HYDRO-MECHANICAL ENERGY TRANSFER SYSTEM WITH DYNAMIC WATER TANKS AND TURBINE GENERATOR
20240200539 ยท 2024-06-20
Inventors
Cpc classification
F03G3/094
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2260/502
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2220/706
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2220/32
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2260/504
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02E10/20
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F03B17/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03B3/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F03G3/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A mechanical machine containing water in three tanks in its entirety, represented by a tank fixed at the top of the machine and not moving, and a tank moving up and down in the middle of the machine, and a tank moving up and down at the bottom of the machine. The movement of the middle and lower tank periodically tries to transfer water to the upper tank through five stages through its interaction with the remaining main parts of the machine (for example, gas springs, large water injections and automatic mechanical braking system).
Claims
1. A hydro-mechanical energy transfer system with dynamic water tanks and turbine generator, characterized by: the upper tank (11), the middle tank (12), the upper tank funnel (49) and the middle tank funnel (50) made of reinforced plastic to reduce the total weight and production cost of the tank; the drain plug (5) and the lower tank drain plug (6), which are present in the upper tank (11) and middle tank (12), which open and close depending on the movement of the tanks in the machine cycle; the drain plug fixed to the water tanks and integrated into the automatic brake pedal box in the structure of the machine body (1) upper tank drain plug opening cables (40), which automatically closes it, and middle tank brake release cable (41) and brake pedal release cables (27); the fixed pistons (51) at the bottom of the middle tank and actuating the pistons (7) of large gas springs to press each of: the water syringes 1 (15.1) and the large gas springs (8); the pistons (52), which, in addition to the pistons, pump water into the water syringes 2 (15.2) and are fixed to the base of the machine (42); the pistons (53) fixed on the body of the machine, which compress the water syringes 3 (15.3) fixed on the body of the machine (1); the water turbine (2) inside the upper tank (11) that help to reduce the sound of the water coming down and facilitate its flow in the tank; the waterway (54), which allows the water coming down from the water turbine (2) body to move inside the upper tank; longitudinally formed the channel path (48) of the manual braking system on both sides of the middle tank (12); and it includes an automatic braking system containing automatic brake pedal boxes 1 (30) and automatic brake pedal boxes 2 (36) to stop the movement of the middle tank (12) and large gas springs (8).
2. The invention according to claim 1, wherein the automatic braking system includes automatic brake pedal boxes 1 (30) and automatic brake pedal boxes 2 (36) to stop the movement of the middle tank (12) and large gas springs (8), characterized by: the brake pedal release box 1 (31) the brake pedal release box 3 (33) and large gas springs (8) to release the automatic brake pedals after braking the movement of the middle tank (12); a brake pedal release box 3 (33), which is in the form of a double box containing a middle tank brake release cable (41), which is a cable for releasing automatic brakes, and a automatic brake pedal boxes 2 (36), and another cable for opening the upper tank drain plug (5) under the funnel of the upper tank, which is a cable for opening the upper tank drain plug (40); brake pedal release box with a box for opening the lower tank drain plug (6) under the funnel of the middle tank 4 (34); all the parts contained in article 2 of the automatic brake box parts, as well as similar parts in the brake pedal release boxes, include the following: box lever (21), helical spring 1 (22) and helical spring 2 (55), brake pedal (23), brake pedal lock release switch (25), return switch after pressing the brake pedal (26) and related oil pressure pipes (57), cables and wires of the automatic brake box (56) and small rollers (58), the head of the lever (24), oil pressure brake piston rod (39) and brake oil pressure cylinder 30 (59) and finally body of the automatic brake box (60).
3. The invention according to claim 1, wherein the middle tank (12) includes the middle tank (12) brake and handbrake, where it works to brake the middle tank (12) to stop the machine when necessary, for lowering the manual brakes when the machine needs to resume operation, including: a rail line of the middle tank 2 (37); a brake jaws (38); a common oil pressure pipe (47) between the middle tank brake and the parking brake; a longitudinal channel path (48); a 4 manual brake (35) systems distributed on four sides; and longitudinal channel path (48) on both sides of the middle tank (12).
