Fire-fighting multifunctional training pool
Technical Field
The utility model relates to the field of firefighter training at a firefighting station, in particular to a firefighter training pool.
Background
The daily training of fire fighting includes "fire truck connection hydrant water absorption training".
At present, the daily fire-fighting training has the following two defects;
1. at the roadside, the fire engine is connected with a hydrant for water absorption training, occupies auxiliary roads and has potential safety hazards.
Specifically, the fire hydrant is connected to the fire engine and trains of absorbing water, can utilize roadside municipal fire hydrant to train, trains and occupies the auxiliary road, influences citizen's trip, still has training potential safety hazard.
2. The water gun washes the fire hose, can waste a large amount of water.
In addition, after the firefighter gives an alarm, a lot of dirty things are adhered on the fire-fighting water belt, and the fire-fighting water belt needs to be cleaned; the existing fire hose is used for flushing the fire hose by utilizing a water gun after the fire hose is returned to a fire department, so that a large amount of water is wasted.
Disclosure of Invention
The utility model provides a fire-fighting multifunctional training pool, which aims to solve the technical problems: how to perform fire hydrant water absorption training in a fire department and how to facilitate cleaning of fire hoses.
In order to achieve the aim of the utility model, the utility model adopts the following technical scheme:
fire control multi-functional training pond includes:
a water tank 10 for storing water;
a hydrant 30, the lower end of which is communicated with the bottom of the water tank 10, and a water outlet port 31 of the hydrant 30 leaks out of the side wall of the water tank 10;
a flame target 40 including a target rod 41 and a target head 42; a target head 42 is fixedly arranged at one end of the target rod 41; a through target rod hole 411 is formed in the radial direction of the target rod 41;
the axis of the vertical insertion pipe 50 is in a vertical state, and the vertical insertion pipe 50 is fixed with the water tank 10; the radial direction of the vertical insertion tube 50 is provided with a through tube insertion hole 51;
wherein, the target rod 41 of the fire target 40 is inserted into the vertical insertion tube 50, and the metal pin passes through the target rod hole 411 of the target rod 41 and the tube insertion hole 51 of the vertical insertion tube 50, so that the fire target 40 and the water tank 10 are limited together.
The beneficial effects of the utility model are as follows:
1. because the bottom of the hydrant 30 is communicated with the bottom in the water tank 10, when the water tank 10 is filled with water, a firefighter can cooperate the water outlet port 31 of the hydrant 30 with the water suction port of the water suction pipe of the fire engine to train the water suction (water intake) project of the hydrant; when the vertical fire target 40 is connected with the water tank 10, training of a target shooting project is performed by using a water gun; in a word, the water absorption project and the target project can be trained beside the multifunctional training pool; i.e. training the water intake project in the fire department.
2. In addition, when water is discharged from the water tank 10, dirty fire hose can be put into the water tank 10 for cleaning.
3. The water pump combiner supplies water, so that firefighters can be better familiar with the principle performance of the water pump combiner, the skilled operation capacity is improved, and no training facility exists in the existing fire station.
4. The simulation target practice solves the problems of insufficient daily water jet training equipment, and the original fire extinguishing target has single and heavy function.
5. The daily water intake training of the fire-fighting floating pump and the motor pump also needs a water pool.
6. Can be used as a combat uniform and a water band soaking pool, and provides convenience.
Drawings
FIG. 1 is a perspective view of the present utility model;
FIG. 2 is a perspective view of another view of the present utility model;
FIG. 3 is a front view of the present application;
FIG. 4 is a right side view of the present application;
FIG. 5 is a top view of the handle of FIG. 4;
fig. 6 is a schematic structural view of a fire target 40 of the second embodiment;
fig. 7 is a view in the a-direction of fig. 6.
Reference numeral control table:
a water tank 10, a groove 11 and a water pump combiner 20;
a hydrant 30 and a water outlet port 31;
the fire target 40, the target rod 41, the target rod hole 411, the target head 42, the water inlet hole 421, the water storage cavity 422, the overflow pipe 43 and the fire target water discharge pipe 44;
the vertical insertion pipe 50, the pipe insertion hole 51, the water supplementing pipe 60, the roller 70, the horizontal insertion pipe 90, the water tank drain cock 110 and the handle 120.
Detailed Description
Specific embodiments of the present utility model will be further described below with reference to the accompanying drawings. Wherein like parts are designated by like reference numerals. It should be noted that the words "front", "rear", "left", "right", "upper" and "lower" used in the following description refer to directions in the drawings, and the words "inner" and "outer" refer to directions toward or away from, respectively, the geometric center of a particular component.
