Wave Resistant Dock Assembly
20250179749 ยท 2025-06-05
Inventors
Cpc classification
International classification
Abstract
A wave resistant dock assembly may include a dock frame and a dock body. The upper dock body surface of the dock body may be flat or planar. At least one water discharge gap may be provided in the upper dock body surface. At least one water flow space may be provided in the lower dock body surface of the dock body. The water discharge gap in the upper dock body surface may communicate with the water flow space in the lower dock body surface. The water flow space may converge toward the water discharge gap. Accordingly, under high wave or storm conditions, water may flow from the body of water through the water flow space and discharge through the water discharge gap, eliminating or reducing water pressure against the dock body and reducing damage and premature wear to the dock body.
Claims
1. A wave resistant dock assembly configured for deployment on a body of water and resistant to wave action in the body of water, comprising: a dock frame; a dock body supported by the dock frame, the dock body having an upper dock body surface and a lower dock body surface; at least one water discharge gap in the upper dock body surface; and at least one water flow space in the lower dock body surface, the at least one water discharge gap in the upper dock body surface communicating with the at least one water flow space in the lower dock body surface, the at least one water flow space converging toward the at least one water discharge gap, whereby water is directed to flow from the body of water through the at least one water flow space and discharge through the at least one water discharge gap responsive to wave action in the body of water.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0034] The preferred embodiments of the invention will hereinafter be described in conjunction with the appended drawings provided to illustrate and not to limit the invention, where like designations denote like elements, and in which:
[0035]
[0036]
[0037]
[0038]
[0039] Like reference numerals refer to like parts throughout the several views of the drawings.
DETAILED DESCRIPTION
[0040] The following detailed description is merely exemplary in nature and is not intended to limit the described embodiments or the application and uses of the described embodiments, unless the claims state otherwise. As used herein, the word exemplary or illustrative means serving as an example, instance, or illustration. Any implementation described herein as exemplary or illustrative is not necessarily to be construed as preferred or advantageous over other implementations. All of the implementations described below are exemplary implementations provided to enable persons skilled in the art to make or use the embodiments of the disclosure and are not intended to limit the scope of the disclosure, which is defined by the claims. For purposes of description herein, the terms upper, lower, left, rear, right, front, vertical, horizontal, and derivatives thereof shall relate to the invention as oriented in
[0041] Shown throughout the figures, the present invention is directed toward which may be configured for deployment on a body of water and is resistant to wave action in the body of water, particularly under storm conditions.
[0042] Referring initially to
[0043] In some embodiments, each water discharge gap 130 may have a width of about two centimeters. In other embodiments, each water discharge gap 130 may have a width which is greater than or less than two centimeters.
[0044] In some embodiments, the dock frame 102 may include a pair of spaced-apart side frame members 104. The dock body 120 may be supported by and between the side frame members 104 of the dock frame 102.
[0045] In some embodiments, the dock body 120 of the dock assembly 100 may include a plurality of flexibly interconnected, adjacent dock members 134 disposed between the side frame members 104 of the dock frame 102. The upper dock body surface 122 and the lower dock body surface 124 of the dock body 120 may be formed by the adjacent dock members 134. A plurality of the water discharge gaps 130 may be provided in the upper dock body surface 122 between the adjacent dock members 134. A plurality of the water flow spaces 128 may be provided in the lower dock body surface 124 between the adjacent dock members 134.
[0046] In some embodiments, each side frame member 104 of the dock frame 102 may be elongated with a first side frame member end 106 and a second side frame member end 108. The dock members 134 of the dock body 120 may be generally coextensive with the side frame members 104 from the first side frame member end 106 to the second side frame member end 108 of each side frame member 104.
[0047] As illustrated in
[0048] As illustrated in
[0049] As further illustrated in
[0050] Each dock member 134 of the dock body 120 may have a pair of angled side dock member surfaces 142 which extend from the upper dock member surface 140. Each water flow space 128 may be formed by and between the side dock member surfaces 142 of adjacent ones of the dock members 134 of the dock body 120. In some embodiments, the side dock member surfaces 142 may be disposed at a 45-degree angle with respect to each other. In other embodiments, the side dock member surfaces 142 may be disposed with respect to each other at an angle which is greater or less than 45 degrees.
[0051] A pair of side dock member edges 144 may be formed between the upper dock member surface 140 and the respective side dock member surfaces 142 of each dock member 134. Each water discharge gap 130 may be formed by and between the side dock member edges 144 of adjacent ones of the dock members 134 of the dock body 120.
[0052] As further illustrated in
[0053] As illustrated in
[0054] The frame securing elements 152 of the frame securing structure 150 may include any device, element, or component, or combinations thereof, suitable for the purpose of attaching or securing the adjacent deck members 134 to each other in the deck body 120. For example and without limitation, in some embodiments, each frame securing element 152 may include at least one frame securing rod. In some embodiments, each frame securing element 152 may include at least one frame securing tube. Each rod or tube may be fabricated of a flexible or semiflexible material or materials. In some embodiments, each frame securing element 152 may have a length of 4 inches. In other embodiments, each frame securing element 152 may have a length of greater than or less than 4 inches.
[0055] Each side frame member 104 of the dock frame 102 and each dock member 134 of the dock body 120 may be fabricated of wood, metal, plastic, composite material, or combinations thereof. In some embodiments, the dock assembly 100 may be a fixed dock structure. In other embodiments, the dock assembly 100 may be a floating dock structure.
[0056] In typical application, the dock assembly 100 may be fabricated on the surface of a lake, river, ocean, or other body of water (not illustrated). In embodiments in which the dock assembly 100 is a fixed dock structure, the side frame members 104 of the dock frame 102 may be attached to vertical support posts (not illustrated) which may extend from the bottom of the water body. In some applications, the support posts may be cylindrical. In embodiments in which the dock assembly 100 is a floating dock structure, a buoyant structure or material (not illustrated) may be secured underneath the side frame members 104 of the dock frame 102 and/or the lower dock body surface 124 of the dock body 120.
[0057] As illustrated in
[0058] It will be appreciated by those skilled in the art that the dock body 120 of the wave resistant dock assembly 100 may utilize two interlinked layers which may include a lower layer including the frame securing structure 150 and an upper layer including the dock members 134. Both layers may run parallel to each other and perpendicular to the general direction of a wave front in a body of water. The dock assembly 100 may be designed to be hard mounted above the high tide line, rendering the dock assembly 100 dry and yet within reach of the water surface. The design may minimize the surface area which faces an oncoming wave front while maintaining a safe and comfortable walking surface on top, creating space within the dock structure without hard angles, thus allowing the water 156 to flow through the dock assembly 100 during a storm surge.
[0059] Referring next to
[0060] In the dock assembly 200, the dock members 234 of the dock body 220 may be disposed perpendicular to the side frame members 204 of the dock frame 202. Accordingly, the first dock member end 236 and the second dock member end 238 of each dock member 234 may abut against each corresponding side frame member 204 of the dock frame 202. Application of the dock assembly 200 may be as was heretofore described with respect to application of the dock assembly 100.
[0061] Since many modifications, variations, and changes in detail can be made to the described preferred embodiments of the invention, it is intended that all matters in the foregoing description and shown in the accompanying drawings be interpreted as illustrative and not in a limiting sense. Thus, the scope of the invention should be determined by the appended claims and their legal equivalents.