CN218065559U - Modularization evaporation cold water station - Google Patents
Modularization evaporation cold water station Download PDFInfo
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- CN218065559U CN218065559U CN202221644643.6U CN202221644643U CN218065559U CN 218065559 U CN218065559 U CN 218065559U CN 202221644643 U CN202221644643 U CN 202221644643U CN 218065559 U CN218065559 U CN 218065559U
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Abstract
The utility model discloses a modular evaporation cold water station, which comprises a bottom frame, wherein a gas circuit mechanism and/or a water circuit mechanism are arranged on the bottom frame; in the gas circuit mechanism, an automatic pipeline is sequentially provided with a gas inlet stop valve, a gas circuit impurity filter, an automatic pipeline pneumatic valve, a pressure reducing valve and a gas outlet stop valve; the automatic pipeline is also communicated with a drainage pipeline; two ends of the manual pipeline are respectively connected with the air source inlet and the air outlet, and the manual pipeline is provided with a manual pipeline stop valve; in the waterway mechanism, a main pipeline is sequentially provided with a water inlet stop valve, a waterway impurity filter, a centrifugal pump, a check valve and a water outlet stop valve; the water outlet pipe is also connected with an auxiliary pipeline for connecting a water source; the automatic pipeline pneumatic valve and the auxiliary pipeline pneumatic valve can be connected into the same compressed air pipeline. The utility model discloses a gas circuit mechanism and waterway mechanism adopt the modularization setting, and the debugging personnel no longer need remote walking when data such as on-the-spot monitoring pressure, flow, have saved more debug time.
Description
Technical Field
The utility model relates to a dry process dust removal field, especially a modularization evaporation cold water station.
Background
In the dry dedusting project, the evaporation cold water station is a common mechanism, the existing evaporation cold water station has dispersed component structures and installation positions, so that the packaging and transportation cost is high, and in the installation, debugging and use processes, workers need to frequently walk and evaporate among all parts of the cold water station, so that the workload is increased, more time needs to be consumed, and the implementation and application efficiency of the evaporation cold water station is reduced.
SUMMERY OF THE UTILITY MODEL
The utility model discloses to the problem that above-mentioned prior art exists, provide a modularization evaporation cold water station, its installation, transportation are convenient, have effectively reduced manpower work load, have improved the implementation application efficiency at evaporation cold water station.
The utility model discloses a modularization evaporation cold water station, include: the bottom frame is provided with a gas circuit mechanism and/or a water circuit mechanism; the gas circuit mechanism includes: the automatic pipeline is sequentially provided with an air inlet stop valve, an air path impurity filter, an automatic pipeline pneumatic valve, a pressure reducing valve and an air outlet stop valve; the automatic pipeline is also communicated with a drain pipeline for discharging condensed water in the automatic pipeline to the outside, and the drain pipeline is sequentially provided with a condensed water stop valve and a drain trap; two ends of the manual pipeline are respectively connected with the air source inlet and the air outlet, and the manual pipeline is provided with a manual pipeline stop valve; the air outlet is provided with an air passage pressure gauge;
the waterway mechanism comprises: the water inlet pipe, the water outlet pipe and the main pipeline are respectively connected to the two ends of the main pipeline, and the main pipeline is sequentially provided with a water inlet stop valve, a water channel impurity filter, a centrifugal pump, a check valve and a water outlet stop valve; the water outlet pipe is also connected with an auxiliary pipeline for connecting a water source, and the auxiliary pipeline is provided with an auxiliary pipeline stop valve and an auxiliary pipeline pneumatic valve; the water outlet pipe is provided with a water path pressure gauge;
the automatic pipeline pneumatic valve and the auxiliary pipeline pneumatic valve can be connected into the same compressed air pipeline.
Further, the underframe frame includes the channel-section steel frame of rectangle, is equipped with a plurality of along transversely and vertically setting up the groove billet in the channel-section steel frame, and gas circuit mechanism and/or waterway mechanism set up on the channel-section steel frame and the groove billet that correspond, wherein, co-fixing has the steel sheet on having adjacent vertical groove billet at least for bear the centrifugal pump.
