CN213180172U - Flood prevention prompt monitoring system of underground garage - Google Patents

Flood prevention prompt monitoring system of underground garage Download PDF

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Publication number
CN213180172U
CN213180172U CN202021816872.2U CN202021816872U CN213180172U CN 213180172 U CN213180172 U CN 213180172U CN 202021816872 U CN202021816872 U CN 202021816872U CN 213180172 U CN213180172 U CN 213180172U
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water
water storage
component
flood prevention
underground garage
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CN202021816872.2U
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李文婷
刘金红
程文
杨安妮
喻勇
林翔
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Guangzhou Hongji Municipal Architectural Design Institute Co ltd
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Guangzhou Hongji Municipal Architectural Design Institute Co ltd
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    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
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Abstract

The application relates to a flood prevention prompt monitoring system of an underground garage. The application flood prevention suggestion monitored control system in underground garage include: the water storage device comprises a water storage component, a detection component and a prompt component, wherein the detection component is connected with the water storage component, and the detection component is electrically connected with the prompt component; the water storage component comprises a water accumulation ball, a water delivery pipe and a water storage cylinder, wherein a water accumulation port is arranged at the top of the water accumulation ball, and two ends of the water delivery pipe are respectively connected with the water accumulation ball and the water storage cylinder and are respectively communicated with the inner cavity of the water accumulation ball and the inner cavity of the water storage cylinder; the water accumulation ball is higher than the bottom end of the water storage cylinder and is arranged, and a drain hole is formed in the bottom end of the water storage cylinder; the detection assembly comprises a power supply, a controller and a flowmeter; the prompting component comprises an alarm which is electrically connected with the controller. The application the flood prevention prompt monitoring system of the underground garage has the advantage of simple structure and easy realization.

