A generator set
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-27
- Publication Date
- 2026-08-11
AI Technical Summary
[0004]这样在生产不同类型的集装箱时,都需要根据不同的尺寸单独对集装箱的箱体板进行下料并拼接,进而导致集装箱发电机的生产效率较低
[0021]由于该发电机组包括发电装置及箱体,发电装置位于容纳腔内。这样该箱体能够对发电装置进行保护,并且也能减弱发电装置产生的噪音。由于箱体包括有限种类的多个箱体单元组件,多个箱体单元组件依次连接围合形成容纳腔。这样即使不同发电机组的箱体尺寸不同,也只需要将有限种类的多个箱体单元组件依次连接就可以形成不同尺寸的容纳腔。相比于相关技术中根据不同尺寸的箱体单独对箱体板进行下料并拼接的方式,能够提高箱体的生产效率,进而能够提高发电机组的生产效率。
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Figure CN224621588U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of power generation technology, specifically to a generator set. Background Technology
[0002] Containerized generator sets are used in locations requiring temporary power supply. They typically consist of a container and the generator equipment housed within it, with the container serving to protect the equipment and reduce noise.
[0003] To adapt to different power supply requirements, there are various types of containers for current container generators, and different types of containers have different sizes.
[0004] This means that when producing different types of containers, the container panels need to be cut and assembled separately according to different dimensions, which leads to low production efficiency of container generators. Utility Model Content
[0005] This application provides a generator set, which includes a power generation unit and a housing. The housing comprises a limited number of housing unit components of a certain type, which are sequentially connected to form a receiving cavity, within which the power generation unit is located. Thus, even if different generator sets have different housing sizes, only a limited number of housing unit components of a certain type need to be sequentially connected to form receiving cavities of different sizes. Compared to the related technology of individually cutting and assembling housing panels according to different housing sizes, this method improves the production efficiency of the housing, thereby increasing the production efficiency of the generator set.
[0006] To achieve the above objectives, this application adopts the following technical solution:
[0007] This application provides a generator set, which includes a power generation device and a housing. The housing includes a plurality of housing unit components of a limited variety, which are sequentially connected to form a receiving cavity, and the power generation device is located within the receiving cavity.
[0008] As an optional implementation, the number of types of the enclosure unit components is two: one is a first unit component, and the other is a second unit component, with multiple first unit components and multiple second unit components.
[0009] Multiple first unit components are connected sequentially to form a top plate component, and the multiple first unit components have the same size;
[0010] Multiple second unit components are sequentially connected to form a side plate assembly. The multiple second unit components are of the same size. The top plate assembly and the side plate assembly are interconnected to form the receiving cavity.
[0011] As an optional implementation, the first unit assembly includes a support unit groove, a first top plate sound insulation layer, a second top plate sound insulation layer, and a first reinforcing plate stacked sequentially. The support unit groove is located on the side of the first unit assembly closer to the receiving cavity, and the first reinforcing plate is located on the side of the first unit assembly away from the receiving cavity. Both the first top plate sound insulation layer and the second top plate sound insulation layer are housed in the support unit groove.
[0012] As an optional implementation, the first reinforcing plate is provided with multiple reinforcing grooves, the axes of the multiple reinforcing grooves are parallel, and the distance between the axes of any two adjacent reinforcing grooves is equal.
[0013] As an optional implementation, the first unit assembly includes two support unit grooves, which are spliced together along the surface direction of the first reinforcing plate.
[0014] The two opening sides of the support unit groove are bent toward the axis of the support unit groove to form a limiting cantilever plate.
[0015] As an alternative implementation, the housing further includes a top plate frame, the top plate assembly being connected to the side of the top plate frame opposite to the receiving cavity.
[0016] As an optional implementation, the top plate frame includes a top plate frame and supporting ribs; the supporting ribs are disposed within the frame of the top plate frame, and both ends of the supporting ribs are connected to the inner side of the top plate frame.
[0017] As an optional implementation, the second unit assembly includes a second unit support frame, a second unit frame, a second unit fixing plate assembly, a second side plate sound insulation layer, and a second reinforcing plate stacked sequentially. The second unit support frame is located on the side of the second unit assembly closer to the receiving cavity, and the second reinforcing plate is located on the side of the second unit assembly opposite to the receiving cavity.
