CN210597618U - Movable integral type earthquake monitoring station assembling structure - Google Patents

Movable integral type earthquake monitoring station assembling structure Download PDF

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Publication number
CN210597618U
CN210597618U CN201920926343.9U CN201920926343U CN210597618U CN 210597618 U CN210597618 U CN 210597618U CN 201920926343 U CN201920926343 U CN 201920926343U CN 210597618 U CN210597618 U CN 210597618U
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China
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monitoring station
wall body
reinforced concrete
bottom plate
hole
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CN201920926343.9U
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Chinese (zh)
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马建国
许宗国
董建梅
唐亚军
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Xinjiang Seven Star Construction Co ltd
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Xinjiang Seven Star Construction Co ltd
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Abstract

The utility model discloses a movable integral earthquake monitoring station assembly structure, which comprises four walls, a top plate and a bottom plate, wherein the walls are of a sandwich heat-preservation reinforced concrete structure; the sandwich heat-insulation reinforced concrete wall body comprises reinforced concrete on the inner side and the outer side and a heat-insulation plate layer in the middle, wherein the reinforced concrete adopts a disposable formwork and poured concrete, and is provided with reinforcing steel bars which are bound in place at one time; the top plate, the wall body and the bottom plate are all formed by one-time pouring; the utility model has the advantages that: the performance of earthquake monitoring is improved, the internal space of the base station is utilized, the industrial production is realized, and the overall quality and quality of the monitoring station are ensured.