Description

Flood prevention prompt monitoring system of underground garage
Technical Field
The application relates to a monitoring system, in particular to a flood prevention prompt monitoring system of an underground garage.
Background
In summer and typhoon season, rainwater is more, particularly in southern areas, rainstorm often occurs, if the rainstorm comes temporarily and cannot be timely swept, a large amount of accumulated water in local areas can be formed, the accumulated water in some areas can reach several meters, and the safety of an underground garage is greatly influenced.
The existing underground garage is flood-proof, and on one hand, sand bags are piled up artificially; before the rainstorm comes, a sufficient number of sandbags are stacked at the entrance of the garage, so that the entrance of the garage forms a high enough enclosing wall, and a large amount of rainwater is prevented from flowing into the garage. On the other hand is through setting up detection device, and prior art's rainstorm detection device structure is complicated, and the accuracy is although high, but the cost is also high, is unfavorable for large-scale using widely to influenced a large amount of uses, and made many garages still through the mode that uses the sand bag, prevent that the rainstorm floods.
SUMMERY OF THE UTILITY MODEL
Based on this, the utility model aims at providing a flood prevention suggestion monitored control system in underground garage, it has simple structure, with low costs and does benefit to the advantage of using widely.
One aspect of the application provides a flood prevention prompt monitoring system of an underground garage, which comprises a water storage component, a detection component and a prompt component, wherein the detection component is connected with the water storage component, and the detection component is electrically connected with the prompt component;
the water storage component comprises a water accumulation ball, a water delivery pipe and a water storage cylinder, wherein a water accumulation port is arranged at the top of the water accumulation ball, and two ends of the water delivery pipe are respectively connected with the water accumulation ball and the water storage cylinder and are respectively communicated with the inner cavity of the water accumulation ball and the inner cavity of the water storage cylinder; the water accumulation ball is higher than the bottom end of the water storage cylinder, a drain hole is formed in the bottom end of the water storage cylinder, and the diameter of the drain hole is smaller than that of the water accumulation port;
the detection assembly comprises a power supply, a controller and a flowmeter, the flowmeter is arranged on the water delivery pipe, and the detection end of the flowmeter is arranged in the water delivery pipe; the flowmeter is electrically connected with the controller, and the flowmeter and the controller are respectively electrically connected with the power supply;
the prompting component comprises an alarm which is electrically connected with the controller.
The application underground garage's flood prevention suggestion monitored control system, carry out the rainwater through the ponding mouth of ponding ball and collect, the rainwater flows through and gets into a water storage section of thick bamboo behind the raceway, when the rainwater flowed through the raceway, is detected the flow of water by the flowmeter to with signal transmission to the controller in, when the flow was greater than the setting value, the controller control alarm was reported to the police. The application flood prevention prompt monitoring system of underground garage, the suggestion is convenient, simple structure realizes easily moreover.
And further, the water storage device comprises two water storage assemblies and two flow meters, wherein the two water storage assemblies are respectively placed and are correspondingly installed and arranged with the two flow meters.
Further, a processor is included and is electrically coupled to the flow meter and to the controller.
Further, the detection assembly further comprises a liquid level meter, and the liquid level meter is installed on the water storage cylinder.
Further, the power source includes a solar cell electrically connected to the liquid level meter, the controller, the processor, and the flow meter, respectively.
Further, the water conveying pipe is obliquely arranged and is connected with the side wall of the water storage cylinder.
Furthermore, a cylindrical cavity is formed in the water storage cylinder, and the diameter of a cross-section circle of the cavity is the same as that of the water accumulation port;
the diameter of the water collecting port is smaller than 3/4 of the diameter of the water collecting ball, and the diameter of the drain hole is smaller than 1/10 of the diameter of the cylindrical cavity.
Furthermore, the prompting component further comprises a wireless communication module, and the wireless communication module is respectively electrically connected with the controller and the alarm.
Further, still include the support frame, support frame one end is fixed ponding ball bottom.
For a better understanding and practice, the present application is described in detail below with reference to the accompanying drawings.
Drawings
Fig. 1 is a schematic perspective view of an exemplary flood prevention prompt monitoring system for an underground garage according to the present application;
fig. 2 is a schematic perspective view of another exemplary flood prevention prompt monitoring system for an underground garage according to the present application;
fig. 3 is a schematic perspective view of another exemplary flood prevention cue monitoring system for an underground garage according to the present application.
Detailed Description
In the description of the present application, it is to be understood that the terms "center," "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," and the like are used in the orientation or positional relationship indicated in the drawings for convenience in describing the present application and for simplicity in description, and are not intended to indicate or imply that the referenced devices or elements must have a particular orientation, be constructed in a particular orientation, and be operated in a particular manner, and are not to be considered limiting of the present application. In the description of the present application, "a plurality" means two or more unless otherwise specified.
Example (b):
fig. 1 is a schematic perspective view of an exemplary flood prevention prompt monitoring system for an underground garage according to the present application; fig. 2 is a schematic perspective view of a flood prevention prompting monitoring system of another exemplary underground garage according to the present application, and fig. 3 is a schematic perspective view of another perspective view of the flood prevention prompting monitoring system of another exemplary underground garage according to the present application.
Referring to fig. 1 to 3, an exemplary flood prevention prompting monitoring system for an underground garage of the present application includes a water storage component, a detection component and a prompting component, wherein the detection component is connected to the water storage component, and the detection component is electrically connected to the prompting component;
the water storage component comprises a water accumulation ball 11, a water delivery pipe 12 and a water storage cylinder 13, wherein a water accumulation port 21 is arranged at the top of the water accumulation ball 11, and two ends of the water delivery pipe 12 are respectively connected with the water accumulation ball 11 and the water storage cylinder 13 and are respectively communicated with the inner cavity of the water accumulation ball 11 and the inner cavity of the water storage cylinder 13; the water accumulation ball 11 is arranged higher than the bottom end of the water storage cylinder 13, a drain hole 22 is formed in the bottom end of the water storage cylinder 13, and the diameter of the drain hole 22 is smaller than that of the water accumulation port 21;