[0018] As an optional implementation, the second unit fixing plate assembly includes two second fixing plates, which are spliced together along the surface direction of the second fixing plates.
[0019] As an optional implementation, the second reinforcing plate is a corrugated plate; and / or, the second unit support frame includes an angle steel frame, the angle steel frame being located on the side of the second unit assembly near the receiving cavity, and the angle steel frame having a plurality of connecting holes spaced apart along its circumference.
[0020] Compared with the prior art, the beneficial effects of this application are at least as follows:
[0021] This generator set includes a generator unit and a housing, with the generator unit located within a containment cavity. This housing protects the generator unit and reduces its noise. Since the housing comprises multiple housing unit components of a limited variety, these components are sequentially connected to form the containment cavity. Therefore, even if different generator sets have different housing sizes, only a limited number of housing unit components need to be sequentially connected to form containment cavities of different sizes. Compared to related technologies that involve individually cutting and assembling housing panels for different sizes, this method improves housing production efficiency, thereby increasing the overall production efficiency of the generator set. Attached Figure Description
[0022] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0023] Figure 1 This is a schematic diagram of the structure of a generator set provided in an embodiment of this application;
[0024] Figure 2 This is a three-dimensional structural diagram of a generator set housing provided in an embodiment of this application;
[0025] Figure 3 An exploded view of the first unit assembly of a generator set housing provided in an embodiment of this application;
[0026] Figure 4 This is a schematic diagram of the structure of the first reinforcing plate of a generator set housing provided in an embodiment of this application;
[0027] Figure 5 This is a schematic diagram of the structure of the support unit groove of a generator set housing provided in an embodiment of this application;
[0028] Figure 6 This application provides a schematic diagram of the structure of the top plate assembly and top plate frame of a generator set housing, as shown in the embodiments of this application.
[0029] Figure 7 This is a schematic diagram of the structure of the second unit assembly of a generator set housing provided in an embodiment of this application;
[0030] Figure 8 An exploded view of the second unit assembly of a generator set housing provided in an embodiment of this application;
[0031] Figure 9This is a schematic diagram of the structure of the second reinforcing plate of a generator set housing provided in an embodiment of this application.
[0032] Explanation of reference numerals in the attached figures:
[0033] 100-Generator set, 110-Generation device, 120-Box, 121-Box unit assembly, 122-Top plate assembly, 1221-First unit assembly, 1222-Support unit groove, 1223-First top plate sound insulation layer, 1224-Second top plate sound insulation layer, 1225-First reinforcing plate, 1226-Reinforcing groove, 1227-Limiting cantilever plate, 123-Side plate assembly, 1231-Second unit assembly, 1232-Second unit support frame, 1233-Second unit frame, 1234-Second unit fixing plate assembly, 1235-Second side plate sound insulation layer, 1236-Second reinforcing plate, 1237-Second fixing plate, 1238-Angle steel frame, 1239-Connecting hole, 124-Top plate frame, 1241-Top plate frame, 1242-Supporting rib, 130-Accommodation cavity. Detailed Implementation
[0034] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application. Unless otherwise specified, the following embodiments and features can be combined with each other.
[0035] Containerized generator sets are used in locations requiring temporary power supply, such as field construction or emergency repair projects. Since these generator sets are typically used in open-air environments, it's necessary to protect the generating equipment and reduce its noise. Therefore, the generator set includes a container, inside which the generating equipment is housed. This container serves to protect the equipment and reduce noise. To accommodate different power supply requirements, current containerized generator containers come in various types, each with different dimensions.
[0036] This means that when producing different types of containers, the container panels need to be cut and assembled separately according to different dimensions, which leads to low production efficiency of container generators.
[0037] Based on the aforementioned technical problems, the generator set provided by this utility model solves these problems by setting up multiple housing unit components of a limited variety. Specifically, the generator set includes a power generation device and a housing. Since the power generation device is located within a housing cavity, the housing can protect the power generation device and also reduce the noise generated by the power generation device. Because the housing includes multiple housing unit components of a limited variety, and multiple housing unit components are connected sequentially to form a housing cavity, even if different generator sets have different housing sizes, it is only necessary to connect multiple housing unit components of a limited variety sequentially to form housing cavities of different sizes. Compared with the related technology of cutting and splicing housing panels separately according to different sizes of housings, this method can improve the production efficiency of the housing, thereby improving the production efficiency of the generator set.
