Submarine drive system
10723425 · 2020-07-28
Assignee
Inventors
- Burkhard PINNEKAMP (Augsburg, DE)
- Dietrich Wittekind (Raisdorf, DE)
- Thomas Schmidbauer (München, DE)
- Bernhard Vollmer (Niederaltreich, DE)
- Tobias Kleinheinz (Horgau, DE)
- Franz Hoppe (Stadtbergen, DE)
Cpc classification
B63H2023/245
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A submarine drive system of a submarine, having a drive shaft, a drive propeller coupled to the drive shaft (2), and an electric motor for driving the drive shaft. A main drive having at least one first electric motor is designed for full-load operation and is or can be coupled to the drive shaft on the drive side, and an additional drive having at least one second electric motor is designed for part-load operation for creep operation or submerged operation of the submarine and likewise is or can be coupled to the drive shaft on the drive side.
Claims
1. A submarine drive system comprising: a drive shaft; a drive propeller configured to be coupled to the drive shaft; a main drive comprising at least one first electric machine configured for a full-load operation and configured to be coupled to the drive shaft on a drive side to drive the drive shaft; and an additional drive comprising at least one second electric machine configured for a part-load operation for stealth operation and/or submerged operation of a submarine and is configured to be coupled to the drive shaft on the drive side for driving the drive shaft.
2. The submarine drive system according to claim 1, further comprising: a first transmission configured to indirectly couple each at least one first electric machine to the drive shaft on the drive side.
3. The submarine drive system according to claim 2, wherein each at least one second electric machine is configured to be coupled to one of: directly to the drive shaft on the drive side, indirectly to the drive shaft via the first transmission, or indirectly to the drive shaft via a second transmission.
4. The submarine drive system according to claim 2, wherein each at least one second electric machine is supported on the first transmission and together with each at least one first electric machine and the first transmission are jointly supported on a foundation of the submarine.
5. The submarine drive system according to claim 4, wherein each first electric machine and the first transmission is mounted on a common frame and, via the common frame, jointly supported on the foundation of the submarine.
6. The submarine drive system according to claim 4, wherein each at least one second electric machine supported on the first transmission is configured to be coupled to the drive shaft directly without a step-up stage.
7. The submarine drive system according to claim 4, wherein each at least one second electric machine supported on the first transmission is configured to be coupled to the drive shaft on the drive side via a step-up stage of the first transmission.
8. The submarine drive system according to claim 4, wherein a compensation coupling is connected between an output of the first transmission and a thrust bearing of the drive shaft.
9. The submarine drive system according to claim 3, wherein each at least one second electric machine is supported on a foundation of the submarine either directly or indirectly via the second transmission independently of each at least one first electric machine and independently of the first transmission.
10. The submarine drive system according to claim 9, wherein each at least one second electric machine or the second transmission is connected to the foundation of the submarine via sound-damping elements.
11. The submarine drive system according to claim 9, wherein a compensation coupling is connected between each at least one second electric machine or an output of the second transmission and a thrust bearing of the drive shaft.
12. The submarine drive system according to claim 11, wherein the thrust bearing of the drive shaft is integrated in the first transmission.
13. The submarine drive system according to claim 9, wherein the second transmission comprises an immersion lubrication.
14. The submarine drive system according to claim 1, further comprising: a control configured to activate clutches and electric machines in an automated manner to automatically utilise as a drive source during the full-load operation each at least one first electric machine and during the part-load operation each at least one second electric machine.
15. A submarine drive system comprising: a drive shaft; a drive propeller configured to be coupled to the drive shaft; a main drive comprising at least one first electric machine configured for a full-load operation and configured to be coupled to the drive shaft on a drive side to drive the drive shaft an additional drive comprising at least one second electric machine configured for a part-load operation for stealth operation and/or submerged operation of a submarine and is configured to be coupled to the drive shaft on the drive side for driving the drive shaft; and a first transmission configured to indirectly couple each at least one first electric machine to the drive shaft on the drive side, wherein each at least one second electric machine is supported on the first transmission and together with each at least one first electric machine and the first transmission are jointly supported on a foundation of the submarine, wherein each first electric machine and the first transmission is mounted on a common frame and, via the common frame, jointly supported on the foundation of the submarine, and sound-damping elements via which the common frame is connected to the foundation of the submarine.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Preferred further developments of the invention are obtained from the subclaims and the following description. Exemplary embodiments of the invention are explained in more detail by way of the drawing without being restricted to this. There it shows:
(2)
(3)
(4)
(5)
(6)
DETAILED DESCRIPTION OF THE PRESENTLY PREFERRED EMBODIMENTS
(7)
(8) It is thus an idea of the submarine drive system 1 according to the invention, to provide multiple electric machines 4, 5 for driving the drive shaft 2, namely a first electric machine 4 designed for the full-load operation and a second electric machine 5 designed for the part-load operation for a stealth operation and/or submerged operation, which are operated dependent on the operating state, i.e. dependent on whether a full-load operation or part-load operation is required, and for this purpose are coupled to the drive shaft 2 or decoupled from the same. During the full-load operation the first electric machine 4 is typically coupled to the drive shaft 2 and the second electric machine 5 decoupled from the same. During the part-load operation, the second electric machine 5 is typically coupled to the drive shaft 2 and the second electric machine 4 decoupled from the same.
