Water and fire fountain
A water-fire fountain and water chamber technology, which can be applied to spray devices, liquid spray devices, etc., can solve the problems of staying in the fountain industry and failing to meet viewing needs.
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Embodiment 1
[0022] Such as Figure 1-2 The shown water and fire fountain includes a casing 15 installed on a water chamber 13, a nozzle pipe 16 and a bracket 4 are arranged on the water chamber 13, and a first air intake pipe 19 and a second air intake pipe 20 are installed on the support 4. The first air inlet pipe 19 and the second air inlet pipe 20 are respectively connected to the two ends of the straight passage of the first three-way pipe 11, and the bypass passage of the first three-way pipe 11 is connected with a gas source with a pressure of 0.1-0.15Mpa. The gas path of the air pipe 19 is connected with the second three-way pipe 10, the first solenoid valve 8 and the auxiliary air pipe 5 in sequence, the bypass passage of the second three-way pipe 10 is connected with the first air outlet pipe 6, and the gas path of the second air inlet pipe 20 The second solenoid valve 12 and the second air outlet pipe 17 are connected in turn, the second air outlet pipe 17 is arranged in the ce...
Embodiment 2
[0025] The difference with embodiment 1 is: as image 3 As shown, the second electromagnetic valve 12 and the second air outlet pipe 17 are connected through a U-shaped pipe 21 arranged inside the water chamber 13. A steam trap 22 is provided at the bottom of the U-shaped pipe 21, and the water outlet end of the water trap 22 extends out of the water. Room 13 is set up.
[0026] When the present invention is working, a part of falling water will fall into from the second air outlet pipe 17 in the nozzle pipe 16, and form accumulated water in the pipeline between the second air outlet pipe 17 and the second electromagnetic valve 12, thus the first The continuity of the natural gas ejected from the second gas outlet pipe 17 affects the combustion of the flame at the top of the fountain. By installing a trap 22 at the bottom of the U-shaped pipe 21, the accumulated water at the bottom of the U-shaped pipe 21 can be discharged in time to ensure natural gas transportation. Continu...
Embodiment 3
[0028] The difference with embodiment 1 is: as Figure 4 As shown, a water storage tank 25 is arranged between the second electromagnetic valve 12 and the second air outlet pipe 17, the upper end of one side of the water storage tank 25 communicates with the second electromagnetic valve 12, and the upper end of the other side of the water storage tank 25 communicates with the second electromagnetic valve 12. The two outlet pipes 17 are connected, the water storage tank 25 is provided with a ball float type proximity switch 23, and the bottom of the water storage tank 25 is connected with the third solenoid valve 24 controlled by the float ball type proximity switch 23, and the third solenoid valve 24 is set Outside the water chamber 13.
[0029]When the present invention is working, a part of falling water will fall into from the second air outlet pipe 17 in the nozzle pipe 16, and form accumulated water in the pipeline between the second air outlet pipe 17 and the second elec...
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