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US1385166A - Breakwater - Google Patents

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Publication number
US1385166A
US1385166A US312653A US31265319A US1385166A US 1385166 A US1385166 A US 1385166A US 312653 A US312653 A US 312653A US 31265319 A US31265319 A US 31265319A US 1385166 A US1385166 A US 1385166A
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Prior art keywords
floats
breakwater
uprights
loops
water
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US312653A
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Bagnall James Jervis
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    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02BHYDRAULIC ENGINEERING
    • E02B3/00Engineering works in connection with control or use of streams, rivers, coasts, or other marine sites; Sealings or joints for engineering works in general
    • E02B3/04Structures or apparatus for, or methods of, protecting banks, coasts, or harbours
    • E02B3/06Moles; Piers; Quays; Quay walls; Groynes; Breakwaters ; Wave dissipating walls; Quay equipment
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A10/00TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE at coastal zones; at river basins
    • Y02A10/11Hard structures, e.g. dams, dykes or breakwaters

Definitions

  • FIG. 7 Inventor J nwlg %FZM Attorney UNITED STATES PATENT OFFICE.
  • This invention relates tobreakwaters and rovides an improved construction particuarly adapted for employment in rivers to prevent erosion of the banks and the like.
  • the invention can also be employed in con nection with harbor and similar works, and in the prevention of the erosion of a shore, by minimizing the action of the breakers and currents.
  • a cable rope or rod is anchored where required across the bottom of a riveror on the sea bed.
  • Attached to said cable rope or rod by pivoting or hinging are a number of upri hts, on the downstream or lee side of w llCh are secured air tight or'other floats.
  • the action of the water on the uprights is to force the latter with the floats in a downward direction, the floats resisting the action, which results in the destructive power or force of the current in that particular spot being transferred to the structure, the uprights and floats being charged with the potential energy transferred from the water.
  • breakwater consists of a support projecting above the water, and floats on the downstream or lee side of the said support, the floats being attached to weighted ropes passing over pulleys in the support. Additional weights can be provided to be picked up as required by the weights on the ropes in obtaimng a balance between the force of the current and the weights.
  • Figure 1 is a diagrammatic view of portion of a river showing the breakwater in position.
  • Fig. 2 is an elevation of the breakwater on a larger scale and Fig. 3 a cross sectional elevation of same.
  • Figs. 4 and 5 are elevations and Specification of Letters Patent.
  • a wire or wires or the like according to the strength that may be required is or are secured at ntervals along the cable rope or rod 1, so as to provide a series of loops 4 (F[1gs. 2 and 4:).
  • prrghts 5 of hollow metal or wood and each with one or more floats 6, secured thereto on the downstream or lee side are flexibly connected to the loops 4, by means of hooks or catches 7 at each side of the lower end of each upright 5, the latter bein of a width equal to or more than the wldth of the floats.
  • the uprights 5 are spaced apart at such d stances as will be most effective in dealing w th the current and are kept in opposition thereto, and being connected at each side to the loops 4 are secured against turning or twisting movements and at the same time providing a yielding resistance a
  • the uprights 5 can be attached directly to thc cable, rope or rod 1 by the, hooks 7 (1 1g. 5), ferrules 18 being used to keep the uprlghts and the hook the required distances apart.
  • the cable rope or rod 1 is shown in Figs. 2 and 3 some distance above the river bottom or sea bed 2. This is for the purpose of allowing an uninterrupted flow of water below the breakwater, to prevent silt being deposited about the latter.
  • a row of piles 8 or other support is placed in the desired position, the piles or support having pulleys 9 mounted thereon and over which pass ropes or cables 10.
  • each rope or cable 10 is fastened to a float 11 on the downstream or lee side of the support, and the other end has attached thereto a weight 12.
  • Other weights 13 are conveniently supported directly over the weight 12 so as to be capable of being lifted thereby as the latter is raised and left when the weight 12 descends, and thereby giving automatically the resistance.
  • the action of the current on the float 11 is to forcethe latter downstream, and raise theweight 12, until a balance between the force otthe current andthe weights 12 and 13 is obtained, the weights 13 being picked up one by one as required bythe weight 12 as the latter rises.
  • the floats 6 can be secured to the uprights 5 either aS fixtures or so as to be capable of adjustment on same.
  • loops 22 are equally spaced on the downstream side of the uprights 5 (Figs. 2 and 3) and the requisite number of floats 6 may be slid in the loops, cross bars or wires 23 being used to retain the floats in the loops 6.
  • floats 14 are hinged or pivotally connected at'15 to-the uprights 5 on the downstream or'lee side of the latter, chains 16 attached to the float being secured to the uprights 5 above or belowthe floats, as desired.
  • Any number of breakwaters constructed as described can be employed one behind the other.
  • a screen 20 attached to piles 21 (Figs. 1 and 8 and set at an angle to the breakwater n the upstream or exposed side as shown can be employed to divert floating debris and prevent the latter coming in contact with and injuring the breakwater.
  • a breakwater of thecharacter described comprising an anchoring element adapted for arrangement at the bottom of a body of water, spaced loops carried by the anchoring element, a plurality of rigid uprights, spaced hooks carried by each upright and engaged with one of the loops forming a flexible connection between said loop and upright, and floats secured to the down stream side of said uprights.
  • an anchoring element adapted for arrangement adjacent the bottom of a body of water, a plurality of upri hts, flexible joints connecting the uprights to the anchoring elements and maintaining said uprights in spaced relation to the bottom of the body of water to provide a passage for the flow of water thereunder, loops carried by the upper portions of the uprights and floats carried by said loops.
  • a breakwater of the character described comprising an anchoring element adapted for arrangement at the bottom of a body of water, uprights flexibly connected at their lower ends to said anchoring element, floats carried by the down stream portions of the uprights, and a screen arranged on the up stream side of the breakwater and disposed in angular relation thereto.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Environmental & Geological Engineering (AREA)
  • Ocean & Marine Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Revetment (AREA)