Furthermore, a plurality of mounting holes and mounting support frames are arranged on the bottom frame, and the air path mechanism and/or the water path mechanism are mounted on the bottom frame through the corresponding mounting holes and the corresponding mounting support frames.
Furthermore, the automatic pipeline pneumatic valve is a pneumatic O-shaped switch ball valve, the gas circuit impurity filter is a Y-shaped filter, and the pressure reducing valve is a vertical pressure reducing valve.
Further, the gas outlet includes the outlet duct that sets up perpendicularly upwards, the gas circuit manometer set up on the outlet duct, the outlet duct still is equipped with orifice plate flowmeter, gas circuit pressure transmitter.
Furthermore, the water outlet pipe of the waterway mechanism is also provided with an electromagnetic flowmeter, a waterway pressure transmitter and a thermometer.
Furthermore, the waterway mechanism comprises a plurality of main pipelines, wherein the main pipelines which are mutually standby are arranged in parallel.
Furthermore, the waterway mechanism is provided with a soft connection device, and two ends of the centrifugal pump are respectively connected in the waterway mechanism through the soft connection device.
Furthermore, the waterway impurity filter is a Y-shaped filter, and the auxiliary pipeline pneumatic valve is a pneumatic V-shaped ball valve.
Furthermore, a heat preservation device is arranged outside the air circuit mechanism.
The utility model discloses following beneficial effect has at least:
the evaporation cold water station can be integrally transported during transportation, each part does not need to be packaged independently, packaging materials are not wasted, workload is reduced, and after the evaporation cold water station arrives at a site, the bottom frame only needs to be fixed, and more installation time is saved.
The utility model discloses an air circuit mechanism and waterway mechanism can install on the underframe frame alone or simultaneously, can decide mounting structure according to actual conditions. Meanwhile, as the two mechanisms are arranged in a modularized mode, when the debugging personnel monitor data such as pressure, flow and the like on site, the debugging personnel do not need to move remotely, and more debugging time is saved.
Other advantageous effects of the present invention will be described in detail in the detailed description of the preferred embodiments.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
Fig. 1 is the overall structure schematic diagram of the modular evaporation cold water station disclosed in the present invention.
Fig. 2 is a schematic perspective view of the gas circuit mechanism of the modular evaporation cold water station disclosed in the present invention.
Fig. 3 is a schematic plan structure diagram of a waterway mechanism of the modular evaporation cold water station disclosed by the utility model.
Fig. 4 is a schematic perspective view of a waterway mechanism of the modular evaporation cold water station disclosed by the utility model.
Fig. 5 is a schematic structural diagram of a bottom frame of the modular evaporation cold water station disclosed in the present invention.
The system comprises a base frame 1, a channel steel frame 101, a channel steel frame 102, a channel steel bar 103, a steel plate 2, a gas path mechanism 201, a gas source inlet 202, a gas inlet stop valve 203, a gas path impurity filter 204, an automatic pipeline pneumatic valve 205, a pressure reducing valve 206, a gas outlet stop valve, a condensate water stop valve 207, a steam trap 208, a gas outlet pipe 209, a 210-orifice plate flowmeter, a 211-gas path pressure transmitter 212, a gas path pressure gauge 213, a manual pipeline 214, a manual pipeline stop valve 3, a water path mechanism 301, a water inlet pipe 302, a water outlet pipe 303, a water inlet stop valve 304, a water path impurity filter 305, a centrifugal pump 306, a check valve 307, a water outlet stop valve 307, an auxiliary pipeline 308, an auxiliary pipeline stop valve 309, an auxiliary pipeline pneumatic valve 310, a flexible connecting device 311, a 312-thermometer 313, a water path pressure gauge 314, an electromagnetic flowmeter 315, a water path pressure transmitter 315.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention clearer, the technical solutions of the present invention will be described in detail below. It is to be understood that the embodiments described are only some embodiments of the invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative efforts belong to the protection scope of the present invention.
