Centralized water supply type water-gas double-spraying interactive explosion spring
By designing a centralized water-supply dual-spray interactive explosion spring, a single water-spray nozzle and a gas-water mixed nozzle are used, combining airflow and water flow, the problems of single jet mode, monotonous landscape and poor atomization effect in the existing technology are solved, and multiple jet modes and better atomization effects are achieved.
Patent Information
- Application Number
- CN202422035057.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-21
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-08-21
AI Technical Summary
In the prior art, in the design of fountains in parks or squares, there is only one type of jetting method, the landscape is monotonous, and the water jet leads to poor atomization effect.
A centralized water supply water and gas dual spray interactive explosion spring is designed, using a single water spray nozzle and a gas-water mixing nozzle. Through a single water jet submersible pump and a gas-water mixing diversion water tank, combining air flow and water flow, multiple jet modes and atomization effects are achieved.
A variety of jet modes have been realized, which enhances the landscape effect of the fountain. Through the combination of airflow and water flow, better jet effect and atomization effect are achieved, forming an explosion spring and enhancing the ornamental value.
Smart Images

Figure CN222901526U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a fountain technology for parks or squares, in particular to a centralized water supply type water and gas double spray interactive explosion fountain. Background Art
[0002] With the continuous improvement of people's living standards, their spiritual pursuits have also increased, and urban greening has also been continuously improved. Therefore, dry spray squares are often set up in public places such as parks and squares, and in cooperation with decorative lights, they can be used to decorate and beautify the square environment and enrich people's vision.
[0003] The authorized announcement number CN 208427288 U discloses a water and gas mixed type water-saving dry spray, which is embedded in the ground. It includes a pool main body, a water spraying module, a water storage module, and a power storage module, all of which are located in the pool main body; a landscape lamp is embedded in the top surface of the pool main body; the water spraying module includes a fountain nozzle, a delay self-closing faucet, and a support pedal connected in sequence; the fountain nozzle and the support pedal are both embedded in the top surface of the pool main body; the delay self-closing faucet is located in the pool main body; an induction switch is arranged on the side surface of the support pedal; the induction switch is connected with a controller; the controller is connected with the landscape lamp.
[0004] The above technology has some deficiencies: one is that there is only one spraying method, and the landscape is monotonous; the other is that only water flow spraying is adopted, and the atomization effect is poor. Content of the Utility Model
[0005] The technical problem to be solved by the utility model is: to overcome the deficiencies of the prior art and provide a centralized water supply type water and gas double spray interactive explosion fountain with reasonable design, which can not only spray water alone but also spray water and gas in a mixed way.
[0006] The technical solution of the utility model is:
[0007] A centralized water supply type water and gas double spray interactive explosion fountain, which includes a panel 1, on which a landscape lamp 5 and an induction switch 4 are arranged. The characteristics are that single water spraying type nozzles 2 and water and gas mixed type nozzles 3 are arranged on the panel 1 at intervals and alternately; the lower end of the single water spraying type nozzle 2 is connected with a single water spraying water path module 8, and the lower ends of the water and gas mixed type nozzles 3 are respectively connected with a water and gas mixed water path module 7 and a water and gas mixed gas path module 6; the water and gas mixed water path module 7 adopts centralized water supply by a water tower 9.
[0008] Further: The single water spraying waterway module 8 includes a single water spraying submersible pump 81 and a single water spraying water distribution tank 82. The single water spraying submersible pump 81 is communicated with the single water spraying water distribution tank 82 through a control valve. The single water spraying water distribution tank 82 is provided with water outlets at intervals. Each water outlet is connected to the lower end of a single water spraying nozzle 2 through a single water spraying water pipe 83.
[0009] Further: The air-water mixing waterway module 7 includes the water tower 9 and the air-water mixing water distribution tank 72. The water tower 9 is communicated with the air-water mixing water distribution tank 72 through a control valve. The air-water mixing water distribution tank 72 is provided with water outlets at intervals. Each water outlet is connected to the lower end water inlet of a single air-water mixing nozzle 3 through an air-water mixing water pipe 73.