[0038] The contents of this application will now be described in detail with reference to the accompanying drawings, so that those skilled in the art can have a clearer and more detailed understanding of the contents of this application.
[0039] The following provides a detailed description of the specific structure of the aforementioned generator set and various possible implementation methods.
[0040] Figure 1 This is a schematic diagram of the structure of a generator set 100 provided in an embodiment of this application. Figure 2 This is a three-dimensional structural diagram of the housing 120 of a generator set 100 provided in an embodiment of this application.
[0041] See Figure 1 and Figure 2 The generator set 100 includes a power generation device 110 and a housing 120. The housing 120 includes a plurality of housing unit components 121 of a limited variety, which are sequentially connected to form a receiving cavity 130, and the power generation device 110 is located within the receiving cavity 130.
[0042] In this embodiment, the generator set 100 includes a power generation device 110 and a housing 120, with the power generation device 110 located within the receiving cavity 130. This housing 120 protects the power generation device 110 and reduces the noise generated by it. Since the housing 120 comprises a limited number of housing unit components 121 of a certain type, these components are sequentially connected to form the receiving cavity 130. Therefore, even if the housing 120s of different generator sets 100s have different sizes, only a limited number of housing unit components 121 need to be sequentially connected to form receiving cavities 130 of different sizes. Compared to the related art method of individually cutting and assembling housing 120 plates according to different sizes, this method improves the production efficiency of the housing 120, thereby increasing the production efficiency of the generator set 100.
[0043] As an optional implementation, in some embodiments, see [link to relevant documentation]. Figure 1 and Figure 2 There are two types of enclosure unit components 121: one is a first unit component 1221, and the other is a second unit component 1231. There are multiple first unit components 1221 and multiple second unit components 1231. Multiple first unit components 1221 are sequentially connected to form a top panel assembly 122, and all first unit components 1221 are of the same size. Multiple second unit components 1231 are sequentially connected to form a side panel assembly 123, and all second unit components 1231 are of the same size. The top panel assembly 122 and the side panel assembly 123 are interconnected to form a receiving cavity 130.
[0044] In this embodiment, the housing 120 employs two types of housing unit components 121: a first unit component 1221 and a second unit component 1231. The first unit components 1221 are sequentially connected to form a top plate component 122, and the second unit components 1231 are sequentially connected to form a side plate component 123. Since the multiple first unit components 1221 and the multiple second unit components 1231 have the same size, the required number of first unit components 1221 and second unit components 1231 can be calculated based on the dimensions of the top plate component 122 and the side plate component 123. Then, the required number of first unit components 1221 and second unit components 1231 can be assembled to form the receiving cavity 130. Furthermore, since the strength requirements of the top plate component 122 and the side plate component 123 of the housing 120 are different, it is easier to meet the strength requirements of the top plate component 122 and the side plate component 123 by using two different housing unit components.
[0045] As an optional implementation, in some embodiments, see [link to relevant documentation]. Figure 1 , Figure 2 and Figure 3 The first unit assembly 1221 includes a support unit groove 1222, a first top plate sound insulation layer 1223, a second top plate sound insulation layer 1224, and a first reinforcing plate 1225 stacked sequentially. The support unit groove 1222 is located on the side of the first unit assembly 1221 close to the receiving cavity 130, and the first reinforcing plate 1225 is located on the side of the first unit assembly 1221 away from the receiving cavity 130. The first top plate sound insulation layer 1223 and the second top plate sound insulation layer 1224 are both housed in the support unit groove 1222.
[0046] In this embodiment, the first top plate sound insulation layer 1223 and the second top plate sound insulation layer 1224 can reduce the noise generated by the power generation device 110, thereby improving the sound insulation effect of the enclosure 120. The first reinforcing plate 1225 has high strength, which enhances the structural strength of the first unit component 1221, and thus enhances the structural strength of the enclosure 120.
