IP Library Granted Patent US 9,732,723
Granted Patent B2
US 9,732,723 · App. 14/768,638 · Granted Aug 15, 2017

Redundant pressure control

Inventor: Per Reidar Orke (Hafrsfjord, NO)
Assignee: ZEROPEX GROUP LIMITED
F03B13/10E03B7/075F01C1/12F01C17/00F03B13/00F03C2/08F03D3/02F04C18/082H02K7/1823H02P9/008E03B1/02F01C13/00F05B2260/845F05B2270/1041Y02E10/74
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Quick Facts
Patent No.
US 9,732,723
App. No.
14/768,638
Granted
Aug 15, 2017
Kind
B2
Abstract

An electricity generating device comprising a housing; a first lobed rotor and a second lobed rotor rotatably arranged in a fluid passage enclosed by the housing such that the lobes of the first and the second lobed rotor intermesh to create a barrier between a high-pressure and a low-pressure side of the housing during operation of the device; a first electricity generator to which the first lobed rotor is coupled, the first electricity generator being capable of varying the load of the first lobed rotor; and a second electricity generator to which the second lobed rotor is coupled, the second electricity generator being capable of varying the load of the second lobed rotor. There is also provided a method of synchronizing rotational positions of a first lobed rotor coupled to a first electricity generator and a second lobed rotor connected to a second electricity generator in a turbine.

Claims (18)

1. An electricity generating device comprising a housing;

a first lobed rotor and a second lobed rotor rotatably arranged in a fluid passage enclosed by the housing such that the lobes of the first and the second lobed rotor intermesh to create a barrier between a high-pressure and a low-pressure side of the housing during operation of the device;

a first electricity generator to which the first lobed rotor is coupled, the first electricity generator being capable of varying the load applied to the first lobed rotor;

a second electricity generator to which the second lobed rotor is coupled, the second electricity generator being capable of varying the load applied to the second lobed rotor;

at least one variable-frequency drive coupled to the first and the second generator; and

at least one controller coupled to the at least one variable-frequency drive and arranged to send a control signal relating to operation of the two lobed rotors to the variable-frequency drive;

wherein a variable-frequency drive and a controller may be one common device and wherein the variable frequency drive(s) is/are connected to an electrical load;

wherein the first generator is coupled to a first variable frequency drive and the second generator is coupled to a second variable-frequency drive and with the variable frequency drives are coupled to a common controller; and

wherein the first variable frequency device comprises a first grid connection and the second variable frequency device comprises a second grid connection such that the first and the second variable frequency device may be independently connected to a power grid.

2. The device according to claim 1 , wherein the variable frequency drive(s) is/are connected to the electrical load via a DC bus arranged between the variable frequency drive(s) and a chopper 40 .

3. The device according to claim 1 , wherein the first and the second generator are coupled to a common variable-frequency drive.

4. The device according to claim 1 , further comprising at least one apparatus, such as an encoder, arranged to read a rotational position of the first and/or the second lobed rotor and, said at least one apparatus being coupled to the at least one controller.

5. The device according to claim 1 wherein the first lobed rotor is arranged on a first shaft coupled to the first electricity generator and the second lobed rotor is arranged on a second shaft coupled to the second electricity generator.

6. A device in a water distribution system for controlling a flow rate or a water pressure upstream and/or downstream of the device and generating electricity from the water flowing through the device, which device comprises:

a housing;

a first lobed rotor and a second lobed rotor rotatably arranged in a fluid passage enclosed by the housing such that the lobes of the first and the second lobed rotor intermesh to create a barrier between a high-pressure and a low-pressure side of the housing during operation of the device;

a first electricity generator to which the first lobed rotor is coupled, the first electricity generator being capable of varying the load applied to the first lobed rotor;

a second electricity generator to which the second lobed rotor is coupled, the second electricity generator being capable of varying the load applied to the second lobed rotor; at least one variable-frequency drive coupled to the first and the second generator; and at least one controller coupled to the at least one variable-frequency drive and arranged to send a control signal relating to operation of the two lobed rotors to the variable-frequency drive, wherein a variable-frequency drive and a controller may be one common device.

Assignments (2)
CHANGE OF NAME Recorded Jun 28, 2017
From: ENERGREEN AS
To: ZEROPEX GROUP LIMITED
Reel/Frame 042851/0440 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 18, 2015
From: ØRKE, PER REIDAR
To: ENERGREEN AS
Reel/Frame 036350/0110 →
Priority Claims (1)
EP 13155653 · Feb 18, 2013 · regional
Continuity (1)
Related Publication 20150377208A1 · Dec 31, 2015