4. The invention according to claim 1, further comprising water syringes 1 (15.1), water syringes 2 (15.2) and water syringes 3 (15.3) is a moving machine and is characterized by: water syringes 1 (15.1), four water syringes 2 (15.2) and water syringes 3 (15.3): so a total of 12 water syringes; the fixed piston (51) under the middle tank on the syringe, the pistons fixed to the base of the machine (52) and the helical spring 1 (14.1), helical spring 2 (14.2) and helical spring 3 (14.3) at the top of the arm of the pistons (53) fixed to the body of the machine, in its water syringe, to complete the remaining pressure on the water at the end of each pressurization process and thus to ensure the continuity of the water flow on the water turbine (2), as well as to give sufficient time to water tanks (11), (12), (13) he will move between and deconstruct his movements; and they have two holes at the head of each syringe and a one-way valve, and suction valves 1 (16.1.1), suction valves 2 (16.2.1), suction valves 3 (16.3.1), outlet valves 1 (16.1.2), outlet valves 2 (16.2.2), outlet valves 3 (16.3.2), since each valve has a cylindrical iron pipe (62), they open automatically when water pressure comes to them from the prescribed direction, and there is a solid plastic ball coated with insulating plastic material 30 and a triangular (internal) helical spring wrapped with rubber (64) and solid rubber wrapped with strong rubber in the cylindrical tube (62) on the helical spring (64) and ball (63) wrapped with strong rubber in the valve opening (66) 22 press the direction of water movement (65) reversal for example: when sucking, water pushes the ball (63) and in turn pushes the helical spring (64) it presses, then the water passes through wide slits (67) and pushes to the suction place while, the valve direction is only reversed, so the valve is working in the desired direction.
5. The invention according to claim 1, further comprising spiral spring water pipes (4) connected between the lower tank (13) and water syringes 1 (15.1), water syringes 2 (15.2) and water syringes 3 (15.3), the total is: (8 tubes), and it contains four layers as follows in design, arrangement and quantity: the first layer is 45% reinforced and high pressure rubber (68); the second layer 7% carbon fiber fabric (69); the third layer is a 29% flexible plastic coating to protect the fibers in the second layer (70); and the fourth layer (71) is helical, comprising a 19% metal cage attached to the spiral spring water pipe above the third layer to support and carry the weight of the tube when tightened.
6. The invention according to claim 1, characterized by a design of machine body and its general form and what reveals itself in relation to it: steel beams (61) carrying the piston rods of water syringes, water pipes with spiral springs (4), water turbine housing (2), upper tank (11), automatic brake pedal release boxes 3 (33) and accessories, spools of steel wire ropes (17); and the machine body (1) where the internal parts are fixed, such as fixing the water syringes 1 (15.1), the rail lines fixing the middle tank (12) and the lower tank (13) and the slide roller and fixing their rising and falling movements.
7. The invention according to claim 1, characterized by large gas springs (8) and a small gas springs (9) and in total: (8 gas springs) and includes: a large gas springs (8) in total (4), distributed evenly and parallel to the four directions of the bottom of the machine (42) under the lower tank (13), plus 4 small gas springs (9); and brake jaws (28) for braking themselves where the automatic brake pedal boxes 1 (30) have large gas springs (8), the automatic brake pedal release box 1 (31) and the rail lines 1 (29), which are part of the inner cylinder piston head, on both sides.
8. The invention according to claim 1, further comprising: steel wire ropes (18), a total of 4 pieces distributed in the four corners, positioned on top of the middle tank (12) and working to raise the middle tank (12) after its landing; two reels fixed to the inner ceiling of the machine body (1) and integrated for steel wire ropes (18), for a total of 8 reels (17); a coil spring (19) fixed to the machine base (42) and tightened with steel wire rope (18); and a solid cylinder (13) fixed to the steel wire rope 20 (18) inside the pipe (45) inside the lower tank (20).
9. The invention according to claim 1, further comprising a concrete machine base (42) under the machine to fix the parts and the machine body.
10. The invention according to claim 1, further comprising a main shaft (10) of the water turbine coming out of the axis of the water turbine (2) can reach four electric generators, two on each side of the water turbine (2) housing, or one on one side of the electric generator, which can install an electric generator on the location of this main shaft, or two electric generators on each side, one and all of them are inside or outside the machine body, depending on the size of the machine or the size and type of the electric generator.
11. The invention according to claim 1, further comprising a water turbine (2) integrated into the system to ensure the movement of machine parts together in the entire machine cycle and five stages to generate kinetic energy in the main shaft of the water turbine (10).
12. The invention according to claim 1, further comprising changing the automatic braking system based on the dynamic movement of the machine is made by laser sensors directed to a certain point on the middle tank (12) and the lower tank (13) to the brake boxes or large gas springs (8) and small gas springs (9) and when these marks reach the direction of the laser beam, a wireless signal is sent to the main control board and read, then the sequence is given to connect electricity to the magnetic brakes, so that the braking process takes place and releasing the brakes is done by the same method.
