CN211191167U - Membrane structure with spraying device - Google Patents

Membrane structure with spraying device Download PDF

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Publication number
CN211191167U
CN211191167U CN201921970856.6U CN201921970856U CN211191167U CN 211191167 U CN211191167 U CN 211191167U CN 201921970856 U CN201921970856 U CN 201921970856U CN 211191167 U CN211191167 U CN 211191167U
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water
falling hopper
membrane
membrane body
spray
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CN201921970856.6U
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Chinese (zh)
Inventor
张委
凌兵兵
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Ningbo Marriott Space Structure Engineering Co ltd
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Ningbo Marriott Space Structure Engineering Co ltd
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Abstract

The utility model provides a membrane structure with spray set belongs to membrane structure building technical field, include: the water-saving device comprises a support column, a water falling hopper, a mounting seat, a membrane body and a spray pipe, wherein the water falling hopper is arranged on the support column, the water falling hopper is provided with a drain pipe, the mounting seat is arranged in the water falling hopper and connected with the support column, the membrane body is connected with the mounting seat, the spray pipe is arranged on the water falling hopper in a penetrating mode, the end portion of the spray pipe is used for spraying water towards the membrane body, and the water falling hopper is used for collecting water flowing upwards and downwards from the membrane body and is discharged through the drain pipe. The utility model has the advantages that: the membrane body can be cleaned by spraying water through the spraying pipe, and the cleaned sewage can be collected into the water falling hopper and discharged through the drain pipe.