[0010] Further: The water tower is arranged in the fountain pool and can provide a pressure water source for a plurality of the air-water mixing water distribution tanks 72 at the same time.
[0011] Further: The water tower 9 is supplemented with water through a water supply pump 10, and the water supply pump adopts continuous water supply or intermittent water supply.
[0012] Further: The air-water mixing air path module 6 includes a pressure air source and an air tank 62. The pressure air source is communicated with the air inlet of the air tank 62 through an air inlet pipe 61. The air outlet of the air tank 62 is sequentially communicated with the air inlet of the air-water mixing air distribution tank through a regulating valve 63, a solenoid valve 66 and a check valve 64. The air-water mixing air distribution tank is provided with air outlets at intervals. Each air outlet of the air-water mixing air distribution tank is connected to the lower end air inlet of a single air-water mixing nozzle 3 through an air-water mixing air pipe; the pressure air source can provide a pressure air source for a plurality of the air-water mixing air path modules 6 at the same time.
[0013] Further: The induction switch 4 adopts a push-button switch, or the induction switch 4 adopts a combination of a pedal and a pressure sensor to reach a pressure threshold to trigger the switch; or the induction switch 4 adopts an electronic inductor, and when people approach the inductor, the switch is triggered.
[0014] Further: The panel 1 is square, and the air-water mixing nozzles 3 are respectively arranged at the four corners thereof, and the single water spraying nozzles 2 are respectively arranged at the midpoints of the four sides thereof.
[0015] The beneficial effects of the present utility model are as follows:
[0016] 1. The present utility model adopts two fountain modes, which can not only achieve the conventional fountain effect, but also adopt the air-water mixing mode to realize the fountain landscape through human interaction.
[0017] 2. The utility model utilizes the Venturi principle, combines air flow and water flow to achieve a better spraying effect, and can simultaneously achieve an atomization effect. The water curtain is delicate and has strong explosiveness, forming an explosion fountain.
[0018] 3. The utility model adopts a controller to regulate the type and spraying time of the fountain, forming an automatic control, reducing labor costs, and saving time and effort.
[0019] 4. The utility model adopts various control valves, which can be manually regulated and electrically regulated, combined with each other, with flexible application, convenience and speed.
[0020] 5. The utility model is provided with a pressure water container (water tower) in the fountain pool, and the water tower is used to provide water sources for multiple air-water dual-spray nozzles at the same time, saving submersible pumps.
[0021] 6. The utility model is reasonably designed, can spray water alone or mix air and water for spraying. According to the size of the site, different numbers of nozzles can be set to achieve a better fountain effect, which is easy to promote and implement and has good economic benefits. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 It is a schematic structural diagram of a centralized water supply type air-water dual-spray interactive explosion fountain;
[0023] Figure 2 For Figure 1 The installation schematic diagram of the single water spraying waterway module in
[0024] Figure 3 For Figure 1 The installation schematic diagram of the air-water mixed waterway module in
[0025] Figure 4 For Figure 1 The installation schematic diagram of the air-water mixed gas path module in DETAILED DESCRIPTION OF THE EMBODIMENTS
[0026] Example 1: Refer to Figure 1 -- Figure 4 , in the figure, 1 - panel, 2 - single water spraying type nozzle, 3 - air-water mixed type nozzle, 4 - induction switch, 5 - landscape lamp, 6 - air-water mixed gas path module, 7 - air-water mixed waterway module, 8 - single water spraying waterway module, 9 - water tower, 10 - water supply pump, 61 - intake pipe, 62 - air tank, 63 - regulating valve, 64 - check valve, 65 - gas transmission pipe, 66 - solenoid valve, 71 - air-water mixed submersible pump, 72 - air-water mixed water distribution tank, 73 - air-water mixed water pipe, 81 - single water spraying submersible pump, 82 - single water spraying water distribution tank, 83 - single water spraying water pipe.