13. The invention according to claim 1, further comprising oil pressure pipes (57), automatic brake box cables and wires (56), upper tank drain plug release cable (40) and wires, middle tank brake release cable (41), and brake release cable (27) and brake pedal release boxes, which contain mechanical parts, are not required for the brakes of the electromagnetic lock and are characterized by wireless transmission of signals from the laser box to the main control panel or from the main control panel of the electromagnetic brake box.
14. The invention according to claim 1, wherein the system does not contain a battery that is constantly charged by kinetic energy.
15. The invention according to claim 1, wherein the middle tank (12) which contains the main control panel that allows it to work again and a box with an automatic system to control the manual brake system.
16. The invention according to claim 1, wherein, when it is full, an electrical signal is sent to the control panel and a signal command is given to the control panel. It is characterized by containing the middle tank (12) with an automatic control box to brake the machine and stop its movement.
17. The invention according to claim 1, wherein when the battery is discharged and reaches 19%, the operation of the machine should continue with the same technique mentioned above, and the second version, in addition to automatic braking systems based on the dynamic movement of the machine, in addition to replacing it with electromagnetic braking, as another version of the aforementioned second version, and the addition of a fast-charging battery, here, in this version October, the replacement of large gas springs (8) and small gas springs (9) with hydraulic lifting cylinders to raise the lower tank (13) is characterized by the removal of electricity from the pre-charged battery before starting the machine.
18. The invention according to claim 1, wherein, in order for the battery to be constantly charged and the battery never to run out, the hydraulic lifting cylinders lift the lower tank (13) in only one stage of the five stages of the machine cycle, which is the fourth stage, and these hydraulic lifting cylinders consume a small amount of electricity and are characterized by rapid and continuous charging of the battery.
19. The invention according to claim 1, wherein, in the event of a malfunction of the machine, the electric generator in the machine feeds the hydraulic lifting cylinders with electricity and starts the operation of the machine and the electric generator.
Description
DESCRIPTION OF THE FIGURES
[0010] The invention will be described with reference to the accompanying figures, so that the features of the invention will be more clearly understood and appreciated, but the purpose of this is not to limit the invention to these certain regulations. On the contrary, it is intended to cover all alternatives, changes and equivalences that can be included in the area of the invention defined by the accompanying claims. The details shown should be understood that they are shown only for the purpose of describing the preferred embodiments of the present invention and are presented in order to provide the most convenient and easily understandable description of both the shaping of methods and the rules and conceptual features of the invention. In these drawings.
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[0033] The figures to help understand the present invention are numbered as indicated in the attached image and are given below along with their names.
LIST OF REFERENCE ELEMENTS
[0034] Machine structure [0035] Water turbine [0036] Water pipe [0037] Spiral spring water tube [0038] Drain stopper of the upper tank [0039] Drain stopper of the middle tank [0040] Pistons of the large gas springs [0041] The large gas springs [0042] The small gas springs [0043] The main shaft of the water turbine [0044] The upper tank [0045] The middle tank [0046] The lower tank [0047] Coil springs 1 [0048] Coil springs 2 [0049] Coil springs 3 [0050] Water syringe 1 [0051] Water syringe 2 [0052] Water syringe 3 [0053] Suction Valve 1 [0054] Suction Valve 2 [0055] Suction Valve 3 [0056] Outlet Valve 1 [0057] Outlet Valve 2 [0058] Outlet Valve 3 [0059] Pulley [0060] The steel wire ropes [0061] Coil springs for steel wires ropes [0062] The solid cylinder [0063] The box arm [0064] Coil spring 1 [0065] Brake pedal [0066] Head of the arm [0067] Key of release the brake pedal lock [0068] Key of the brake pedal return after pressed its [0069] Brake pedal release cable [0070] Brake's jaws [0071] Rail track 1 [0072] The boxes of automatic brake pedals 1 [0073] Brake pedal release box 1 [0074] Brake pedal release box 2 [0075] Brake pedal release box 3 [0076] Brake pedal release box 4 [0077] Manual Brake [0078] The boxes of automatic brake pedals 2 [0079] Rail track 2 [0080] Braking jaws [0081] The oil pressure brakes piston rod [0082] Cable of opening the upper tank drain stopper [0083] Middle tank brake release cable [0084] The base of the machine [0085] A pipe inside the upper tank [0086] A pipe inside the middle tank [0087] A pipe inside the lower tank [0088] Carrying area of the Middle tank [0089] The common oil