IP Library Granted Patent US 9,797,366
Granted Patent B2
US 9,797,366 · App. 14/357,328 · Granted Oct 24, 2017

Pumped-storage power plant

Inventors: Horst Schmidt-Boecking (Kelkheim-Ruppertshain, DE); Gerhard Luther (Saarbruecken, DE)
Assignee: Roentdek-Handels
F03B13/10F03B3/10F03B13/06F03D9/14Y02E10/20Y02E10/22Y02E10/223Y02E10/32Y02E10/72Y02E60/17
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Quick Facts
Patent No.
US 9,797,366
App. No.
14/357,328
Granted
Oct 24, 2017
Kind
B2
Abstract

An underwater pumped storage power plant that includes: an accumulator system with pressure vessels fillable with water and; a water outlet for water flow out of the system into a surrounding ocean against hydrostatic water pressure (PT) corresponding to water depth (T); a pump at the water outlet to pump water out of the system by converting electrical energy into potential energy corresponding to a displaced water column PT; a water inlet to allow water flow into the system from the surrounding ocean; a common generator at the water inlet, to convert the potential energy back into electrical energy when water flows in; electric lines to transport the electrical energy from the ocean surface to the power plant and back, wherein the pressure vessels are pressure-resistant and resistant to deformation from the PT at the ocean floor.

Claims (30)

1. Underwater pumped storage power plant for temporary reversible storage of electrical energy from other power plants, comprising:

an accumulator system having at least two pressure vessels,

a water outlet to allow water to flow out of the accumulator system directly into the surrounding ocean against the hydrostatic water pressure corresponding to the water depth,

a pump located at the water outlet to pump water out of the accumulator system into the surrounding ocean, wherein the pump converts electrical energy into the potential energy corresponding to the displaced water column when pumping the water out against the hydrostatic water pressure of the surrounding ocean,

a water inlet to allow water to flow into the accumulator system directly from the surrounding ocean with the hydrostatic water pressure corresponding to the water depth,

a common generator located at the water inlet, wherein the common generator converts the potential energy of the previously displaced water column back into electrical energy when the water flows in with the hydrostatic water pressure corresponding to the water depth,

a base body for accommodating the at least two pressure vessels, the pump, and the common generator,

electric lines to transport the electrical energy from the ocean surface to the underwater pumped storage power plant and back,

wherein the pressure vessels are pressure resistant such that the pressure vessels can be pumped empty by the pump and be resistant to deformation from the hydrostatic water pressure at the ocean floor,

wherein the pressure vessels are connected to one another by a sump constituting the lowest or at least one of the lowest points of the accumulator system, and wherein the water outlet is located at the sump, and

wherein the pressure vessels and/or the base body in an emptied state are lighter than water and thus can float on the ocean surface so that the pressure vessels and/or the base body can be brought to the installation site while floating and can be sunk at the installation site;

wherein the pressure vessels can be filled with water and constitute a common accumulator volume, wherein the common accumulator volume comprises the pressure vessels lined up in a row and connected to one another;

wherein the pressure vessels are pipe sections, and wherein the wall thickness of the pipe sections is such that the pipe sections withstand the water pressure at the ocean floor;

wherein the pressure vessels are internal pressure vessel elements, and wherein an integrated accumulator complex is made of closely packed pressure vessel elements in the form of pipes, and the hollow spaces between the pipes are filled with a filler in order to stabilize the integrated accumulator complex and to weight the accumulator system.

2. Underwater pumped storage power plant according to claim 1 , wherein the base body connects the accommodated pressure vessels to the pump through an integral main passage in the interior of the base body so that the pressure vessels are connected to one another through the base body, and the pressure vessels form a common pressure vessel volume connected through the base body.

3. Underwater pumped storage power plant according to claim 2 , wherein the base body has feet for stable and secure support of the base body on the ocean floor.

4. Underwater pumped storage power plant according to claim 2 , wherein at least one of the pressure vessels or the base body have hollow spaces for filling with weighting material.

5. Underwater pumped storage power plant according to claim 2 , wherein at least one of the pressure vessels or the base body have an internal supporting framework for additional reinforcement.

6. Method for manufacturing an underwater pumped storage power plant for reversible storage of electrical energy from other power plants, wherein the power plant includes a base body, an accumulator system having at least two pressure vessels, a water outlet to allow water to flow out of the accumulator system directly into the surrounding ocean against the hydrostatic water pressure corresponding to the water depth, a pump accommodated by the base body and located at the water outlet to pump water out of the accumulator system into the surrounding ocean, wherein the pump converts electrical energy into potential energy corresponding to a displaced water column when pumping the water out against the hydrostatic water pressure of the surrounding ocean, a water inlet to allow water to flow into the accumulator system directly from the surrounding ocean with the hydrostatic water pressure corresponding to the water depth, and a common generator accommodated by the base body and located at the water inlet, wherein the common generator converts the potential energy of the displaced water column back into electrical energy when the water flows in with the hydrostatic water pressure corresponding to the water depth, and wherein the method comprises the steps of:

manufacturing the base body in a dock or a harbor,

placing, in the dock or harbor, the pressure vessels onto the base body,

connecting the pressure vessels with each other and with the common generator in a communicating manner through the base body,

transporting the underwater pumped storage power plant in a floating manner to a place, where the underwater pumped storage power plant is to be sunk, and

increasing the mass of the underwater pumped storage power plant sufficiently by pouring at least one of base weight, bulk material or ballast water into at least one of the base body or the pressure vessels, such that the mass of the underwater pumped storage power plant becomes greater than the mass of the displaced water and that the underwater pumped storage power plant sinks.

7. Method according to claim 6 , further comprising the step of bringing back at least one of the pressure vessels or the base body to the surface of the water for maintenance purposes.

8. Underwater pumped storage power plant manufactured by the method of claim 6 .

9. Power supply network comprising:

a plurality of primary power plants that produce fluctuating electrical energy over time,

at least one underwater pumped storage power plant manufactured by the method of claim 6 , and

a network of electric lines connectable between consumers of electrical energy, the at least one underwater pumped storage power plant, and the primary power plants so that when there is an energy surplus from the primary power plants, the electrical energy generated by the primary power plants is temporarily reversibly stored by the at least one underwater pumped storage power plant, and at times of high demand, the electrical energy is recovered, and the recovered electrical energy can be supplied to the consumers.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 12, 2014
From: SCHMIDT-BOECKING, HORST; LUTHER, GERHARD
To: ROENTDEK-HANDELS GMBH
Reel/Frame 033514/0346 →
Priority Claims (1)
DE 10 2011 118 206 · Nov 11, 2011 · national
Continuity (1)
Related Publication 20150361948A1 · Dec 17, 2015