[0047] Because the support unit groove 1222, the first top plate sound insulation layer 1223, the second top plate sound insulation layer 1224, and the first reinforcing plate 1225 are stacked sequentially, and the first top plate sound insulation layer 1223 and the second top plate sound insulation layer 1224 are both housed within the support unit groove 1222, the first top plate sound insulation layer 1223 and the second top plate sound insulation layer 1224 are sandwiched between the bottom plate of the support unit groove 1222 and the first reinforcing plate 1225. This protects the first top plate sound insulation layer 1223 and the second top plate sound insulation layer 1224, thereby extending their service life.
[0048] Since the support unit groove 1222 is located on the side of the first unit assembly 1221 near the receiving cavity 130, and the first reinforcing plate 1225 is located on the side of the first unit assembly 1221 away from the receiving cavity 130, the first reinforcing plate 1225 is disposed on the outer surface of the housing 120, thus improving the impact resistance of the housing 120.
[0049] As an optional implementation, in some embodiments, see [link to relevant documentation]. Figure 1 , Figure 2 , Figure 3 and Figure 4 The first reinforcing plate 1225 is provided with multiple reinforcing grooves 1226, the axes of the multiple reinforcing grooves 1226 are parallel, and the distance between the axes of any two adjacent reinforcing grooves 1226 is equal.
[0050] In this embodiment, the first reinforcing plate 1225 is provided with multiple reinforcing grooves 1226, which increases the bending stiffness of the first reinforcing plate 1225 and thus further improves the structural strength of the first reinforcing plate 1225. Since the axes of the multiple reinforcing grooves 1226 are parallel, the axial distance between any two adjacent reinforcing grooves 1226 is equal. This ensures that the strength of the first reinforcing plate 1225 is basically the same in all parts and also facilitates the manufacturing and processing of the first reinforcing plate 1225.
[0051] It should be noted that the multiple reinforcing grooves 1226 on the first reinforcing plate 1225 are formed by machine stamping.
[0052] As an optional implementation, in some embodiments, see [link to relevant documentation]. Figure 1 , Figure 2 , Figure 3and Figure 5 The first unit assembly 1221 includes two support unit grooves 1222, which are spliced along the surface direction of the first reinforcing plate 1225. The opening sides of the two groove walls of the support unit grooves 1222 are bent towards the axial direction of the support unit grooves 1222 to form limiting cantilever plates 1227.
[0053] In this embodiment, the first unit component 1221 includes two support unit slots 1222, and the two support unit slots 1222 are spliced along the surface direction of the first reinforcing plate 1225. The aforementioned first roof sound insulation layer 1223 and second roof sound insulation layer 1224 are also two in number. One first roof sound insulation layer 1223 and one second roof sound insulation layer 1224 are both located within one support unit slot 1222, while the other first roof sound insulation layer 1223 and the other second roof sound insulation layer 1224 are both located within another support unit slot 1222.
[0054] Because the opening sides of the two groove walls of the support unit groove 1222 are bent towards the axis of the support unit groove 1222 to form a limiting plate 1227, when the first top plate sound insulation layer 1223 and the second top plate sound insulation layer 1224 are both located in the support unit groove 1222, the limiting plate 1227 can play a limiting role, thereby preventing the first top plate sound insulation layer 1223 and the second top plate sound insulation layer 1224 from detaching from the support unit groove 1222, thus making the structure of the first unit assembly 1221 more stable.
[0055] As an optional implementation, in some embodiments, see [link to relevant documentation]. Figure 1 , Figure 2 , Figure 3 and Figure 6 The housing 120 also includes a top plate frame 124, and a top plate assembly 122 is connected to the top plate frame 124 on the side opposite to the receiving cavity 130.
[0056] In this embodiment, the top plate frame 124 serves as the skeleton of the top of the housing 120, and the top plate assembly 122 is attached to the top plate frame 124. This enhances the overall strength of the housing 120, thereby better protecting the power generation device 110.
[0057] As an optional implementation, in some embodiments, see [link to relevant documentation]. Figure 1 , Figure 2 , Figure 3 and Figure 6 The top plate frame 124 includes a top plate frame 1241 and a support rib 1242; the support rib 1242 is disposed within the frame of the top plate frame 1241, and both ends of the support rib 1242 are connected to the inner side of the top plate frame 1241.