In order to make the contents of the present utility model more clearly understood, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model.
Example 1
Referring to fig. 1 to 5, the fire-fighting multifunctional training pool,
the water tank 10 is used for storing water; preferably, a plurality of rollers 70 are fixedly provided at the lower side of the water tank 10, and the rollers 70 are provided with brakes to facilitate movement of the water tank 10.
The lower end of the hydrant 30 is communicated with the bottom of the water tank 10, and a water outlet port 31 of the hydrant 30 leaks out of the side wall of the water tank 10. When water exists in the water tank 10, a fire fighter cooperates the water outlet port 31 of the hydrant 30 with the water suction port of the fire fighter water suction pipe, the fire fighter skillfully operates the fire fighter to train the fire fighter to suck water (intake) and pump the water in the water tank 10 into the fire fighter.
The fire target 40 comprises a target rod 41 and a target head 42; a target head 42 is fixedly arranged at one end of the target rod 41; the radial direction of the target 41 is provided with a through target hole 411.
The axis of the vertical insertion pipe 50 is in a vertical state, and the vertical insertion pipe 50 is fixed with the water tank 10; referring to fig. 2, the vertical cannula 50 is radially formed with a tube receptacle 51 therethrough.
Wherein, the target rod 41 of the fire target 40 is inserted into the vertical insertion tube 50, and the metal pin passes through the target rod hole 411 of the target rod 41 and the tube insertion hole 51 of the vertical insertion tube 50, so that the fire target 40 and the water tank 10 are limited together.
In summary, since the bottom of the hydrant 30 is communicated with the bottom of the water tank 10, when the water tank 10 has water, a fire fighter can cooperate the water outlet 31 of the hydrant 30 with the water suction port of the water suction pipe of the fire fighter to train the water suction (water intake) project of the hydrant; when the vertical fire target 40 is connected with the water tank 10, training of a target shooting project is performed by using a water gun; in a word, the water absorption project and the target project can be trained beside the multifunctional training pool; i.e. training the water intake project in the fire department.
In addition, when water is discharged from the water tank 10, dirty fire hose can be put into the water tank 10 for cleaning.
Further, referring to fig. 1, 2 and 6, the water replenishing pipe 60 is fixed to the water tank 10, a first end of the water replenishing pipe 60 is communicated with the water tank 10, and a second end of the water replenishing pipe 60 can be communicated with a water outlet end of a water supply hose of the fire truck. The advantage of this is that when one fire engine is used for hydrant water sucking exercise, the water outlet end of the water supply hose of the other fire engine (or the same fire engine) is used for supplying water to the water tank 10 through the second end of the water supplementing pipe 60, so that the water in the water tank 10 is not pumped out.
Further, two coaxial transverse cannulas 90 are in a group, and the transverse cannulas 90 are fixedly connected with the outer wall of the water tank 10; when the fire target 40 is idle, the target shaft 41 of the fire target 40 may be inserted into the transverse cannula 90.
Further, one end of the water tank drain cock 110 is fixedly communicated with the bottom of the inner cavity of the water tank 10. When the water tank is idle, the water tank drain cock 110 is used for discharging water remaining in the water tank 10.
Further, the handle 120 is fixedly connected to the outer wall of the tank 10.
Further, a water pump coupling is fixed to the water tank 10, and a lower end of the water pump coupling is communicated with the water tank 10, and the water pump coupling 20 is used for communicating with a water outlet of a water supply hose of the fire engine.
Example two
Referring to fig. 6 and 7, a water storage cavity 422 is provided in the target 42, a water inlet hole 421 is provided on one side of the target 42, and the water inlet hole 421 is communicated with the water storage cavity 422.
One end of a horizontal overflow tube 43 communicates with the target 42.
Principle of: aiming the water inlet 421 by a water gun, water is pumped into the water storage cavity 422, and after the water in the water storage cavity 422 reaches a preset amount, the water overflows from the overflow pipe 43.
Further, one end of the fire target water discharge pipe 44 is communicated with the bottom of the target head 42, and the fire target water discharge pipe 44 is communicated with the water storage cavity 422, and a water valve is arranged on the fire target water discharge pipe 44. When it is desired to empty the water reservoir 422, it is only necessary to open the water valve on the fire target drain 44.
The above description is illustrative of the preferred embodiments of the present utility model and is not intended to limit the scope of the present utility model, but is to be accorded the full scope of the claims.