As shown in fig. 1 to 5, a modular evaporation cold water station includes: the device comprises a bottom frame 1, wherein a gas circuit mechanism 2 and/or a waterway mechanism 3 are/is arranged on the bottom frame 1; the gas circuit mechanism 2 includes: the automatic pipeline is sequentially provided with an air inlet stop valve 202, an air path impurity filter 203, an automatic pipeline pneumatic valve 204, a pressure reducing valve 205 and an air outlet stop valve 206; the automatic pipeline is also communicated with a drain pipeline for discharging the condensed water in the automatic pipeline to the outside, and the drain pipeline is sequentially provided with a condensed water stop valve 207 and a steam trap 208; two ends of the manual pipeline 213 are respectively connected with the air source inlet 201 and the air outlet, and the manual pipeline 213 is provided with a manual pipeline stop valve 214; the air outlet is provided with an air passage pressure gauge 212.
The waterway mechanism 3 includes: the water inlet pipe 301, the water outlet pipe 302 and the main pipeline, wherein the water inlet pipe 301 and the water outlet pipe 302 are respectively connected to two ends of the main pipeline, and the main pipeline is sequentially provided with a water inlet stop valve 303, a waterway impurity filter 304, a centrifugal pump 305, a check valve 306 and a water outlet stop valve 307; the water outlet pipe 302 is also connected with an auxiliary pipeline 308 for connecting a water source, and the auxiliary pipeline 308 is provided with an auxiliary pipeline stop valve 309 and an auxiliary pipeline pneumatic valve 310; the water outlet pipe 302 is provided with a waterway pressure gauge 313.
Both the automatic line pneumatic valve 204 and the auxiliary line pneumatic valve 310 can be connected to the same compressed air line. The utility model discloses in, two mechanisms in gas circuit, water route all have the pneumatic valve and install on a underframe frame 1, and is nearer apart from the distance, only need lay a compressed air pipeline for the pneumatic valve of two mechanisms of drive.
In some preferred embodiments of the present invention, the bottom frame 1 includes a rectangular channel steel frame 101, a plurality of channel steel bars 102 are disposed in the channel steel frame 101 along the transverse direction and the longitudinal direction, the air channel mechanism 2 and/or the water channel mechanism 3 are disposed on the corresponding channel steel frame 101 and channel steel bars 102, wherein at least, a steel plate 103 is fixed on the adjacent longitudinal channel steel bars 102 for carrying the centrifugal pump 305.
In some preferred embodiments of the present invention, a plurality of mounting holes and mounting supports are provided on the bottom frame 1, and the gas circuit mechanism 2 and/or the water circuit mechanism 3 are mounted on the bottom frame 1 through the corresponding mounting holes and mounting supports.
In some preferred embodiments of the present invention, the automatic pneumatic valve 204 is a pneumatic O-ring ball valve, the gas impurity filter 203 is a Y-ring filter, and the pressure reducing valve 205 is a vertical pressure reducing valve 205.
In some preferred embodiments of the utility model, the gas outlet is including erectting the outlet duct 209 that upwards sets up, gas circuit manometer 212 set up on outlet duct 209, outlet duct 209 still is equipped with orifice plate flowmeter 210, gas circuit pressure transmitter 211.
In some preferred embodiments of the present invention, the water outlet pipe 302 of the waterway mechanism 3 is further provided with an electromagnetic flowmeter 314, a waterway pressure transmitter 315 and a thermometer 312.
In some preferred embodiments of the present invention, the waterway mechanism 3 includes a plurality of main lines, wherein the main lines are disposed side by side and are mutually standby.
In some preferred embodiments of the present invention, the waterway mechanism 3 is provided with a flexible connection device 311, and both ends of the centrifugal pump 305 are respectively connected to the waterway mechanism 3 through the flexible connection device 311.
In some preferred embodiments of the present invention, the waterway impurity filter 304 is a Y-type filter and the auxiliary line pneumatic valve 310 is a pneumatic V-ball valve.
