Process and related apparatus for repairing aquatic propeller scars
A process and apparatus for planting aquatic plants underwater on the bottom of estuaries in propeller scars and for encouraging plant growth in propeller scars. Aquatic plant shoots are transplanted by positioning shoots in a sediment tube which is in turn placed in the propeller scar. When the sediment tube is placed in the propeller scar the sea grass shoots are held in position for an extended period of time to allow the sea grass shoots to take root on the estuary bottom. The sediment tubes may be preformed or they may be formed just prior to their placement in the estuary. A watercraft may be used to position the sediment tubes with and without sea grass shoots over an area of the propeller scar. With the process and apparatus of this invention, sea grass plants can be replanted on the bottom of an estuary and new plant growth encouraged in propeller scars. Further in accordance with another embodiment of this invention a tube or other obstruction without plant shoots is placed in a propeller scar in order to impede water flow through the propeller scar. When water flow through the propeller scar is impeded natural plant growth is encouraged.
This application is a continuation in part application of application Ser. No. 09/573,724 filed May 18, 2000.
BACKGROUND OF THE INVENTIONThis invention is concerned with a process and related apparatus whereby aquatic propeller scars may be repaired underwater for purposes of restoration. The restoration of all aspects of the environment has become extremely important in recent years. The three areas of restoration which are of primary import are reducing air pollution, restoring and cleaning up the land and cleaning up and restoring our waterways, the ocean and related estuaries. It is these related estuaries that are the primary thrust of the subject invention.
As a result of the decrease in water quality, millions of acres of aquatic plant life, which form an important part of the aquatic Eco system, have been destroyed. While the restoration of aquatic plant life is difficult, it is possible, for example see the process and apparatus of application Ser. No. 09/104,681 filed Jun. 25, 1998 now U.S. Pat. No. 6,070,537 and application Ser. No. 09/573,724 filed May 18, 2000. While the process of this U.S. Pat. No. 6,070,537 is well suited to the planting of large underwater areas it is not particularly suited to the replanting of propeller scars. Propeller scars are areas that have been striped of aquatic plant life, as a result of the propeller of the moving boat inadvertently being allowed to come into contact with the estuary bottom, thereby leaving a semicircular trench on the bottom of estuary.
Because aquatic plant life is an important part of the complex aquatic environment, the restoration of the total estuary bottom is important including propeller scars.
The natural restoration of aquatic life, in propeller scars is an extremely slow process. While it is possible to manually plant shoots of aquatic plants, in propeller scars this process is extremely slow and expensive. Due to the cost of labor, the manual planting of sea grass plants has at best been marginally successful. Further due to the peculiar nature of propeller scars manual planting is often unsuccessful. Also because propeller scars are widely dispersed the cost of manually planting just one propeller scar in an estuary can be prohibitive. Likewise manual planting in some instances is of questionable success as the person doing the planting, in walking over the bottom of an estuary, does further damage by crushing other plants which may be growing in the area.
This invention is concerned with a process and apparatus whereby sea grass can be restored and quickly planted in an economical fashion in a propeller scar or the propeller scar can be filled in such a manner that the re-colonization of sea grass is encouraged.
As used in connection with this invention, the term aquatic plant life and sea grass includes many species of plant life such as halodule wrightii (shoal grass), thalassia (turtle grass), etc. The process and apparatus of this invention is particularly suited to the planting of thalossia sea grass in propeller scars and the re-colonization of sea grass in these propeller scars.
Aquatic plant life as it exists in estuaries is important in preventing water pollution as this plant life acts as a filter for many pollutants and hence, this plant life helps to maintain water quality. Therefore it is important that the maximum area be covered with aquatic plants including those areas that have been denuded of plant life by the contact of a marine propeller with the estuary bottom.
The restoration of aquatic life to the bottom of our estuaries is extremely important as this aquatic plant life plays a critical function in the total marine Eco system. A large number of important marine animals, both warm and cold blooded, rely totally or in part on aquatic plants as a breeding area, for cover, for food, etc. For example, the endangered manatee relies solely on sea grass as its food source and sea turtles rely on sea grass for part of their diet.
OBJECT OF THE INVENTIONThe primary object of this invention is a process whereby aquatic plant life may be and planted or restored in propeller scars which are located in the bottom of an estuary.
