Office-integrated container type pump room and installation method
Technical Field
The invention belongs to the technical field of integrated pump stations, and particularly relates to an office-integrated container type pump house and an installation method.
Background
The existing agricultural irrigation pump house is mostly of a brick-concrete structure, can be built after approval of relevant departments is passed before construction, needs a professional building construction team to carry out construction on site in the construction process, is small in building size of the pump house, poor in condition near a farmland in construction, relatively high in construction unit price, long in construction period, and capable of being changed in later-stage land planning, and the pump house cannot be moved and can only be discarded to cause loss.
Disclosure of Invention
The invention aims to provide an office-integrated container type pump house and an installation method thereof, the pump house does not need complex building construction, has office and irrigation dual functions, realizes automatic control and mobility, and can be conveniently moved to the next required place for cyclic utilization after land planning and changing.
The invention provides the following technical scheme: an office-integrated container type pump house comprises a container body, wherein the container body is formed by combining a pump house area and an office area, a distribution box and an irrigation unit connected with the distribution box are arranged in the pump house area, and a control terminal interactively connected with the irrigation unit is arranged in the office area;
the irrigation unit is formed by combining a water pump, a filtering device and a fertilizing device;
be equipped with control system in the control terminal, control system includes:
the electric control module is used for electrically controlling equipment in the pump room;
the process automation measurement and control module is used for automatically detecting parameters of each device in irrigation and automatically adjusting according to the set parameters;
the metering module is used for counting the water flow and quantity of irrigation water, the water level of the water storage tank and the water level of the sewage tank in real time;
the intelligent electric protection module is used for intelligently protecting electric equipment in the pump room;
and the video process monitoring module is used for monitoring real-time pictures of the pump room and the irrigation area in real time.
Further, the container body includes bottom plate, curb plate, roof, be equipped with a plurality of external screw thread posts on bottom plate and the corresponding one side circumference of roof, the both ends of curb plate are equipped with the through-hole along the position that length direction corresponds the external screw thread post, the position that one side of curb plate corresponds the through-hole is equipped with the mounting groove, the top of external screw thread post is located the mounting groove to the installation mounting.
Furthermore, the fixing piece comprises a shaft sleeve and a nut, the shaft sleeve is movably connected with the nut through a rotary buckling part, one side of the shaft sleeve is connected with a handle in a rotating mode through a pin boss, and one end, close to the pin boss, of the handle is provided with a supporting block with a tip structure.
Further, the container body is located pump house district and office area and is equipped with first door and second door respectively.
Furthermore, a plurality of glass windows are arranged on the circumferential direction of the container body.
Furthermore, the bottom plate, the side plates and the top plate are integrated plates made of environment-friendly materials.
The invention also provides an installation method of the office-integrated container type pump room, which comprises the following specific steps:
step 1, selecting a building position, leveling, compacting and hardening the ground, and transporting a bottom plate, a side plate, a top plate, a distribution box, an irrigation unit and a control terminal which are processed in a factory to a construction site;
step 2, laying a bottom plate, installing a distribution box, an irrigation unit and a control terminal on the bottom plate corresponding to the areas of the pump room area and the office area, and debugging;
and 3, mounting the side plates and the top plate in a splicing combination mode, and locking and fixing the side plates and the top plate through fixing pieces.
The invention has the beneficial effects that:
the intelligent pump station is simple in structure, easy to operate and install, compact in structure and small in size, and integrates a pump room, a water pump motor and electrical information equipment into a whole.
Secondly, the construction of the pump room is not a complicated civil engineering and equipment installation project, but a process of combining and assembling a set of equipment on site. The engineering floor area is greatly reduced, the construction cost and the construction difficulty of the pump house are reduced, and the construction period is obviously shortened.
The invention can realize the integration of modern electric control, process automation measurement and control, metering, intelligent electric protection, video process monitoring and other technologies with the pump unit in the pump room office area, so that the pump unit becomes movable and combinable intelligent irrigation and drainage equipment. And after the land planning is changed, the pump house can be conveniently moved to the next required place for recycling.
Drawings
The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the principles of the invention and not to limit the invention. In the drawings:
FIG. 1 is a schematic view of the internal structure of the present invention;
FIG. 2 is a front view of the present invention;
FIG. 3 is a left side view of the present invention;
FIG. 4 is a right side view of the present invention;
FIG. 5 is a partial schematic view of the fastener portion of the present invention;
FIG. 6 is a schematic view of the internal structure of the fixing member according to the present invention;
labeled as: container body 1, pump house district 11, block terminal 110, irrigation unit 111, office area 12, control terminal 120, first door 13, second door 14, bottom plate 15, curb plate 16, roof 17, glass window 18, mounting 19, mounting groove 20, external screw thread post 21, axle sleeve 22, nut 23, rotatory buckle portion 24, handle 25, key seat 26, brace 27, through-hole 28.