Description

Movable integral type earthquake monitoring station assembling structure
Technical Field
The invention relates to an earthquake monitoring station, in particular to a movable integral type earthquake monitoring station assembling structure, and belongs to the field of earthquake monitoring stations.
Background
In order to further enhance the construction of earthquake monitoring capability, major projects such as national earthquake intensity rapid report and early warning project are scientifically implemented, earthquake monitoring blind areas are gradually eliminated, group measurement and group defense work is performed firmly, the national earthquake intensity rapid report and early warning project is responded, and powerful guarantee is provided for earthquake prevention and disaster reduction, emergency command, rapid rescue and the like. The earthquake disaster risk is practically reduced, and the life and property safety of people is guaranteed. The earthquake monitoring and earthquake condition studying and judging device continues to strengthen earthquake monitoring and earthquake condition studying and judging, is small and small in places and difficult to construct environments and the like in important earthquake areas and areas, can cause pollution problems to the environment, is high in mobility, flexible and convenient to hoist, firm and reliable, impact-resistant and vibration-resistant, complete in function, good in rainproof performance, dustproof performance, heat insulation performance and heat preservation performance, and can normally work in severe environments. It is desirable to provide a mobile integrated seismic monitoring station assembly.
Traditional earthquake monitoring station (usable floor area is less than or equal to 4.5 square meters), the wall material used basically is that "add in the middle of the various steel sheet of outside both sides and establish one deck insulation material" or brick masonry structure, and each item function of monitoring earthquake is imperfect, and this kind of structural system can only reach the convenient requirement of installation, has more weak point in the use: (1) the earthquake monitoring performance is not perfect (2) moving and hoisting can not be carried out, and (3) the heat preservation and insulation performance is poor; (4) the durability of the whole building is poor; (5) the lightning protection and safety performance is poor; (6) the fireproof performance is low; (7) the structural integrity is poor; (8) the waterproof property is not good. Accordingly, there is a need for improvements to existing seismic monitoring stations.
Disclosure of Invention
In order to solve the problems, the invention designs a movable integral type earthquake monitoring station assembling structure, which improves various performances of earthquake monitoring, enables the internal space of a base station to be utilized, realizes industrial production and ensures the overall quality and quality of the monitoring station.
The technical scheme of the invention is as follows:
a movable integral type earthquake monitoring station assembling structure comprises four walls, a top plate and a bottom plate, wherein the walls are of a sandwich heat-preservation reinforced concrete structure; the sandwich heat-insulation reinforced concrete wall body comprises reinforced concrete on the inner side and the outer side and a heat-insulation plate layer in the middle, wherein the reinforced concrete adopts a disposable formwork and poured concrete, and is provided with reinforcing steel bars which are bound in place at one time; the top plate, the wall body and the bottom plate are formed by one-time pouring, and are convenient to transport, convenient and fast to install and free to decorate.
Furthermore, the bottom plate is provided with an instrument pier for placing instrument equipment; the instrumentation pier may employ a cast-in-place or prefabricated foundation.
Furthermore, the wall body is provided with a ventilation opening, an indoor grounding flat iron leading-out hole, a reserved alternating current inlet wire hole, a camera, a GPS antenna threading hole and an optical cable solar access hole; the GPS antenna and the camera penetrate through the camera and the GPS antenna threading hole through the pre-buried galvanized circular tube.
Furthermore, concave-convex splicing structures are respectively arranged between the adjacent wall bodies, between the wall body and the top plate and between the wall body and the bottom plate, so that the splicing of the device is facilitated, and the structural firmness is improved.
The connecting rib is arranged on the concave portion of the inserting structure and penetrates through the reinforced concrete structure, the connecting hole corresponding to the connecting rib is arranged on the convex portion of the inserting structure, a fixing plate is arranged on the outer side of the connecting hole, and the connecting rib penetrates through the connecting hole and the fixing plate to be in threaded connection with a nut or is welded with the fixing plate, so that the stability of the structure is further improved.
The top plate is provided with a lamp for lighting; the wall body is provided with a power socket, the height of the power socket is 300mm, and the connection requirement of 'left zero right fire' is adopted; the bottom of the distribution box is 1.4 meters away from the bottom plate, and the switch is 1.4 meters away from the bottom plate; the alternating current power lines from the distribution box to the common socket and the lighting switch and from the lighting switch to the lighting lamp are pre-distributed through a 30mm PVC groove (flame retardant).
The signal lines and the power lines on the cabling rack are separately arranged, and the distance between the signal lines and the power lines is 10-15 cm; the cables are bound on the first cross bar of the cabling rack or are fastened and fixed by nylon locking buckles; the cable turns uniformly, and the bending radius of the cable is more than or equal to 60 mm; the two ends of the cable are provided with definite marks.
The cabling rack is a single-layer cabling rack, and the signal cables and the power cables are not crossed in cabling. The two types of cables are bound on two sides of the cabling rack respectively. The cables are all bound by wax wires.
The invention has the beneficial effects that: the performance of earthquake monitoring is improved, the internal space of the base station is utilized, the industrial production is realized, and the overall quality and quality of the monitoring station are ensured.
The invention is further illustrated by the following figures and examples.
Drawings
FIG. 1 is a schematic overall structure diagram of an embodiment of the present invention;
fig. 2 is a schematic structural diagram of a plug structure according to an embodiment of the present invention.
Detailed Description
The following description of the preferred embodiments of the present invention is provided for the purpose of illustration and description, and is in no way intended to limit the invention.
Example 1
As shown in fig. 1, the movable integrated earthquake monitoring station assembly structure comprises four walls 1, a top plate 2 and a bottom plate 3, wherein the wall 1 is of a sandwich heat-preservation reinforced concrete structure; the sandwich heat-insulation reinforced concrete wall body comprises reinforced concrete on the inner side and the outer side and a heat-insulation plate layer in the middle, wherein the reinforced concrete adopts a disposable formwork and poured concrete, and is provided with reinforcing steel bars which are bound in place at one time; the top plate, the wall body and the bottom plate are formed by one-time pouring, and are convenient to transport, convenient and fast to install and free to decorate.
The bottom plate 3 is provided with an instrument pier for placing instrument equipment; the instrumentation pier 3 may be a cast-in-place or prefabricated foundation.
The wall body 1 is provided with a ventilation opening 11, an indoor grounding flat iron leading-out hole 12, a reserved alternating current inlet wire hole 13, a camera and GPS antenna threading hole 14 and an optical cable solar access hole; the GPS antenna and the camera 16 penetrate through the camera and the GPS antenna threading hole 14 through the pre-buried galvanized circular tube 15.
As shown in fig. 2, concave-convex insertion structures are respectively arranged between the adjacent walls, between the wall and the top plate, and between the wall and the bottom plate, so that the splicing of the device is facilitated, and the structural firmness is improved.
The concave part of the plug-in structure is provided with a connecting rib 22 penetrating through the reinforced concrete structure, the convex part 23 of the plug-in structure is provided with a connecting hole 24 corresponding to the connecting rib, the outer side of the connecting hole 24 is provided with a fixing plate 25, and the connecting rib 22 penetrates through the connecting hole 24 and the fixing plate 25 to be connected with a nut screw 26 in a threaded manner or is welded with the fixing plate, so that the stability of the structure is further improved.
The top plate is provided with a lamp for lighting; the wall body is provided with a power socket, the height of the power socket is 300mm, and the connection requirement of 'left zero right fire' is adopted; the bottom of the distribution box is 1.4 meters away from the bottom plate, and the switch is 1.4 meters away from the bottom plate; the alternating current power lines from the distribution box to the common socket and the lighting switch and from the lighting switch to the lighting lamp are pre-distributed through a 30mm PVC groove (flame retardant).
The signal lines and the power lines on the cabling rack are separately arranged, and the distance between the signal lines and the power lines is 10-15 cm; the cables are bound on the first cross bar of the cabling rack or are fastened and fixed by nylon locking buckles; the cable turns uniformly, and the bending radius of the cable is more than or equal to 60 mm; the two ends of the cable are provided with definite marks.
The cabling rack is a single-layer cabling rack, and the signal cables and the power cables are not crossed in cabling. The two types of cables are bound on two sides of the cabling rack respectively. The cables are all bound by wax wires.

