EP2015985A2 – Heave Plate With Improved Characteristics – Google Patents

Hidrocolector - Fisioterapia Oeiras The sixth-restraining component is a hexagonal outer-casing 22 which takes the form of an extruded hexagon and is composed of a rigid material. Electrical energy may be extracted from any component of the embodiments which is flexed, stretched, compressed or twisted during operation of the mechanism, thereby creating physical strains within the material of the mechanism. 11. Apparatus comprising: a platform extending in a plane parallel to and above the surface of a body of water; a spar-like element intended to extend vertically, generally perpendicular to the platform and the surface of the body of water, said spar-like element extending below the surface of the body of water; and a heave plate connected to a submerged portion of the spar-like element, said heave plate having a pair of oppositely facing surfaces extending transversely to the vertical direction of the movement of the spar-like element and vertical structures mounted on at least one of the oppositely facing surfaces for increasing the effective mass of water pushed during movement of the damping plate through the water.

Flekosteel France prix, avis, comment utiliser : produit.. 7. A wave energy converter (WEC) comprising: a float intended to lie along the surface of a body of water and designed to move in-phase with the waves present in the body of water; a spar intended to extend vertically, generally perpendicular to the float and the surface of the body of water, said spar extending below the surface of the body of water and intended to move vertically up and down out-of-phase with the waves; a power take off device (PTO), connected between the spar and the float, responsive to their relative motion to convert the relative motion to useful energy; and a heave plate symmetrically connected to a submerged portion of the spar, said heave plate extending in a plane perpendicular to the spar, said heave plate having a pair of oppositely facing surfaces extending transversely to the vertical direction of the movement of the spar-like element and vertical structures mounted on the oppositely facing surfaces for increasing the effective mass’of water pushed during movement of the damping plate through the water.

Dolor De Espalda

6. The apparatus as claimed in claim 1, further including a platform intended to lie along a plane parallel to the surface of a body of water and wherein said spar-like element is fixedly attached to the platform, extending vertically, generally perpendicular to the platform and wherein the vertical structures on the damping plate impede the movement of the spar-like element and the platform in response to waves in the body of water. 13. Apparatus as claimed in claim 12, wherein the length/height of the vertical structure above the heave plate has the same dimension as the length/height of the vertical structure below the heave plate. 12. Apparatus as claimed in claim 11 wherein the length/height of the vertical structure above the heave plate has a first dimension, and wherein the length/height of the vertical structure below the heave plate has a second dimension.

8. A WEC as claimed in claim 7 wherein the length/height of the vertical structure above the heave plate has a first dimension, and wherein the length/height of the vertical structure below the heave plate has a second dimension. WHAT IS CLAIMED IS: 1. Apparatus including a damping plate attached to the submerged end of a spar-like element floating in a body of water, the spar like element tending to move up and down in a vertical direction in response to passing waves, said damping plate having a pair of oppositely facing surfaces extending transversely to the vertical direction of the movement of the spar-like element and vertical structures mounted on the oppositely facing surfaces for increasing the effective mass of water pushed during movement of the damping plate through the water. 16. Apparatus including a damping plate attached to the submerged end of a spar-like element floating in a liquid, the spar like element tending to move up and down in a vertical direction in response to a force, said damping plate having a pair of oppositely facing surfaces extending transversely to the vertical direction of the movement of the spar-like element and vertical structures mounted on the oppositely facing surfaces for increasing the effective mass of liquid pushed during movement of the damping plate through the liquid.

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5. The apparatus as claimed in claim 1 , further including a float intended to lie along the surface of a body of water and designed to move in-phase with the waves present in the body of water; and wherein said spar-like element is intended to extend vertically, generally perpendicular to the float and the surface of the body of water, said spar-like element extending below the surface of the body of water and intended to move vertically up and down out-of-phase with the waves; and further including a power take off device (PTO)1 connected between the spar-like element and the float, responsive to their relative motion to convert the relative motion to useful energy.

FIGS. 26 A-I illustrate a series of sections cut through the dodecahedral honeycomb at a given position, during one cycle of operation, in accordance with an embodiment of the present invention. This first group consists of a parallel array, an asterisk, a polygonal ring, a dodecahedral honeycomb and an octagonal honeycomb. Thus the crenated strip 3 also serves as the first restraining component.

Further, the open central portions of the dodecahedral tubes 30 that receive the flow of fluid can be closed with a tenth restraining component, such that each dodecahedral tube 30 surrounds a corresponding tenth restraining component. In embodiments containing an axle 90, the axle 90 serves as the fifth restraining component.

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