Description

Membrane structure with spraying device
Technical Field
The utility model belongs to the technical field of the membrane structure building, a membrane structure with spray set is related to.
Background
The membrane structure is a novel building structure, generally is applied to building structure, for example stretch-draw membrane, net membrane, membrane structure such as inflatable membrane, and it can play pleasing to the eye, keep off rain, effects such as sunshade to for traditional roof structure, membrane body structure quality is light, and intensity is high, and the security is high, and anti-seismic performance is good. Along with the rapid development of social economy, the urbanization construction of China is faster and faster, the number of the existing urban parks and urban squares is also more and more, and in summer, the urban parks and the urban squares are exposed to the sun, so that a facility for providing cool for people is needed.
Therefore, at present, in a square, the membrane is stretched by the upright posts to form the sunshade structure, however, once the membrane material of the membrane structure is used in a region with less rainwater or poor environment, the membrane structure is difficult to clean if the surface is dirty, and the membrane structure is usually positioned at a high place and is difficult to climb up for cleaning manually, so that the sunshade structure has a certain improvement space.
SUMMERY OF THE UTILITY MODEL
The utility model aims at the above-mentioned problem that prior art exists, provide a membrane structure with spray set.
The purpose of the utility model can be realized by the following technical proposal: a membrane structure having a spray device, comprising: the water-saving device comprises a support column, a water falling hopper, a mounting seat, a membrane body and a spray pipe, wherein the water falling hopper is arranged on the support column, the water falling hopper is provided with a drain pipe, the mounting seat is arranged in the water falling hopper and connected with the support column, the membrane body is connected with the mounting seat, the spray pipe is arranged on the water falling hopper in a penetrating mode, the end portion of the spray pipe is used for spraying water towards the membrane body, and the water falling hopper is used for collecting water flowing upwards and downwards from the membrane body and is discharged through the drain pipe.
Preferably, the membrane structure further comprises a filtering tank and a sedimentation tank, the drain pipe is connected with the filtering tank, the filtering tank is connected with the sedimentation tank, and the drain pipe is used for guiding the water in the water falling hopper into the filtering tank and recycling the water to the sedimentation tank.
Preferably, the membrane structure further comprises a boiler and a water pump, the boiler is connected with the sedimentation tank, the water pump is connected with the boiler, the spray pipe is connected with the water pump, the boiler is used for heating the water recovered by the sedimentation tank, and the water pump is used for pumping the hot water provided by the boiler into the spray pipe so as to enable the spray pipe to spray the hot water to the membrane body.
Preferably, the number of the spray pipes is multiple and the spray pipes are arranged around the support column.
Preferably, a rotary spray head is arranged at the end part of the spray pipe, water is sprayed to the membrane body from the rotary spray head through the spray pipe, and the sprayed water flows into the water falling hopper from the membrane body.
Preferably, the inner wall of the water falling hopper is provided with a plurality of rib plates which are arranged in a surrounding manner, the mounting seat comprises an annular base, a mounting ring and a plurality of connecting pipes, the annular base is connected with the rib plates, each connecting pipe is arranged on the supporting column in a surrounding manner, one end of each connecting pipe is connected with the supporting column, the other end of each connecting pipe is connected with the annular base, the mounting ring is connected with the annular base, and the membrane body is connected with the mounting ring.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the membrane body can be cleaned by spraying water through the spraying pipe, and the cleaned sewage can be collected into the water falling hopper and discharged through the drain pipe.
2. The filtering tank and the sedimentation tank can collect and store the cleaned sewage or the melted snow water and supply the sewage or the melted snow water to the boiler, the boiler can heat the recycled water to obtain hot water, the hot water enters the spray pipe through the water pump and then is sprayed on the membrane body again, so that the water resource can be reused, and the purposes of saving and protecting the environment are realized on the premise of continuously providing hot water.
Drawings
Fig. 1 is a schematic view of the membrane structure with a spraying device according to the present invention.
Fig. 2 is a schematic structural diagram of the connection seat of the present invention.
Fig. 3 is a schematic structural view of the drain funnel of the present invention.
Fig. 4 is a schematic view of the connection relationship between the filtering tank, the sedimentation tank, the boiler, the water pump, the spray pipe and the drain pipe of the present invention.
In the figure, 100, support columns; 200. a water falling hopper; 210. a drain pipe; 220. a rib plate; 230. an annular base; 240. a mounting ring; 250. a connecting pipe; 300. a mounting seat; 400. a membrane body; 500. a shower pipe; 510. rotating the spray head; 600. a filtration tank; 700. a sedimentation tank; 800. a boiler; 900. and (4) a water pump.
Detailed Description
The following are specific embodiments of the present invention and the accompanying drawings are used to further describe the technical solution of the present invention, but the present invention is not limited to these embodiments.
As shown in fig. 1, 2, and 3, a membrane structure having a shower apparatus includes: the water-saving film comprises a supporting column 100, a water falling hopper 200, a mounting seat 300, a film body 400 and a spray pipe 500, wherein the water falling hopper 200 is arranged on the supporting column 100, a drain pipe 210 is arranged on the water falling hopper 200, the mounting seat 300 is arranged in the water falling hopper 200 and connected with the supporting column 100, the film body 400 is connected with the mounting seat 300, the spray pipe 500 is arranged on the water falling hopper 200 in a penetrating manner, the end part of the spray pipe 500 is used for spraying water to the film body 400, and the water falling hopper 200 is used for collecting water flowing upwards and downwards from the film body 400 and discharging through the drain pipe 210.
The membrane structure is actually a structure having the membrane body 400, and the membrane body 400 is fixed to the end of the support column 100 by the mounting base 300, and in the conventional membrane structure, for example, in the membrane structure building for shading the sun and rain in the open air, a lot of dust or foreign materials are actually accumulated on the surface of the membrane body 400, and the membrane body 400 becomes dirty, so that cleaning is required.
The support column 100 is a hollow tubular structure, the lower end of which is fixed on the ground, the downpipe 200 can be a barrel-shaped structure or a bucket-shaped structure, and is used for receiving the water falling from the membrane 400, the edge of the membrane 400 is provided with a rope edge, and a clamp clamps the rope edge and fixes the rope edge and the mounting base 300 together, so that the membrane 400 is pulled by the mounting base 300, and the edge of the membrane 400 faces the downpipe 200, so that the downpipe 200 can receive the snow or rain water falling from the membrane 400.