[0058] When the top plate assembly 122 is connected to the top plate frame 124, both ends of each first unit assembly 1221 in the top plate assembly 122 are connected to the top plate edge 1241, and the middle of each first unit assembly 1221 is connected to the support rib 1242. This increases the number of connection points of the first unit assembly 1221 on the top plate frame 124, thereby making the connection between the first unit assembly 1221 and the top plate frame 124 more secure.
[0059] As an optional implementation, in some embodiments, see [link to relevant documentation]. Figure 1 , Figure 2 , Figure 3 , Figure 7 and Figure 8 The second unit assembly 1231 includes a second unit support frame 1232, a second unit frame 1233, a second unit fixing plate assembly 1234, a second side plate sound insulation layer 1235, and a second reinforcing plate 1236 stacked in sequence. The second unit support frame 1232 is located on the side of the second unit assembly 1231 close to the receiving cavity 130, and the second reinforcing plate 1236 is located on the side of the second unit assembly 1231 away from the receiving cavity 130.
[0060] In this embodiment, the second side panel sound insulation layer 1235 can reduce the noise generated by the power generation device 110, thereby improving the sound insulation effect of the enclosure 120. The second reinforcing plate 1236 has high strength, thus enhancing the structural strength of the second unit assembly 1231, and consequently enhancing the structural strength of the enclosure 120. In addition, the second unit frame 1233 also enhances the structural strength of the second unit assembly 1231, thereby further enhancing the structural strength of the enclosure 120.
[0061] The second unit support frame 1232, the second unit frame 1233, the second unit fixing plate assembly 1234, the second side panel sound insulation layer 1235, and the second reinforcing plate 1236 are stacked sequentially. Thus, the second side panel sound insulation layer 1235 is sandwiched between the second unit fixing plate assembly 1234 and the second reinforcing plate 1236, thereby protecting the second side panel sound insulation layer 1235 and extending its service life.
[0062] Since the second unit support frame 1232 is located on the side of the second unit assembly 1231 near the receiving cavity 130, and the second reinforcing plate 1236 is located on the side of the second unit assembly 1231 away from the receiving cavity 130, the second reinforcing plate 1236 is disposed on the outer surface of the housing 120, thereby also improving the impact resistance of the housing 120.
[0063] As an optional implementation, in some embodiments, see [link to relevant documentation]. Figure 1 , Figure 2 , Figure 3 , Figure 7 and Figure 8 The second unit fixing plate assembly 1234 includes two second fixing plates 1237, which are spliced together along the plate surface direction of the second fixing plates 1237.
[0064] When the two second fixed plates 1237 are spliced together along the surface direction of the second fixed plates 1237, they can better limit the second side plate sound insulation layer 1235, thereby enhancing the structural stability of the second unit component 1231 and thus enhancing the structural stability of the enclosure 120.
[0065] As an optional implementation, in some embodiments, see [link to relevant documentation]. Figure 1 , Figure 2 , Figure 3 , Figure 7 , Figure 8 and Figure 9 The second reinforcing plate 1236 is a corrugated plate. Compared with the solution of setting the second reinforcing plate 1236 as a flat plate, the corrugated plate has greater bending stiffness and strength, thus increasing the strength of the second reinforcing plate 1236.
[0066] Alternatively, the second unit support frame 1232 may include an angle steel frame 1238. The angle steel frame 1238 is located on the side of the second unit assembly 1231 near the receiving cavity 130. Along the circumference of the angle steel frame 1238, a plurality of connecting holes 1239 are spaced apart. In this way, two adjacent second unit assemblies 1231 can be connected through the connecting holes 1239, which facilitates the sequential connection of multiple second unit assemblies 1231 to form a side panel assembly 123, thereby improving the production efficiency of the housing 120.
[0067] It should be noted that the terms "one embodiment," "embodiment," "exemplary embodiment," "some embodiments," etc., mentioned in the specification indicate that the described embodiment may include a specific feature, structure, or characteristic, but not every embodiment necessarily includes that specific feature, structure, or characteristic. Furthermore, such phrases do not necessarily refer to the same embodiment. Moreover, when a specific feature, structure, or characteristic is described in connection with an embodiment, implementing such a feature, structure, or characteristic in conjunction with other embodiments, whether explicitly described or not, is within the knowledge scope of those skilled in the art.