A further object of this invention is a process whereby a propeller scar can be filled in such a manner as to encourage the re-growth of sea grass.
DESCRIPTION OF THE DRAWINGS
The subject invention relates to a process and apparatus for planting aquatic plants, and for encouraging aquatic plant growth in scars such as propeller scars.
Referring to
In most instances propeller scars are the result of the inadvertent action of a boater. As is discussed above sea grass is an important part of the Eco system. In addition sea grass is beneficial in that it provides refuge and cover for small fish and other aquatic life, which in turn attracts larger fish. The presence of these larger fish is the start of the propeller scar problem as these large fish attract sport and commercial fisherman. These fisherman either as a result of their carelessness or enthusiasm sometimes let their boats enter water which is too shallow for the boat in question. Further this positioning of the boat in water which is too shallow often results from changing water levels i.e. a falling tide. When a boat is in water which is too shallow the propeller often comes into contact with the estuary bottom. When estuary bottom 4 is sandy it is possible for a boat to move forward even if the propeller is in contact with estuary bottom 4. Regretfully this careless action of the boater causes the propeller to plow the estuary bottom 4 such that a propeller scar 2 is formed.
The subject invention has two embodiments, the first embodiment relates to the placement of a sediment tube into the propeller scar in order to facilitate the reintroduction of sea grass into the propeller scar. The sediment tube in this instance incorporates shoots of an appropriate aquatic plant.
The second embodiment relates to the interpretation of the natural flow of water in a propeller scar in such a manner that native aquatic plants can root in the propeller scar.
As to the first embodiment of this invention referring to
Plant shoots 8 are then placed in the preformed sediment tube 10 at station 42 this placement may be either manual or automated.
Referring back to
The above discussion and drawings show the placement of a plurality of plant shoots 8 in sediment tube 10. In the second embodiment of this invention plant shoots 8 may be omitted from sediment tube 10. In this embodiment tube 11 without plant shoots 8 is placed in propeller scar 2 in order to stabilize and fill propeller scar 2. Once this propeller scar is filled and stabilized natural re-colonization of sea grass will occur from either side of the propeller scar.
As to this second embodiment of this invention, it can be seen from
Referring to
Baffles 13 can be formed from any convenient material such as plastics, metals fibers or wood. In the case of plastic baffles the polymer utilized can be biodegradable an can be designed to disintegrate in a set period of time i.e. 12 months.
In the case of metals baffle 13 can be designed to corrode away in a set period of time i.e. a ferrous metal baffle which will rust away in 12 months.
Further it is understood that baffle 13 can assume any convenient shape an can incorporate legs to facilitate its placement in propeller scar 12. The means whereby the water flow through the propeller scar may be impeded can assume other forms. For example as is shown in
Further as is shown in
Brick 19 may be formed from clay which is fired in such a manner that it will disintegrate over a predetermined period of time in an aqueous environment. That is because brick 19 is not completely fired it tends to disintegrate when exposed to water for an extended period of time. The degree to which brick 19 is fired controls the rate of disintegration of brick 19.
A series of baffles 13 can be placed along propeller scar 2 at distances of from 1 to 6 feet apart.
As can be seen in
In the illustrated instance the joining means are loops 63 on the terminal ends of tube 11. Via these loops a series of tubes 11 may be joined together i.e. by tying the loops together or by placing a pin through overlapping loops.
Referring to
The material from which tubes 10 and 11 are formed may be in brightly colored in order to facilitate present and future placement and location of the planting sock. These observations are useful in determining the effectiveness of the overall restoration.
Tubes 10 and 11 for use in accordance with this invention for most applications should be 6 to 12 inches in diameter. Smaller diameter tubes are usually used for the propeller scars from pleasure craft whereas the larger diameter tubes are useful in conjunction with propeller scars from commercial craft. Tubes 10 and 11 are usually 3 to 20 ft. long and the length of the sediment tube is at least ten times the diameter of the tube. A more preferred range is that the length is 10 to 30 times the diameter of the sediment tube.
As is discussed above sediment tubes 10 and 11 are filled with a medium which is conducive to plant growth. While it is preferred that sediment tubes 10 and 11 be filled with sand these tubes can be filled with other media such as cement, slag, gravel, stones, rocks, clay etc.