[0027] A centralized water supply type water and gas double - spray interactive explosion fountain, which includes a panel 1 (in the figure, the panel 1 is square, and of course, other shapes can also be used, such as rectangular, circular or oval). At the center of the panel 1, there are a landscape lamp 5 and an induction switch 4 (it can also be set in other places, not listed one by one). The induction switch 4 can be a push - button switch, or a combination of a pedal and a pressure sensor. When the pressure threshold is reached, the switch is triggered; it can also be an electronic sensor. When people approach the sensor, the switch is triggered. Of course, other methods can also be used, not listed one by one. Among them: on the panel 1, single - spray nozzles 2 and water - gas mixed nozzles 3 are arranged at intervals in a staggered manner. The lower end of the single - spray nozzle 2 is connected to a single - spray water path module 8, and the lower ends of the water - gas mixed nozzles 3 are respectively connected to a water - gas mixed water path module 7 and a water - gas mixed gas path module 6.
[0028] Preferred solution: The single - spray water path module 8 includes a single - spray submersible pump 81 and a single - spray water distribution tank 82. The single - spray submersible pump 81 is connected to the single - spray water distribution tank 82 through a control valve. The single - spray water distribution tank 82 is provided with water outlets at intervals. Each water outlet is connected to the lower end of a single - spray nozzle 2 through a single - spray water pipe 83.
[0029] Preferred solution: The water - gas mixed water path module 7 includes a water tower 9 and a water - gas mixed water distribution tank 72. The water tower 9 is connected to the water - gas mixed water distribution tank 72 through a control valve. The water - gas mixed water distribution tank 72 is provided with water outlets at intervals. Each water outlet is connected to the lower - end water inlet of a water - gas mixed nozzle 3 through a water - gas mixed water pipe 73.
[0030] Preferred solution: The water - gas mixed gas path module 6 includes a pressure gas source and a gas tank 62. The pressure gas source is connected to the inlet of the gas tank 62 through an inlet pipe 61. The outlet of the gas tank 62 is sequentially connected to the inlet of the water - gas mixed distribution gas tank through a regulating valve 63, a solenoid valve 66 and a check valve 64. The water - gas mixed distribution gas tank is provided with gas outlets at intervals. The outlet of each water - gas mixed distribution gas tank is connected to the lower - end gas inlet of a water - gas mixed nozzle 3 through a water - gas mixed gas pipe.
[0031] Preferred solution: The panel 1 is square. Water - gas mixed nozzles 3 are respectively arranged at its four corners, and single - spray nozzles 2 are respectively arranged at the mid - points of its four sides. The water - gas mixed nozzles 3 and single - spray nozzles 2 on the four sides are on a straight line.
[0032] During operation, when the single - spray nozzle 2 needs to spray water, the controller issues an instruction, the single - spray submersible pump 81 is turned on, and the corresponding control valve is opened. Water flows into the single - spray nozzle 2 and is sprayed out to form a fountain landscape. Correspondingly, the controller can also issue an instruction to turn on and off the landscape lamp 5 to enhance the overall ornamental effect of the fountain.
[0033] When the gas-water mixed nozzle 3 needs to spray water, people step on the induction switch 4 at the center of the panel 1 (at this time, the induction switch adopts a push-button switch), trigger the switch, the controller issues an instruction, and the corresponding control valve of the water tower 9 opens. Water flows into the gas-water mixed nozzle 3. At the same time, the pressurized gas in the gas tank 62 enters the gas-water mixing and splitting air box through the regulating valve 63, the solenoid valve 66 and the check valve 64, and then enters the gas-water mixed nozzle 3 from the gas-water mixing and splitting air box. Using the Venturi principle, the water flow and the air flow are intertwined and sprayed out to form an explosive water mist, with excellent viewing effects and gas-water mixing effects.
[0034] When the pressure in the gas tank 62 drops and is insufficient for operation, the pressure gas source inflates the gas tank 62 through the air inlet pipe 61, so that the corresponding pressure is always maintained in the gas tank 62, and the inflation is carried out through the controller.
[0035] The water tower 9 is a water container arranged in the fountain pool. It replenishes water through the water supply pump 10. The water supply pump 10 adopts continuous water supply or intermittent water supply. When the water source in the water tower 9 is insufficient, the water supply pump 10 supplies water. When the water source is sufficient, the water supply stops. When continuously carrying out gas-water mixing spraying, the water supply pump 10 supplies water continuously, and the excess water will be discharged from the safety valve of the pressure vessel and enter the fountain pool.