(9) According to an advantageous further development of the invention it is provided that the first electric machine 4 of the submarine drive system 1 designed for the full-load operation is indirectly coupled via a first transmission 6 to the drive shaft 2 on the drive side. Here, the first transmission 6 comprises gearwheel planes 7, 8 of intermeshing gearwheels, which provide at least one transmission stage.
(10) Accordingly, the first transmission 6 is a step-up transmission, the step-up stages are designed so that the first electric machine 4 can be operated with significantly higher rotational speed than is required for driving the drive propeller 3 and thus the drive shaft 2. Because of this, smaller, lighter and more cost-effective electric machines can be employed for the full-load operation than is possible with submarine drive systems known from practice.
(11) Furthermore, the first transmission 6 comprises a clutch 11, which is preferentially embodied as a synchronised clutch.
(12) The second electric machine 5 designed for the part-load operation and is mounted or supported on the first transmission 6 in the exemplary embodiment of
(13)
(14) In the exemplary embodiment of
(15) As already explained, all exemplary embodiments of
(16) In the exemplary embodiments of
(17) Between the common frame 13 and the foundation 12, elastic sound-damping elements 14 are connected. These are significant in particular when during the part-load operation of the submarine drive system 1, the submarine is operated in stealth operation or submerged operation.
(18) Furthermore, the submarine drive systems 1 of
(19) Submarine drive systems 1 according to a second version of the invention are shown by
(20) Here,
(21) In the embodiment of
(22) From
(23) A further distinction of the exemplary embodiments of
(24) As already explained above, a low-noise operation of the submarine drive system 1 is only important during the part-load operation, in particular during stealth-operation, so that in the exemplary embodiments of
(25) In the exemplary embodiment of
(26) In the exemplary embodiments of
(27) During the full-load operation, the required drive power is provided by the first electric machine 4. For saving size, weight, and costs, the rotational speed of the first electric machine 4 is higher than the required propeller rotational speed, which is why the first transmission 6 is employed with one or more step-up stages. The first electric machine 4 can be switched on and off via the optional clutch or synchronous clutch 11. Torque is directed to the drive propeller 3 in particular via the elastic compensation coupling 16, a shearing force acting on the drive shaft during the operation is transmitted to the hull or the foundation 12 via the axial bearing 15.
(28) During the part-load operation, the required drive power is provided by the second electric machine 5. During stealth and submerged operation, submarines generally require only a minor part of the power.
(29) The second electric machine 5 that is specifically designed for the part-load operation is typically fed from batteries. With regard to the range, the efficiency is of particular importance for the part-load operation. During the part-load operation during stealth and submerged operation, the smaller electric machine 5 is within the range of its rated power and thus has an optimised efficiency, which brings about a greater range.
(30) In the exemplary embodiment of
(31)
(32) The first transmission 6 can advantageously be a tunnel transmission.
(33) In the exemplary embodiment of
(34) Each of the shown exemplary embodiments is advantageously provided with a control, by way of which the automated establishment of the respective desired operating configuration and the monitoring of operation-relevant parameters are made possible.
(35) Accordingly, the control can automatically activate clutches and electric machines in order to automatically utilise the first electric machine 4 during the full-load operation and automatically utilise the second electric machine 5 as drive source during the part-load operation. By way of the control, operating parameters can also be monitored in order to automatically establish the desired operating configuration independently from this and provide the drive power either during the full-load operation via the first electric machine 4 of the main drive or during the part-load operation for a stealth operation and/or submerged operation via the second electric machine 5 of the additional drive.
(36) Thus, while there have shown and described and pointed out fundamental novel features of the invention as applied to a preferred embodiment thereof, it will be understood that various omissions and substitutions and changes in the form and details of the devices illustrated, and in their operation, may be made by those skilled in the art without departing from the spirit of the invention. For example, it is expressly intended that all combinations of those elements and/or method steps which perform substantially the same function in substantially the same way to achieve the same results are within the scope of the invention. Moreover, it should be recognized that structures and/or elements and/or method steps shown and/or described in connection with any disclosed form or embodiment of the invention may be incorporated in any other disclosed or described or suggested form or embodiment as a general matter of design choice. It is the intention, therefore, to be limited only as indicated by the scope of the claims appended hereto.