In some preferred embodiments of the present invention, a heat preservation device is disposed outside the air path mechanism 2.
In order to explain the technical scheme of the utility model in detail, the following embodiments are also disclosed:
the modularized evaporative cold water station mainly comprises an air path mechanism and a water path mechanism which are arranged on a bottom frame.
(1) The gas circuit system mainly comprises an automatic pipeline, a manual pipeline and a drainage pipeline.
Automatic pipeline: and the air source flows out through the air source inlet sequentially through the stop valve, the Y-shaped filter, the pneumatic O-shaped switch ball valve, the self-supporting reducing valve and the air outlet stop valve. The Y-shaped filter (gas circuit impurity filter) plays a role in filtering impurities in gas, and prevents the impurities from blocking a subsequent pneumatic O-shaped switch ball valve. The pneumatic O-shaped switch ball valve can receive remote opening and closing electric signals to change the opening and closing states. The self-standing pressure reducing valve is used for controlling the pressure of a higher air source within a certain range and then sending the higher air source out.
Manual pipeline: only one shut-off valve, i.e. a manual pipeline shut-off valve, is provided.
A drainage pipeline: the condensed water left by the gas circulation automatic pipeline is discharged to the external connecting pipeline through the stop valve (condensed water stop valve) and the steam trap.
When the automatic pipeline is used for passing gas, the automatic pipeline gas inlet stop valve and the automatic pipeline gas outlet stop valve are opened, the manual pipeline stop valve is closed, and whether the gas is sent out is controlled by opening and closing signals of the pneumatic O-shaped switch ball valve through the central control chamber; when the manual pipeline is used for passing gas, the gas inlet stop valve and the gas outlet stop valve of the automatic pipeline are closed, the manual pipeline stop valve is opened, and the gas is sent out all the time. The orifice plate flowmeter can transmit gas flow data to the central control chamber, the gas circuit pressure transmitter can transmit gas pressure data to the central control chamber, and field personnel can monitor the gas pressure data beside equipment through the gas circuit pressure gauge.
The whole heat preservation of doing of gas circuit structure, the heat preservation adopts rock wool, and thickness is 50mm.
(2) The waterway system mainly comprises a water inlet pipe, a water outlet pipe, a main pipeline and an auxiliary pipeline.
A main pipeline: the main pipeline is two pipelines which are the same and are mutually standby. The water source flows out through the water inlet stop valve, the Y-shaped filter (water channel impurity filter), the soft connecting device, the centrifugal pump, the soft connecting device, the check valve and the water outlet stop valve. The Y-shaped filter plays a role in filtering impurities in water, and prevents the impurities from blocking a subsequent centrifugal pump. The flexible connection plays a role in noise reduction when the centrifugal pump operates. The check valve plays a role in preventing water from flowing backwards when the centrifugal pump stops. The electromagnetic flowmeter that the outlet pipe set up can be with discharge data transmission to central control room, and water route pressure transmitter can be with water pressure data transmission to central control room, and field personnel accessible water route manometer monitors water pressure data beside equipment.
Auxiliary pipelines: and water flows back to a water source from a water outlet of the main pipeline through the auxiliary pipeline stop valve and the pneumatic V-shaped ball valve.
When the centrifugal pump is used, the water inlet and the water outlet of the two main pipelines are all opened, and different running frequency signals are given to the centrifugal pump through the central control room, so that different water yields are realized.
When the auxiliary pipeline is used, the auxiliary pipeline stop valve is opened, and the central control chamber is used for giving opening and closing signals to the pneumatic V-shaped ball valve to control whether water is returned to a water source or not.
The gas circuit system and the water circuit system are both installed on the bottom frame, and the bottom frame is provided with accurate installation positions such as installation holes and installation support frames required by components of the two systems, so that the gas circuit system and the water circuit system are attractive, practical and convenient to transport.
The above description is only for the specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art can easily think of the changes or substitutions within the technical scope of the present invention, and all should be covered within the protection scope of the present invention.