the detection assembly comprises a power supply, a controller and a flowmeter 31, wherein the flowmeter 31 is installed on the water conveying pipe 12, and the detection end of the flowmeter 31 is installed in the water conveying pipe 12; the flowmeter 31 is electrically connected with the controller, and the flowmeter 31 and the controller are respectively electrically connected with the power supply;
the prompting component comprises an alarm which is electrically connected with the controller.
Further, the inner diameter of the water pipe 12 is smaller than the diameter of the water collecting port 21.
Further, the water conveying pipe 12 is arranged at the bottom of the water accumulation ball 11 and is communicated with the water accumulation ball 11.
Further, the controller is an integrated circuit board or a PLC or a computer.
In some preferred embodiments, two water storage assemblies and two flow meters 31 are included, and the two water storage assemblies are respectively placed and are installed corresponding to the two flow meters 31. Of course, the flow meter may be a rotameter.
In some preferred embodiments, a processor is also included and is electrically connected to the flow meter 31 and to the controller.
In some preferred embodiments, the detection assembly further comprises a liquid level gauge 32, the liquid level gauge 32 being mounted on the reservoir 13. Further, the liquid level meter 32 is an electronic liquid level meter 32, the electronic liquid level meter 32 is installed on the top of the water storage cylinder 13, and a probe of the electronic liquid level meter extends into the water storage cylinder 13.
In some preferred embodiments, the power source comprises a solar cell 41, and the solar cell 41 is electrically connected to the liquid level meter 32, the controller, the processor, and the flow meter 31, respectively.
Further, a battery holder 43 is included, the battery holder 43 is arranged in the longitudinal direction, and the solar battery 41 is mounted on the top end of the battery holder 43. In addition, the power supply further includes a storage battery 42, the storage battery 42 being electrically connected to the solar cell 41; the battery 42 may be connected to a 220V power supply. When the electric quantity in the storage battery 42 is too low and no solar energy is available, the storage battery 42 can be powered by an external power supply. The power of the battery 42 is supplied to the controller, the flow meter 31, the alarm, the processor, the level gauge 32, and the like, respectively.
In some preferred embodiments, the water duct 12 is disposed obliquely and connected to a side wall of the reservoir 13.
In some preferred embodiments, a cylindrical cavity is formed in the water storage cylinder 13, and the diameter of the cross-section circle of the cavity is the same as that of the water accumulation port 21;
the diameter of the water collecting port 21 is smaller than 3/4 of the diameter of the water collecting ball 11, and the diameter of the water discharge hole 22 is smaller than 1/10 of the diameter of the cylindrical cavity.
In some preferred embodiments, the prompting component further comprises a wireless communication module, and the wireless communication module is electrically connected with the controller and the alarm respectively. The control signal of the controller can be remotely and wirelessly transmitted through the wireless communication module, and the control signal can also be transmitted to the mobile terminal to remind a user of paying attention.
In some preferred embodiments, the water collecting device further comprises a support frame 14, and one end of the support frame 14 is fixed at the bottom of the water collecting ball 11. Further, the bottom end of the supporting frame 14 is flush with the bottom end of the water storage cylinder 13.
The working principle of the flood prevention prompt monitoring system of the underground garage comprises the following steps:
setting a flow threshold or a flow interval. When raining, rainwater enters the water accumulation ball 11 from the water accumulation port 21, then flows into the water conveying pipe 12 from the cavity of the water accumulation ball 11, when the rainwater flows through the water conveying pipe 12, the rainwater impacts the flow meter 31 to generate a flow value, and when the actual flow is larger than the flow threshold, the controller controls the alarm to give an alarm.
When the control signal of the controller is transmitted through the wireless transmission module, the user receives the control signal at the mobile terminal or receives the control signal on the computer to remind the user of paying attention.
The flood prevention prompting monitoring system of the underground garage is arranged at an entrance of the garage, or the flood prevention prompting monitoring systems of the two underground garages are respectively arranged at the entrance of the garage, the processor compares signals obtained by the two flow meters 31, and if the difference is too large, for example, the difference is larger than 50%, the controller does not make a control instruction, because one of the underground garages is possibly in a fault or is abnormal. When the difference value of the signals obtained by the two flowmeters 31 is lower than 10%, the detected value is accurate, and at this time, the controller sends out a control signal to remind the user of paying attention.
Of course, a plurality of water storage assemblies and a corresponding number of flow meters 31 can be respectively arranged at a plurality of garage entrances, and data of the flow meters 31 are respectively transmitted to the same controller and processor, so that distributed operation and integrated management are realized.
When the flow is monitored, the liquid level of the accumulated water in the water storage cylinder 13 is collected by the liquid level meter 32, and when the liquid level is too high, for example, higher than 80%, the excessive rainfall is prompted, and the timely flood control is noticed. When the rainfall goes, the accumulated water in the water storage cylinder 13 can be drained through the drainage hole 22. In addition, when it rains, the water storage cylinder 13 will be drained from the drain hole 22 while storing water normally, and when the water inlet amount in the water storage cylinder 13 is larger than the water drainage amount, the liquid level will gradually rise in the water storage cylinder 13.
The flood prevention prompt monitoring system of the underground garage is simple in structure and easy to realize, management of management personnel on flood prevention and flood prevention work of the garage is facilitated, and actual rainfall and ponding depth of the garage are quantized.
Moreover, the water accumulation ball 11 is spherical, so that rainwater can be easily collected, and the spherical structure is slightly influenced by strong wind and is firmly fixed.
By using the flood prevention prompting monitoring system of the underground garage, the attention of a user can be timely reminded, particularly the attention of managers of the property of the garage; particularly, when rainstorm comes late at night, managers miss the optimal time for flood prevention due to deep sleep, and the situation can be effectively avoided.
The above-mentioned embodiments only express several embodiments of the present application, and the description thereof is more specific and detailed, but not construed as limiting the claims. It should be noted that, for a person skilled in the art, several variations and modifications can be made without departing from the concept of the present application, which falls within the scope of protection of the present application.