Description

l. BAGNALL.
BREAKWATER.
nrucmou FILED JULY 23. 1919.
Patnted July 19, 1921.
EEG
FIG. 7 Inventor J nwlg %FZM Attorney UNITED STATES PATENT OFFICE.
JAMES mnvxs BAGNALL, or DAYS BAY, WELLINGTON, NEW ZEALAND BREAKWATER.
To all whom it ma concern:
Be it known that ,JAMES J ERVIS BAGNALL, a citizen of the Dominion of New Zealand, and residing at Kotari Road, Days Bay Wellington, in the Provincial District of Wellington, a subject of the King of Great Britain and Ireland, have invented certain new and useful Improvements in an Improved. Breakwater, of which the following 18 a specification.
This invention relates tobreakwaters and rovides an improved construction particuarly adapted for employment in rivers to prevent erosion of the banks and the like.
The invention can also be employed in con nection with harbor and similar works, and in the prevention of the erosion of a shore, by minimizing the action of the breakers and currents.
. According to the invention, a cable rope or rod is anchored where required across the bottom of a riveror on the sea bed.
Attached to said cable rope or rod by pivoting or hinging are a number of upri hts, on the downstream or lee side of w llCh are secured air tight or'other floats.
The action of the water on the uprights is to force the latter with the floats in a downward direction, the floats resisting the action, which results in the destructive power or force of the current in that particular spot being transferred to the structure, the uprights and floats being charged with the potential energy transferred from the water.
Another form of breakwater consists of a support projecting above the water, and floats on the downstream or lee side of the said support, the floats being attached to weighted ropes passing over pulleys in the support. Additional weights can be provided to be picked up as required by the weights on the ropes in obtaimng a balance between the force of the current and the weights.
Referring to the drawings in conjunction with which the invention will be more particularly described Figure 1 is a diagrammatic view of portion of a river showing the breakwater in position.
Fig. 2 is an elevation of the breakwater on a larger scale and Fig. 3 a cross sectional elevation of same.
Figs. 4 and 5 are elevations and Specification of Letters Patent.
Patented July 19, 1921.
Application filed July 23, 1919. Serial No. 812,653.
g gs; iilndt'i pnd views of modifications. 1g. 1 us ra es a screen the breakwater. for Protectmg In the drawing 1 represents or rod anchored at sea bed 2 piles 3.
A wire or wires or the like according to the strength that may be required is or are secured at ntervals along the cable rope or rod 1, so as to provide a series of loops 4 (F[1gs. 2 and 4:).
prrghts 5 of hollow metal or wood and each with one or more floats 6, secured thereto on the downstream or lee side are flexibly connected to the loops 4, by means of hooks or catches 7 at each side of the lower end of each upright 5, the latter bein of a width equal to or more than the wldth of the floats.
The uprights 5 are spaced apart at such d stances as will be most effective in dealing w th the current and are kept in opposition thereto, and being connected at each side to the loops 4 are secured against turning or twisting movements and at the same time providing a yielding resistance a The uprights 5 can be attached directly to thc cable, rope or rod 1 by the, hooks 7 (1 1g. 5), ferrules 18 being used to keep the uprlghts and the hook the required distances apart.
The cable rope or rod 1 is shown in Figs. 2 and 3 some distance above the river bottom or sea bed 2. This is for the purpose of allowing an uninterrupted flow of water below the breakwater, to prevent silt being deposited about the latter.
The same object can be obtained when the cable rope or rod 1 is anchored close to the bottom or bed 2 by providing a space 19 (Fig. 4:) below each upright 5 for the passage of water.
The force of the current striking the uprights 5, causes the latter to be forced down- Ward, the floats resisting the action which results in the destructive power or force of the current being transferred to the uprights and the floats.
Referring to Fig. 6, a row of piles 8 or other support is placed in the desired position, the piles or support having pulleys 9 mounted thereon and over which pass ropes or cables 10.
One end of each rope or cable 10 is fastened to a float 11 on the downstream or lee side of the support, and the other end has attached thereto a weight 12. Other weights 13 are conveniently supported directly over the weight 12 so as to be capable of being lifted thereby as the latter is raised and left when the weight 12 descends, and thereby giving automatically the resistance.
The action of the current on the float 11 is to forcethe latter downstream, and raise theweight 12, until a balance between the force otthe current andthe weights 12 and 13 is obtained, the weights 13 being picked up one by one as required bythe weight 12 as the latter rises.
' The floats 6 can be secured to the uprights 5 either aS fixtures or so as to be capable of adjustment on same. In the latter case loops 22 are equally spaced on the downstream side of the uprights 5 (Figs. 2 and 3) and the requisite number of floats 6 may be slid in the loops, cross bars or wires 23 being used to retain the floats in the loops 6.
When the floats rest one on the other cross bars 23 are only required one at the top and one at the bottom of each upright, but when the floats are spaced a cross bar 23 is necessary above and below each float G. In the construction illustrated in Fig. 7, floats 14 are hinged or pivotally connected at'15 to-the uprights 5 on the downstream or'lee side of the latter, chains 16 attached to the float being secured to the uprights 5 above or belowthe floats, as desired. Any number of breakwaters constructed as described can be employed one behind the other. A screen 20 attached to piles 21 (Figs. 1 and 8 and set at an angle to the breakwater n the upstream or exposed side as shown can be employed to divert floating debris and prevent the latter coming in contact with and injuring the breakwater.
What I claim and desire to secure by Let ters Patent of the United States is 1. A breakwater of thecharacter described comprising an anchoring element adapted for arrangement at the bottom of a body of water, spaced loops carried by the anchoring element, a plurality of rigid uprights, spaced hooks carried by each upright and engaged with one of the loops forming a flexible connection between said loop and upright, and floats secured to the down stream side of said uprights.
2. In a breakwater of the character described, an anchoring element adapted for arrangement adjacent the bottom of a body of water, a plurality of upri hts, flexible joints connecting the uprights to the anchoring elements and maintaining said uprights in spaced relation to the bottom of the body of water to provide a passage for the flow of water thereunder, loops carried by the upper portions of the uprights and floats carried by said loops.
3. A breakwater of the character described comprising an anchoring element adapted for arrangement at the bottom of a body of water, uprights flexibly connected at their lower ends to said anchoring element, floats carried by the down stream portions of the uprights, and a screen arranged on the up stream side of the breakwater and disposed in angular relation thereto.
In testimony whereof I have signed my name to this specification in the presence of two witnesses.
JAMES J ERVIS BAG NALL.
Witnesses:
E. S. BALDWIN, P. S BYRNE.
US312653A 1919-07-23 1919-07-23 Breakwater Expired - Lifetime US1385166A (en)

