional modules according to production requirements, and assemble them into a complete dust removal equipment. S2. Whole machine debugging: Debug the assembled dust removal equipment until the dust removal equipment can be directly installed and used. S3. Packing of the dust removal equipment: Compare the size of the dust removal equipment with the size of the transportation container and pack and transport according to the following situations: S31. If the size of the whole dust removal equipment is smaller than the size of the transportation container, directly install the whole dust removal equipment into the transportation container, transport it as a whole to the remote customer, and go to S5; S32. If the size of the entire dust removal device exceeds the size of the transportation container, remove the functional modules of the dust removal device that exceed the size of the transportation container. After reasonably planning the chassis, the functional modules still installed on the chassis, and the removed functional modules, all of them are loaded into the transportation container and transported to the customer at a different location, then go to S4; S4. Reassemble the dust removal device; after the dust removal device is disassembled, transported to the customer at a different location and unloaded, reinstall the removed functional modules onto the chassis, and reconnect and install the pipelines and electrical cables so that the dust removal device is reassembled, then go to S5; S5. Install the dust removal device at a different location; directly install the dust removal device at the position designated by the customer and start it up for trial operation until the dust removal device works properly at the customer's place.

11. The method for commissioning and transporting a dust removal device according to claim 10, characterized in that, In step S32, the steps for removing the functional modules that exceed the size from the entire dust removal device are as follows: S321. Mark the oversized modules; compare the assembled entire dust removal device with the transportation container, and mark the quantity and respective positions of the functional modules on the entire dust removal device that exceed the size of the transportation container; S322. Select the disassembly area; preliminarily demarcate the area on the entire dust removal device that needs to be disassembled from the chassis for transportation. The disassembly area includes all the functional modules that exceed the size of the transportation container; S323. Plan the disassembly plan; divide the disassembly area into m separate functional module groups according to the actual transportation conditions, so that all the functional module groups can be placed in the transportation container after planning, where m < n. Select the plan with the smallest m value among all the disassembly plans as the final disassembly plan; the functional module group is composed of at least 1 functional module. When the number of functional modules in the functional module group is at least 2, the pipelines and cables between the functional modules that make up the functional module group remain connected; S323. Plan the loading; load the functional module groups disassembled from the chassis, the chassis, and the functional modules still installed on the chassis into the transportation container and wait for transportation.