Claims (9)

1. The utility model provides a flood prevention suggestion monitored control system of underground garage which characterized in that: the water storage device comprises a water storage component, a detection component and a prompt component, wherein the detection component is connected with the water storage component and is electrically connected with the prompt component;
the water storage component comprises a water accumulation ball, a water delivery pipe and a water storage cylinder, wherein a water accumulation port is arranged at the top of the water accumulation ball, and two ends of the water delivery pipe are respectively connected with the water accumulation ball and the water storage cylinder and are respectively communicated with the inner cavity of the water accumulation ball and the inner cavity of the water storage cylinder; the water accumulation ball is higher than the bottom end of the water storage cylinder, a drain hole is formed in the bottom end of the water storage cylinder, and the diameter of the drain hole is smaller than that of the water accumulation port;
the detection assembly comprises a power supply, a controller and a flowmeter, the flowmeter is arranged on the water delivery pipe, and the detection end of the flowmeter is arranged in the water delivery pipe; the flowmeter is electrically connected with the controller, and the flowmeter and the controller are respectively electrically connected with the power supply;
the prompting component comprises an alarm which is electrically connected with the controller.
2. The flood prevention prompt monitoring system of the underground garage according to claim 1, which is characterized in that: including two water storage component and two flowmeters, two the water storage component is placed respectively, and with two the flowmeter corresponds the installation setting.
3. The flood prevention prompt monitoring system of the underground garage according to claim 2, which is characterized in that: a processor is also included and is electrically connected to the flow meter and to the controller.
4. The flood prevention prompt monitoring system of the underground garage according to claim 3, which is characterized in that: the detection assembly further comprises a liquid level meter, and the liquid level meter is installed on the water storage cylinder.
5. The flood prevention prompt monitoring system of the underground garage according to claim 4, which is characterized in that: the power supply comprises a solar cell which is electrically connected with the liquid level meter, the controller, the processor and the flow meter respectively.
6. The flood prevention prompt monitoring system of the underground garage according to claim 3, which is characterized in that: the water delivery pipe is obliquely arranged and is connected with the side wall of the water storage cylinder.
7. The flood prevention prompt monitoring system of the underground garage according to claim 3, which is characterized in that: a cylindrical cavity is formed in the water storage cylinder, and the diameter of a cross-section circle of the cavity is the same as that of the water accumulation port;
the diameter of the water collecting port is smaller than 3/4 of the diameter of the water collecting ball, and the diameter of the drain hole is smaller than 1/10 of the diameter of the cylindrical cavity.
8. The flood prevention prompt monitoring system of the underground garage according to claim 3, which is characterized in that: the prompting component further comprises a wireless communication module, and the wireless communication module is respectively electrically connected with the controller and the alarm.
9. The flood prevention prompt monitoring system of the underground garage according to any one of claims 1 to 8, which is characterized in that: the water collecting ball is characterized by further comprising a support frame, wherein one end of the support frame is fixed to the bottom of the water collecting ball.
CN202021816872.2U 2020-08-27 2020-08-27 Flood prevention prompt monitoring system of underground garage Active CN213180172U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021816872.2U CN213180172U (en) 2020-08-27 2020-08-27 Flood prevention prompt monitoring system of underground garage

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021816872.2U CN213180172U (en) 2020-08-27 2020-08-27 Flood prevention prompt monitoring system of underground garage

Publications (1)

Publication Number Publication Date
CN213180172U true CN213180172U (en) 2021-05-11

Family

ID=75767960

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021816872.2U Active CN213180172U (en) 2020-08-27 2020-08-27 Flood prevention prompt monitoring system of underground garage

Country Status (1)

Country Link
CN (1) CN213180172U (en)

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