[0068] Generally speaking, terms should be understood at least in part by their use in context. For example, at least in part by context, the term "one or more" as used in the text can be used to describe any feature, structure, or characteristic of the singular meaning, or a combination of features, structures, or characteristics of the plural meaning. Similarly, at least in part by context, terms such as "a" or "the" can also be understood to convey either singular or plural usage.
[0069] It should be readily understood that the terms “on,” “above,” and “on top of” in this application should be interpreted in the broadest possible sense, such that “on” means not only “directly on something,” but also “on something” with an intermediate feature or layer therebetween, and that “above” or “on top of” means not only “above something” or “on top of something,” but also “on something” or “on top of something” without an intermediate feature or layer therebetween, i.e., directly on something.
[0070] Furthermore, for ease of explanation, spatially relative terms such as "below," "below," "under," "above," and "above" may be used to describe the relationship of one element or feature relative to other elements or features as shown in the figures. Spatially relative terms are intended to encompass different orientations of the device in use or operation other than those shown in the figures. The device may have other orientations rotated 90° or be in other orientations, and the spatially relative descriptive terms used herein may be interpreted accordingly.
[0071] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.
Claims
1. A generator set, characterized in that, include: Power generation equipment; The enclosure includes a limited number of enclosure unit components of a certain type, which are sequentially connected to form a receiving cavity, and the power generation device is located within the receiving cavity.
2. The generator set according to claim 1, characterized in that, There are two types of enclosure unit components: one is a first unit component, and the other is a second unit component. There are multiple first unit components and multiple second unit components. Multiple first unit components are connected sequentially to form a top plate component, and the multiple first unit components have the same size; Multiple second unit components are sequentially connected to form a side plate assembly. The multiple second unit components are of the same size. The top plate assembly and the side plate assembly are interconnected to form the receiving cavity.
3. The generator set according to claim 2, characterized in that, The first unit assembly includes a support unit groove, a first top plate sound insulation layer, a second top plate sound insulation layer, and a first reinforcing plate arranged in sequence. The support unit groove is located on the side of the first unit assembly closer to the receiving cavity, and the first reinforcing plate is located on the side of the first unit assembly away from the receiving cavity. The first top plate sound insulation layer and the second top plate sound insulation layer are both housed in the support unit groove.
4. The generator set according to claim 3, characterized in that, The first reinforcing plate is provided with multiple reinforcing grooves, the axes of the multiple reinforcing grooves are parallel, and the distance between the axes of any two adjacent reinforcing grooves is equal.
5. The generator set according to claim 3, characterized in that, The first unit assembly includes two support unit slots, which are spliced together along the surface direction of the first reinforcing plate. The two opening sides of the support unit groove are bent toward the axis of the support unit groove to form a limiting cantilever plate.
6. The generator set according to claim 2, characterized in that, The housing also includes a top plate frame, and the top plate assembly is connected to the side of the top plate frame opposite to the receiving cavity.
7. The generator set according to claim 6, characterized in that, The top plate frame includes a top plate edge and supporting ribs; the supporting ribs are disposed within the frame of the top plate edge, and both ends of the supporting ribs are connected to the inner side of the top plate edge.
8. The generator set according to claim 2, characterized in that, The second unit assembly includes a second unit support frame, a second unit frame, a second unit fixing plate assembly, a second side plate sound insulation layer, and a second reinforcing plate arranged in sequence. The second unit support frame is located on the side of the second unit assembly closer to the receiving cavity, and the second reinforcing plate is located on the side of the second unit assembly away from the receiving cavity.
9. The generator set according to claim 8, characterized in that, The second unit fixing plate assembly includes two second fixing plates, which are spliced together along the surface direction of the second fixing plates.
10. The generator set according to claim 8, characterized in that, The second reinforcing plate is a corrugated plate; And / or, the second unit support frame includes an angle steel frame, the angle steel frame being located on the side of the second unit assembly near the receiving cavity, and the angle steel frame having a plurality of connecting holes spaced apart along its circumference.