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    • 2. 发明申请
    • HYDRAULIC NOISE SUPPRESSOR AND METHOD FOR HANDLING A HYDRAULIC NOISE SUPPRESSOR
    • HYDRO消声器和方法用于处理HYDRO消声器
    • WO2015185041A3
    • 2016-02-04
    • PCT/DE2015100391
    • 2015-09-14
    • ELMER KARL-HEINZ
    • ELMER KARL-HEINZ
    • E02D13/00
    • E02D13/005E02D7/02E02D27/525
    • The application relates to a hydraulic noise suppressor (4) for reducing water-borne noise, especially in the area of a construction site when an object (1) is driven into underwater soil (2). Said hydraulic noise suppressor (4) comprises at least two rigid holding elements (11), at least one support structure (5), and noise reducing elements (10) secured to the at least one support structure (5), an upper end (7) of the at least one support structure (5) being secured to at least one of the at least two holding elements (11). The hydraulic noise suppressor (4) can be split along lateral flanks extending between the upper end (7) and a lower end (8) of the at least one support structure (5) located opposite the upper end (7). The invention further relates to a method for handling a hydraulic noise suppressor (4).
    • 本申请涉及用于水听器的减少的液压消声器(4),尤其是在施工现场中的在水下床(2)被引入对象(1),所述水电消声器(4)(至少两个刚性保持元件(11),至少一个支撑结构 5)和固定到所述至少一个支撑结构(5)的声音减少元件(10),其特征在于,上端(7)的至少一个支撑结构(5)附连到所述至少两个保持元件中的至少一个(11),所述水电消声器(4 )沿着所述上端(7)和一个相反(上端7)之间的下端(8)的至少一个支撑结构(5)的延伸侧翼是整除。 本申请还涉及一种用于处理加氢消声器(4)的方法。
    • 3. 发明申请
    • DEVICE FOR DAMPING AND SCATTERING HYDROSOUND IN A LIQUID
    • 用于在液体中蒸发和扩散HYDROSIS的装置
    • WO2009121336A2
    • 2009-10-08
    • PCT/DE2009000413
    • 2009-04-01
    • ELMER KARL-HEINZ
    • ELMER KARL-HEINZ
    • E02B17/00
    • E02B3/062E02B17/0017Y02A10/15
    • The invention relates to a device (3) for damping and scattering hydrosound and wave movements in a liquid, particularly water (8), by means of an envelope body (1) enclosing a gas. The aim of the invention is to provide a device (3) by means of which the transmission and propagation of sound and wave movements in water (8) can be reduced, wherein the device (3) can be used either in stretches of standing water or in strong currents in a faultless and controlled manner and has low energy demands and minimizes operating costs independent of water depth. A large-scale use at low cost is also possible. This problem is solved by a device (3) which comprises several envelope bodies (1), each of which contains gas, a carrier element (2) and a mass element (10), wherein the envelope bodies (1) are arranged on the carrier element (2) at a distance from each other. The mass element (10) prevents the gas contained in the envelope body (1) from rising inside the water, whereby the gas volumes remain the same and do not have to be constantly renewed. A complex supply of compressed air, particularly for offshore use and and in the event of large depths of water, is not required. This makes it possible that the gas remains bubble-shaped and is maintained independent of prevailing environmental conditions in the water, such as current or water pressure. The gas enclosed in the envelope body (1) cannot fusion with another gas bubble or divide itself.
    • 本发明涉及一种用于通过封入气体的包封体(1)来阻尼和散射水听器和液体,特别是水(8)中的波动的装置(3)。 在这种情况下,本发明的目的是提供一种装置(3),有声的发送和传播,并在水(8)波浪运动可被减小,该装置(3)两者中积水以及强电流无差错 并且可以被使用并且可以独立于水的深度而具有低能量消耗并且可能导致无操作成本,并且可以以低成本大规模使用。 这一目的是用一个装置(3),布置在所述多个的各气体封闭包封体(1),一个承载元件(2)和质量体(10),其中所述外壳体(1)间隔开在支承元件上的(2)来实现 是。 由于质量体(10),封闭体(1)封闭的气体被防止在水(8)中上升,由此气体量被保留并且不需要不断地更新。 无需昂贵的压缩空气供应,特别是在离岸部门和深度很高的压缩空气供应。 这使得气体保持气泡形状并且独立于水中的主要环境条件如流量或水压是可能的。 在封套体(1)内封闭气体时,不可能与另一个气泡合并或分裂。