Claims (10)
1. A modular evaporative cold water station, comprising: the bottom frame is provided with a gas circuit mechanism and/or a water circuit mechanism; the gas circuit mechanism includes: the automatic pipeline is sequentially provided with an air inlet stop valve, an air circuit impurity filter, an automatic pipeline pneumatic valve, a pressure reducing valve and an air outlet stop valve; the automatic pipeline is also communicated with a drain pipeline for discharging condensed water in the automatic pipeline to the outside, and the drain pipeline is sequentially provided with a condensed water stop valve and a drain trap; two ends of the manual pipeline are respectively connected with the air source inlet and the air outlet, and the manual pipeline is provided with a manual pipeline stop valve; the air outlet is provided with an air passage pressure gauge;
the waterway mechanism comprises: the water inlet pipe, the water outlet pipe and the main pipeline are respectively connected to the two ends of the main pipeline, and the main pipeline is sequentially provided with a water inlet stop valve, a water channel impurity filter, a centrifugal pump, a check valve and a water outlet stop valve; the water outlet pipe is also connected with an auxiliary pipeline for connecting a water source, and the auxiliary pipeline is provided with an auxiliary pipeline stop valve and an auxiliary pipeline pneumatic valve; the water outlet pipe is provided with a water path pressure gauge;
the automatic pipeline pneumatic valve and the auxiliary pipeline pneumatic valve can be connected into the same compressed air pipeline.
2. The modular evaporation cold water station as claimed in claim 1, wherein the bottom frame comprises a rectangular channel steel frame, a plurality of channel steel bars are arranged in the channel steel frame in the transverse and longitudinal directions, the air path mechanism and/or the water path mechanism are arranged on the corresponding channel steel frame and the channel steel bars, wherein at least two steel plates are fixed on the adjacent longitudinal channel steel bars together for bearing the centrifugal pump.
3. The modular evaporative cold water station as claimed in claim 2, wherein the bottom frame is provided with a plurality of mounting holes and mounting supports, and the air channel mechanism and/or the water channel mechanism are mounted on the bottom frame through the corresponding mounting holes and mounting supports.
4. The modular evaporation cold water station of claim 1, wherein the automatic pipeline pneumatic valve is a pneumatic O-switch ball valve, the gas path impurity filter is a Y-filter, and the pressure reducing valve is a vertical pressure reducing valve.
5. The modular evaporation cold water station as claimed in claim 1, wherein the air outlet comprises an air outlet pipe vertically arranged upwards, the air path pressure gauge is arranged on the air outlet pipe, and the air outlet pipe is further provided with a pore plate flowmeter and an air path pressure transmitter.
6. The modular evaporation cold water station as claimed in claim 1, wherein the water outlet pipe of the waterway mechanism is further provided with an electromagnetic flow meter, a waterway pressure transmitter and a thermometer.
7. The modular evaporation cold water station of claim 1, wherein the waterway mechanism comprises a plurality of main pipelines, wherein the main pipelines which are mutually spare are arranged in parallel.
8. The modular evaporation cold water station as claimed in claim 1, wherein the waterway mechanism is provided with a soft connection device, and two ends of the centrifugal pump are respectively connected in the waterway mechanism through the soft connection device.
9. The modular evaporative cold water station of claim 1, wherein the waterway impurity filter is a Y-type filter and the auxiliary pipeline pneumatic valve is a pneumatic V-ball valve.
10. The modular evaporation cold water station as claimed in claim 1, wherein a thermal insulation device is provided outside the air path mechanism.
Priority Applications (1)
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CN202221644643.6U CN218065559U (en) | 2022-06-29 | 2022-06-29 | Modularization evaporation cold water station |
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CN202221644643.6U CN218065559U (en) | 2022-06-29 | 2022-06-29 | Modularization evaporation cold water station |
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CN218065559U true CN218065559U (en) | 2022-12-16 |
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CN202221644643.6U Active CN218065559U (en) | 2022-06-29 | 2022-06-29 | Modularization evaporation cold water station |
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