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  2. Larssen sheet piling - Wikipedia

    en.wikipedia.org/wiki/Larssen_sheet_piling

    Larssen sheet piling was developed in 1906 by Tryggve Larssen, engineer from Bremen (Germany). [ 2 ] [ 3 ] [ 4 ] Its applications include piers , oil terminals , waste storage facilities, shoreline protection, [ 5 ] bridges, houses, buildings, dry docks, other construction sites, and for the strengthening of pond banks, preventing slumping into ...

  3. Cofferdam - Wikipedia

    en.wikipedia.org/wiki/Cofferdam

    In civil and costal engineering applications cofferdams are usually made from interlocking steel sheet piles which are driven deep into the bed of the water source in order to create a temporary dam behind which the engineering contractors can carry out their works.

  4. Deep foundation - Wikipedia

    en.wikipedia.org/wiki/Deep_foundation

    Sheet piles are used to restrain soft soil above the bedrock in this excavation. Sheet piling is a form of driven piling using thin interlocking sheets of steel to obtain a continuous barrier in the ground. The main application of sheet piles is in retaining walls and cofferdams erected to enable permanent works to proceed. Normally, vibrating ...

  5. Permeable reactive barrier - Wikipedia

    en.wikipedia.org/wiki/Permeable_reactive_barrier

    The Moffett Field PRB used a funnel and gate design, with the funnel being composed of interlocking steel sheet piles, while the gate consisted of granular zero-valent iron. The primary contaminants were trichloroethene (TCE), cis-1,2 dichloroethene (cDCE), and perchloroethene (PCE).

  6. Keweenaw Waterway Upper Entrance Light - Wikipedia

    en.wikipedia.org/wiki/Keweenaw_Waterway_Upper...

    The foundation of the lighthouse is circular caisson approximately 50 feet in diameter and 45 feet tall, built of interlocking steel sheet piling, filled with rock, and topped with a concrete deck about 15 feet above the level of the lake.

  7. Island Barn Reservoir - Wikipedia

    en.wikipedia.org/wiki/Island_Barn_Reservoir

    A survey identified three areas of leakage. In 2017 interlocking sheet piling 18.5 m long was driven vertically through the centre of the embankment into the London clay to stop the leakage. [9] Between 1992 and 1998 1.3 million tonnes of gravel were removed from the base of the reservoir. [6]

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  9. Bridge scour - Wikipedia

    en.wikipedia.org/wiki/Bridge_scour

    A number of physical additions to the abutments of bridges can help prevent scour, such as the installation of gabions and stone pitching upstream from the foundation. The addition of sheet piles or interlocking prefabricated concrete blocks can also offer protection.

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