Claims (6)

1. The utility model provides a portable integral seismic monitoring station package assembly which characterized in that: the wall body is of a sandwich heat-preservation reinforced concrete structure; the sandwich heat-insulation reinforced concrete wall body comprises reinforced concrete on the inner side and the outer side and a heat-insulation plate layer in the middle, wherein the reinforced concrete adopts a disposable formwork and poured concrete, and is provided with reinforcing steel bars which are bound in place at one time; the top plate, the wall body and the bottom plate are all formed by one-time pouring.
2. The mobile integrated seismic monitoring station assembly structure of claim 1, wherein: the bottom plate is provided with an instrument pier for placing instrument equipment; the instrument pier adopts a cast-in-place or prefabricated foundation.
3. The mobile integrated seismic monitoring station assembly structure of claim 1, wherein: the wall body is provided with a ventilation opening, an indoor grounding flat iron leading-out hole, a reserved alternating current inlet wire hole, a camera, a GPS antenna threading hole and an optical cable solar access hole; the GPS antenna and the camera penetrate through the camera and the GPS antenna threading hole through the pre-buried galvanized circular tube.
4. The mobile integrated seismic monitoring station assembly structure of claim 1, wherein: concave-convex inserting structures are respectively arranged between the adjacent wall bodies, between the wall body and the top plate and between the wall body and the bottom plate.
5. The mobile integrated seismic monitoring station assembly structure of claim 4, wherein: the connecting structure is characterized in that a connecting rib penetrating through a reinforced concrete structure is arranged in the concave part of the inserting structure, a connecting hole corresponding to the connecting rib is arranged in the convex part of the inserting structure, a fixing plate is arranged on the outer side of the connecting hole, and the connecting rib penetrates through the connecting hole and the fixing plate to be in threaded connection with a nut or is welded with the fixing plate.
6. The mobile integrated seismic monitoring station assembly structure of claim 1, wherein: the top plate is provided with a lamp for lighting; the wall body is provided with a power socket, the height of the power socket is 300mm, and a connection mode of 'left fire, zero fire and right fire' is adopted; the distance between the bottom of the distribution box and the bottom plate is 1.4 meters, and the distance between the switch and the bottom plate is 1.4 meters; the distribution box is connected with a common socket and a lighting switch, and an alternating current power line from the lighting switch to a lighting lamp is arranged through a 30mm PVC groove.
CN201920926343.9U 2019-06-19 2019-06-19 Movable integral type earthquake monitoring station assembling structure Active CN210597618U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920926343.9U CN210597618U (en) 2019-06-19 2019-06-19 Movable integral type earthquake monitoring station assembling structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920926343.9U CN210597618U (en) 2019-06-19 2019-06-19 Movable integral type earthquake monitoring station assembling structure

Publications (1)

Publication Number Publication Date
CN210597618U true CN210597618U (en) 2020-05-22

Family

ID=70688848

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920926343.9U Active CN210597618U (en) 2019-06-19 2019-06-19 Movable integral type earthquake monitoring station assembling structure

Country Status (1)

Country Link
CN (1) CN210597618U (en)

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