Detailed Description
The invention will be further illustrated with reference to the following specific examples. These examples are intended to illustrate the invention and are not intended to limit the scope of the invention. In the description of the present invention, it is to be noted that, unless otherwise explicitly specified or limited, the terms "mounted", "provided" and "connected" are to be interpreted broadly, e.g. as a fixed connection, a detachable connection or an integral connection; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.
The structural features of the present invention will now be described in detail with reference to the accompanying drawings.
Referring to fig. 1, an office-integrated container type pump house comprises a container body 1, wherein the container body 1 is formed by combining a pump house area 11 and an office area 12, a distribution box 110 and an irrigation unit 111 connected with the distribution box 110 are arranged in the pump house area 11, and a control terminal 120 interactively connected with the irrigation unit 111 in an information manner is arranged in the office area 12; the control terminal 120 controls the irrigation unit 111 to realize automatic control, and the pump house has the office and irrigation dual functions.
Referring to fig. 1, the irrigation unit 111 is composed of a water pump, a filtering device, and a fertilizing device.
A control system is arranged in the control terminal 120, and the control system includes: the electric control module is used for electrically controlling equipment in the pump room; the process automation measurement and control module is used for automatically detecting parameters of each device in irrigation and automatically adjusting according to the set parameters; the metering module is used for counting the water flow and quantity of irrigation water, the water level of the water storage tank and the water level of the sewage tank in real time; the intelligent electric protection module is used for intelligently protecting electric equipment in the pump room; and the video process monitoring module is used for monitoring real-time pictures of the pump room and the irrigation area in real time.
Referring to fig. 1-6, the container body 1 includes a bottom plate 15, a side plate 16, and a top plate 17, wherein a plurality of external thread posts 21 are circumferentially disposed on one side of the bottom plate 15 corresponding to the top plate 17, through holes 28 are disposed at positions of two ends of the side plate 16 corresponding to the external thread posts 21 along a length direction, an installation groove 20 is disposed at a position of one side of the side plate 16 corresponding to the through holes 28, and a top of the external thread posts 21 is located in the installation groove 20 and is provided with a fixing member 19. The fixing member 19 includes a shaft sleeve 22 and a nut 23, the shaft sleeve 22 is movably connected with the nut 23 through a rotary fastening portion 24, one side of the shaft sleeve 22 is rotatably connected with a handle 25 through a pin seat 26, and one end of the handle 25 close to the pin seat 26 is provided with a supporting block 27 with a tip structure. The container body 1 is provided with a first door 13 and a second door 14 in the pump room area 11 and the office area 12, respectively. A plurality of glass windows 18 are provided in the circumferential direction of the container body 1. The bottom plate 15, the side plate 16 and the top plate 17 are made of environment-friendly integrated plates.
All parts of the integrated container type pump house are designed into standard parts, and after being processed in a factory, the standard parts are transported to a site and mostly assembled on the site. The construction of the pump room is not a complicated civil engineering and equipment installation project, but a process of assembling a set of equipment on site. The engineering floor area is greatly reduced, the construction cost and the construction difficulty of the pump station are reduced, and the construction period is obviously shortened. Different from the traditional old pump station, the movable type pump station not only can be moved and disassembled and can be assembled and installed on site, but also can be configured with the strongest brain according to the needs of users, is intelligently operated and autonomously monitored, realizes accurate irrigation and avoids water resource waste caused by flood irrigation. From the perspective of improving the supervision level of the irrigation pump station, the irrigation pump station is built into a comprehensive facility by using technical means such as an automatic instrument, communication, a network, software and the like.
The office-integrated container type pump room is simple in structure and easy to operate and install, and the novel intelligent pump station integrating the pump room, the water pump motor and the electrical information equipment is compact in structure and small in size due to the adoption of an integrated structure. The construction of the pump room is not a complicated civil engineering and equipment installation project, but a process of assembling a set of equipment on site. The engineering floor area is greatly reduced, the construction cost and the construction difficulty of the pump house are reduced, and the construction period is obviously shortened. The pump unit can be integrated with modern electric control, process automation measurement and control, metering, intelligent electric protection, video process monitoring and other technologies in a pump room office area, so that the pump unit becomes movable and combinable intelligent irrigation and drainage equipment.
For further explanation, the invention also provides an installation method of the office-integrated container type pump room, which comprises the following specific steps:
step 1, selecting a building position, leveling, compacting and hardening the ground, and transporting a bottom plate 15, a side plate 16, a top plate 17, a distribution box 110, an irrigation unit 111 and a control terminal 120 which are processed in a factory to a construction site;
step 2, laying a bottom plate 15, installing a distribution box 110, an irrigation unit 111 and a control terminal 120 on the bottom plate 15 corresponding to the areas of the pump room area 11 and the office area 12, and debugging;
and 3, mounting the side plates and the top plate 17 in a splicing combination mode, and locking and fixing the side plates and the top plate through a fixing piece 19.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that changes may be made in the embodiments and/or equivalents thereof without departing from the spirit and scope of the invention. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.