[0036] Embodiment 2: This embodiment is basically the same as Embodiment 1, and the same parts will not be repeated. The differences are as follows: The water tower 9 is provided with multiple water outlets, which can simultaneously provide pressurized water sources for multiple gas-water mixing and splitting water tanks 72, reducing the water supply cost.
[0037] The above is only the preferred embodiment of the present invention, and it does not impose any form of limitation on the present invention. Any simple modification made according to the technical essence of the present invention still belongs to the scope of the technical solution of the present invention.
Claims
1. A centralized water supply type water-gas dual-spray interactive explosion fountain, comprising a panel (1), wherein the panel (1) is provided with a landscape light (5) and an induction switch (4), wherein: The panel (1) is provided with single water spray type nozzles (2) and air-water mixing type nozzles (3) arranged in an alternating manner at intervals; the lower end of the single water spray type nozzle (2) is connected to a single water spray waterway module (8); the lower end of the air-water mixing type nozzle (3) is connected to an air-water mixing waterway module (7) and an air-water mixing airway module (6), respectively; the air-water mixing waterway module (7) uses a water tower (9) for centralized water supply.
2. According to claim 1, a centralized water supply type water-gas double spray interactive explosion fountain is characterized by: The single water spray water channel module (8) comprises a single water spray submersible pump (81) and a single water spray diversion water tank (82); the single water spray submersible pump (81) is connected to the single water spray diversion water tank (82) via a control valve; the single water spray diversion water tank (82) is provided with water outlets at intervals; each of the water outlets is connected to the lower end of a single water spray type nozzle (2) via a single water spray pipe (83).
3. The centralized water supply type water-gas double spray interactive explosion fountain according to claim 1 is characterized by: The air-water mixing water channel module (7) comprises the water tower (9) and an air-water mixing diversion water tank (72); the water tower (9) is connected to the air-water mixing diversion water tank (72) via a control valve; the air-water mixing diversion water tank (72) is provided with water outlets at intervals; each of the water outlets is connected to a lower water inlet of the air-water mixing nozzle (3) via an air-water mixing water pipe (73).
4. The centralized water supply type water-gas double spray interactive explosion fountain according to claim 3 is characterized by: The water tower is arranged in the fountain pool and can provide a pressure water source for a plurality of the gas-water mixing and diversion water tanks (72) at the same time.
5. The centralized water supply type water-gas double spray interactive explosion fountain according to claim 4 is characterized by: The water tower (9) is replenished with water via a water supply pump (10), and the water supply pump adopts continuous water supply or intermittent water supply.
6. The centralized water supply type water-gas double spray interactive explosion fountain according to claim 1 is characterized by: The gas-water mixing gas path module (6) comprises a pressure gas source and a gas tank (62); the pressure gas source is connected to the gas inlet of the gas tank (62) via an inlet pipe (61); the gas outlet of the gas tank (62) is connected to the gas inlet of the gas-water mixing diversion air box via a regulating valve (63), a solenoid valve (66) and a one-way valve (64) in sequence; the gas-water mixing diversion air box is provided with gas outlets at intervals; the water outlet of each gas-water mixing diversion air box is connected to the lower gas inlet of one of the gas-water mixing nozzles (3) via an gas-water mixing gas pipe; the pressure gas source can provide pressure gas sources for a plurality of the gas-water mixing gas path modules (6) at the same time.
7. The centralized water supply type water-gas double spray interactive explosion fountain according to claim 1 is characterized by: The inductive switch (4) is a push-type switch, or the inductive switch (4) is a combination of a pedal and a pressure sensor, and the switch is triggered when a pressure threshold is reached; or the inductive switch (4) is an electronic sensor, and the switch is triggered when people approach the sensor.
8. The centralized water supply type water-gas double spray interactive explosion fountain according to claim 1 is characterized by: The panel (1) is square, and the air-water mixing nozzles (3) are respectively arranged at its four corners, and the single water spray nozzles (2) are respectively arranged at the midpoints of its four sides.
Citation Information
Patent Citations
Interactive water conservation drought is spouted
CN208427288U