pressure tube [0090] Longitudinal canal track [0091] The funnel of the upper tank [0092] The funnel of the middle tank [0093] The fixed pistons under the middle tank [0094] The pistons fixed in the base of the machine [0095] The pistons fixed in the machine's structure [0096] The watercourse inside the upper tank [0097] Coil spring 2 [0098] Cables and wires of automatic brake box [0099] Oil pressure tubes [0100] Small pulleys [0101] The brake oil pressure cylinder [0102] The structure of the automatic brake box [0103] Steel beams [0104] Cylindrical iron tube [0105] Solid plastic ball covered with strong rubber [0106] Triangular (internal) coil spring [0107] Direction of water movement [0108] Hole of the one-way valve [0109] Wide slots of cylinder [0110] Layer of reinforced and high-pressure rubber [0111] Layer of a carbon fiber fabric [0112] Layer of a supple plastic cover [0113] Layer of a metal lattice coil spring
DETAILED DESCRIPTION OF THE INVENTION
Part One
[0114] This machine depends in its movement on a self-renewing cycle, as it consists of five phases as follows:
[0115] 1) The first phase: As shown in (
[0116] The middle tank (12) begins to go down compressing with it the large gas springs (8) (
[0117] 2) The second phase: As shown in (
[0118] The drain stopper of the middle tank (6) (
[0119] The coil springs (14.1) (
[0120] 3) The third phase: As shown in (
[0121] Suction water from the lower tank (13) by water syringes (15.1) (
[0122] Suction water from the lower tank (13) by water syringes (15.3) (
[0123] The large gas springs (8) (
[0124] 4) The fourth phase: As shown in (
[0125] When the lower tank (13) (
[0126] 5) The fifth phase: As shown in (
[0127] The drain stopper of the upper tank (5) (
[0128] After the fifth phase of the machine cycle ends, the first phase begins and so on.
Part Two
[0129] Detailed description of the automatic systems in the machine:
[0130] 1) Automatic brake system for the middle tank (12) and the large gas springs (8), by oil pressure:
[0131] First: The middle tank (12) (
[0132] As for the release the brake pedal of the middle tank (23) (
[0133] Second: The system of brake the large gas springs:
[0134] This system relies on two boxes for the braking process, in the first box (30) (
[0135] On both sides of the upper part of the outer cylinder of the large gas springs as in, the brake's jaws (28) (
[0136] As for when the time becomes to release the large gas springs (8) (
[0137] After releasing the brake pedal (23) (
[0138] In this version, the brakes boxes of the large hydraulic lift cylinders aren't needed, because hydraulic lifting cylinders do not need to be braking.
[0139] 2) The automatic system for opening and closing the drain stopper of the upper tank (5) (
[0140] First: the process of opening and closing the drain stopper of the upper tank (5) (
[0141] As for the closing of the drain stopper of the upper tank (5) (
[0142] The drain stopper of the upper tank (5) (
[0143] Second: The process of opening and closing the drain stopper of the middle tank (6) (
[0144] As for the drain stopper of the middle tank (6) (
[0145] 3) The Automatic system for lifting the middle tank (12) (
[0146] As shown in (
[0147] The steel wire rope (18) (
[0148] The process of lifting the middle tank (12) (
[0149] When the lower tank reaches down, the coil spring returns with its original status position (shrunken), and when the lower tank rises again in the fourth phase it does not affect to the steel wire rope, as the coil spring stays in its status position (shrunken).
[0150] As for when the middle tank (12) (
[0151] 4) In addition to the automatic systems, there is a manual braking system (35) (
[0152] The machine can be stop by the manual brakes system (35) (
[0153] The brake system (35) (
[0154] Part Three: Important physical calculations in the principle of machine operation as follows:
[0155] 1) The momentum losing by the gas springs on average is =(20%) from the weight that compressed them, for example: (the gas spring that is compressed by 1000 kg, it can raise 800 kg), and because of the gas springs compression in two phases in the machine's cycle, The (large springs (8) (
[0156] 2) Explain the equation of the distribution of weights in the phases of the machine cycle, which the middle tank (12) (
The First Phase.
[0157] If the weight of the water in the middle tank (12) (
[0158] So: we subtract from the weight 4800 kg, the weight that water syringes (15.1) (
[0159] The (weight 4000 kg), is the weight that must compress the large gas springs (8) (
The Third Phase.
[0160] At the beginning of this phase, the water has been transported from the middle tank (12) (
[0161] But here the small gas springs (9) (
[0162] So: the total of the weight from the momentum gained by the (the large gas springs (8) (
[0163] That's mean: these the large gas springs ((8) (
[0164] As for the rise of the middle water tank (12) (
Finally, the Fourth Phase.
[0165] At the beginning of this phase, the weight that all gas springs ((8) (
[0166] And this result (800 kg) will be distributed to the water syringes (15.3) (
[0167] Always the small quantity of water at the bottom of the lower tank (13) (
[0168] In addition to the simplified first model (