Preferably, the shower pipe 500 is further inserted into the downpipe 200, and an end of the shower pipe 500 extends out of the downpipe 200, so that the end can spray water toward the upper surface of the membrane body 400, so that the surface of the membrane body 400 can be cleaned with water without manual work, and in operation, the membrane body 400 can be washed with water by injecting water into the shower pipe 500, thereby achieving a cleaning effect.
As shown in fig. 1, 2, 3, and 4, in addition to the above embodiments, the membrane structure further includes a filtering tank 600 and a settling tank 700, the drainage pipe 210 is connected to the filtering tank 600, the filtering tank 600 is connected to the settling tank 700, and the drainage pipe 210 is used for guiding the water in the water falling hopper 200 to the filtering tank 600 and recycling the water to the settling tank 700.
Preferably, the filtering tank 600 is communicated with the sedimentation tank 700, the filtering tank 600 is connected with the water discharge pipe 210, the water discharge pipe 210 can guide the water in the water falling hopper 200 into the filtering tank 600, so as to collect the cleaned sewage for reuse, furthermore, the filtering tank 600 is not limited to collect the sewage after cleaning the membrane body 400, and all the water falling onto the membrane body 400 into the water falling hopper 200 can be firstly recovered into the filtering tank 600 for storage.
In the actual recycling process, water enters the filtering tank 600 for filtering, so that large-particle impurities in the cleaned sewage can be filtered, then enters the sedimentation tank 700 for sedimentation and purification, and then relatively clean water can be recovered, and it is worth explaining that the filtering tank 600 and the sedimentation tank 700 are not necessarily tanks, but actually are water storage containers, so that the filtering tank 600 and the sedimentation tank 700 can be replaced by water storage barrels in the actual structure.
As shown in fig. 1, 2, 3 and 4, in addition to the above embodiments, the membrane structure further includes a boiler 800 and a water pump 900, the boiler 800 is connected to the sedimentation tank 700, the water pump 900 is connected to the boiler 800, the shower pipe 500 is connected to the water pump 900, the boiler 800 is used for heating the water recovered from the sedimentation tank 700, and the water pump 900 is used for pumping the hot water pump 900 provided by the boiler 800 into the shower pipe 500 so that the shower pipe 500 sprays the hot water to the membrane body 400.
It should be noted that the membrane structure building is generally constructed in the open air, and when the building encounters snow, snow and ice are easily accumulated on the membrane 400, so that the snow is pressed on the membrane 400, and snow melting is required at this time, and when the shower pipe 500 sprays hot water, the hot water can be sprayed on the accumulated snow on the membrane 400, so that the snow is melted by the hot water, and therefore, the shower pipe 500 can achieve a snow melting effect in addition to cleaning the membrane 400, and in addition, the hot water can be sprayed to improve the cleaning effect.
Preferably, the filtering tank 600 and the sedimentation tank 700 can purify and collect the cleaned sewage or the melted snow water, and then deliver the purified sewage or the melted snow water to the boiler 800, the boiler 800 can heat the recycled water to obtain hot water, the hot water enters the spraying pipe 500 through the water pump 900, and then is sprayed onto the membrane body 400 again, so that the water resource can be reused, and the purpose of saving and protecting the environment can be realized on the premise of continuously providing hot water.
As shown in fig. 1, 2 and 3, on the basis of the above embodiment, the number of the shower pipes 500 is plural and is arranged around the supporting column 100.
Preferably, the shower pipes 500 arranged in a ring shape can spray hot water to the maximum extent so that the hot water can spray most of the membrane body 400, and it is also worth mentioning here that in the actual membrane structure, there are a plurality of supporting columns 100, the plurality of supporting columns 100 pull the string edge of the membrane body 400 through the mounting base 300, and the membrane body 400 at the periphery of the supporting columns 100 can be cleaned through the plurality of shower pipes 500 arranged around the supporting columns 100, and when melting snow, most of the accumulated snow on the membrane body 400 can be melted.
As shown in fig. 1 and 4, in the above embodiment, a rotary shower head 510 is provided at an end of the shower pipe 500, water is sprayed from the rotary shower head 510 to the membrane body 400 through the shower pipe 500, and the sprayed water flows from the membrane body 400 to the drop tank 200.
The end part of the spray pipe 500 is provided with the rotary spray nozzle 510, the rotary spray nozzle 510 can rotate when spraying water, so that most of the membrane body 400 can be covered by the sprayed hot water, and the rotary spray nozzle 510 rotates when spraying water, so that the membrane body 400 can be continuously washed by the hot water, and the cleaning effect can be greatly improved.
As shown in fig. 1 and 2, on the basis of the above embodiment, a plurality of rib plates 220 are circumferentially arranged on an inner wall of the downpipe 200, the mounting seat 300 includes an annular base 230, a mounting ring 240 and a plurality of connecting pipes 250, the annular base 230 is connected to the rib plates 220, each connecting pipe 250 is circumferentially arranged on the supporting column 100, one end of each connecting pipe 250 is connected to the supporting column 100, the other end of each connecting pipe 250 is connected to the annular base 230, the mounting ring 240 is connected to the annular base 230, and the membrane body 400 is connected to the mounting ring 240.
Preferably, the downpipe 200 has a ring-shaped wall structure, and a plurality of ribs 220 are provided on an inner wall of the ring-shaped wall structure, the plurality of ribs 220 are arranged in a ring shape, the mounting base 300 has a ring-shaped base 230, a mounting ring 240, and a plurality of connecting pipes 250, the support column 100 passes through the ring-shaped base 230, and the plurality of ribs 220 are connected with the ring-shaped base 230, so that the ring-shaped base 230 and the downpipe 200 are connected together.
Preferably, the connection pipe 250 is located between the annular base 230 and the support column 100, and a plurality of connection pipes 250 are disposed around the support column 100, and both ends of the connection pipe 250 are respectively connected to the annular base 230 and the support base, so that the annular base 230 and the support column 100 are fixed together.
Preferably, a plurality of fixing plates are further provided on the ring-shaped base 230, the mounting ring 240 penetrates through the fixing plates so that the mounting ring 240 is fixed on the ring-shaped base 230, the mounting ring 240 can be used to fix a clamp, and the clamp can fix the string edge of the membrane body 400, so that the edge of the membrane body 400 is fixed by the mounting ring 240.
The specific embodiments described herein are merely illustrative of the spirit of the invention. Various modifications, additions and substitutions for the specific embodiments described herein may be made by those skilled in the art without departing from the spirit of the invention or exceeding the scope of the invention as defined in the accompanying claims.