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2662378A (en) * 1949-08-06 1953-12-15 Harry A Schmitt Art of shore protection
US2928250A (en) * 1956-02-15 1960-03-15 Alonzo L Smith Breakwater barriers or structures
US3022632A (en) * 1955-10-31 1962-02-27 Jersey Prod Res Co Breakwater
US3029606A (en) * 1957-10-25 1962-04-17 Horace W Olsen Means for protecting marine structures against the effect of waves
FR2556379A1 (en) * 1983-12-08 1985-06-14 Ouest Travaux Publics Method for forming an anti-swell device and device related thereto
US20150259869A1 (en) * 2014-03-14 2015-09-17 Innovation And Development Llc Modular submergible breakwater for lowering water wave kinetic energy especially during storms or rough waters

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2662378A (en) * 1949-08-06 1953-12-15 Harry A Schmitt Art of shore protection
US3022632A (en) * 1955-10-31 1962-02-27 Jersey Prod Res Co Breakwater
US2928250A (en) * 1956-02-15 1960-03-15 Alonzo L Smith Breakwater barriers or structures
US3029606A (en) * 1957-10-25 1962-04-17 Horace W Olsen Means for protecting marine structures against the effect of waves
FR2556379A1 (en) * 1983-12-08 1985-06-14 Ouest Travaux Publics Method for forming an anti-swell device and device related thereto
US20150259869A1 (en) * 2014-03-14 2015-09-17 Innovation And Development Llc Modular submergible breakwater for lowering water wave kinetic energy especially during storms or rough waters
US9410300B2 (en) * 2014-03-14 2016-08-09 Innovation And Development Llc Modular submergible breakwater for lowering water wave kinetic energy especially during storms or rough waters

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