While the above description relates primarily to propeller scars it is understood by one skilled in the art that scars in an estuary bottom can be created by other than the contact of a propeller with the estuary bottom. For example a scar can be created by the keel or rudder of a boat coming into contact with the estuary bottom or by something being dragged across the estuary bottom.
Further the above description relates to the use of various types of apparatus for the placement of the sediment tube in the scar. It is understood that the sediment tubes and the other disclosed devices can be manually placed in the scar without the need for specialized apparatus.
The above description and drawings are illustrative of modifications that can be made without departing from the present invention, the scope of which is to be limited only by the following claims.
Claims
1. A process for planting aquatic plants in a propeller scar which comprises placing an elongated sediment tube in the propeller scar, wherein said sediment tube incorporates a growing medium and has a plurality of sea grass shoots protruding therefrom.
2. A process for planting aquatic plants underwater into a propeller scar which comprises the steps of;
- a. forming a sediment tube which has a plurality of sea grass shoots protruding therefrom,
- b. positioning said sediment tube in a suitable apparatus for causing said sediment tube sock to be placed in the propeller scar, wherein said sediment tube is adapted to disintegrate in a predetermined period of time.
3. The process of claim 1 wherein the sediment tube is filled with a medium which is conducive of aquatic plant growth and wherein the sediment tube disintegrates as a result of the aquatic environment.
4. The process of claim 2 wherein the sediment tube is filled with a medium which is conducive to aquatic plant growth and wherein the planting sock disintegrates as a result of the aquatic environment.
5. The process of claim 1 wherein the sediment tube is filled with a mixture of sand and fertilizer.
6. The process of claim 2 wherein the sediment tube is filled with a mixture of sand and fertilizer.
7. A process for encouraging the growth of aquatic plants in a propeller scar which comprises placing an obstruction in the propeller scar, wherein said obstruction impedes the flow of water through the propeller scar thereby allow native aquatic plants to root in the propeller scar.
8. A process for encouraging the growth of aquatic plants underwater in a propeller scar which comprises the steps of:
- a. forming a sediment tube which is filled with a growth medium,
- b. positioning said sediment tube in a propeller scar, wherein said sediment tube is adapted to impede the flow of water in the propeller scar and is adapted to disintegrate in a predetermined period of time.
9. The process of claim 7 wherein the obstruction is a baffle which is positioned transverse to the propeller scar and the baffle disintegrates as a result of the aquatic environment.
10. The process of claim 8 wherein the sediment tube is filled with a medium which is conducive to aquatic plant growth and wherein the tube disintegrates as a result of the aquatic environment.
11. The process of claim 8 wherein the tube is filled with a mixture of sand and fertilizer.
12. The process of claim 2 wherein the terminal ends of the sediment tube incorporate means wherein a plurality of tubes can be attached to each other.
13. A tube which is useful in the restoration of sea grass comprising an elongated structure which is formed from a biodegradable flexible material which is filled with sand wherein the length of the tube is at least 10 times the diameter of the tube.
14. The tube of claim 13 wherein the length of the tube is between 10 and 30 times the diameter of the tube.
15. The tube of claim 13 wherein the tube further incorporates a plurality of sea grass shoots.
16. The planting tube of claim 14 wherein the tube further incorporates a plurality of sea grass shoots.
17. A process for manufacturing a tube which is useful in the restoration of sea grass which comprises the steps of:
- a. forming an elongated support which has an elongated slot along the outer axis thereof,
- b. placing an elongated sheet of a biodegradable material on the inside of said support, such that the transverse edges of the elongated sheet are approximate the elongated slot,
- c. filling the elongated sheet contained in the support with a growth medium.
18. The process of claim 17 wherein a plurality of plant shoots are then placed in the formed tube.
19. The process of claim 7 wherein the obstruction is a brick which placed transverse across the propeller scar.
20. The process of claim 19 wherein the brick is adapted to disintegrate over a predetermined period of time.
Type: Application
Filed: Oct 23, 2002
Publication Date: Feb 17, 2005
Inventor: James Anderson (Ruskin, FL)
Application Number: 10/278,219