Claims (6)

1. A membrane structure having a spray assembly, comprising: the water-saving device comprises a support column, a water falling hopper, a mounting seat, a membrane body and a spray pipe, wherein the water falling hopper is arranged on the support column, the water falling hopper is provided with a drain pipe, the mounting seat is arranged in the water falling hopper and connected with the support column, the membrane body is connected with the mounting seat, the spray pipe is arranged on the water falling hopper in a penetrating mode, the end portion of the spray pipe is used for spraying water towards the membrane body, and the water falling hopper is used for collecting water flowing upwards and downwards from the membrane body and is discharged through the drain pipe.
2. A membrane structure having a shower device as claimed in claim 1, wherein: the membrane structure further comprises a filtering tank and a sedimentation tank, the drain pipe is connected with the filtering tank, the filtering tank is connected with the sedimentation tank, and the drain pipe is used for guiding water in the water falling hopper into the filtering tank and recycling the water into the sedimentation tank.
3. A membrane structure having a shower device as claimed in claim 2, wherein: the membrane structure further comprises a boiler and a water pump, the boiler is connected with the sedimentation tank, the water pump is connected with the boiler, the spray pipe is connected with the water pump, the boiler is used for heating water recovered by the sedimentation tank, and the water pump is used for pumping hot water provided by the boiler into the spray pipe so that the spray pipe sprays the hot water to the membrane body.
4. A membrane structure having a shower device as claimed in claim 1, wherein: the number of the spray pipes is multiple and the spray pipes are arranged around the support column.
5. A membrane structure having a shower device as claimed in claim 4, wherein: the end part of the spray pipe is provided with a rotary spray head, water is sprayed to the membrane body from the rotary spray head through the spray pipe, and the sprayed water flows into the water falling hopper from the membrane body.
6. A membrane structure having a shower device as claimed in claim 1, wherein: the water falling device is characterized in that a plurality of rib plates which are arranged in a surrounding mode are arranged on the inner wall of the water falling hopper, the mounting seat comprises an annular base, a mounting ring and a plurality of connecting pipes, the annular base is connected with the rib plates, the connecting pipes are arranged on the supporting columns in a surrounding mode, one ends of the connecting pipes are connected with the supporting columns, the other ends of the connecting pipes are connected with the annular base, the mounting ring is connected with the annular base, and the membrane body is connected with the mounting ring.
CN201921970856.6U 2019-11-14 2019-11-14 Membrane structure with spraying device Active CN211191167U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921970856.6U CN211191167U (en) 2019-11-14 2019-11-14 Membrane structure with spraying device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921970856.6U CN211191167U (en) 2019-11-14 2019-11-14 Membrane structure with spraying device

Publications (1)

Publication Number Publication Date
CN211191167U true CN211191167U (en) 2020-08-07

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921970856.6U Active CN211191167U (en) 2019-11-14 2019-11-14 Membrane structure with spraying device

Country Status (1)

Country Link
CN (1) CN211191167U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112792043A (en) * 2021-01-19 2021-05-14 重庆市人民医院 Post-treatment equipment for medical instruments in general surgery department

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112792043A (en) * 2021-01-19 2021-05-14 重庆市人民医院 Post-treatment equipment for medical instruments in general surgery department
CN112792043B (en) * 2021-01-19 2022-03-25 重庆市人民医院 Post-treatment equipment for medical instruments in general surgery department

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