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    • 32. 发明公开
    • VORRICHTUNG ZUR HABITATERSCHLIESSUNG IM UNTERWASSERBEREICH EINES OFFSHORE-BAUWERKS.
    • VORRICHTUNG ZUR HABITATERSCHLIESSUNG IM UNTERWASSERBEREICH EINES海外 - BAUWERKS。
    • EP2576914A2
    • 2013-04-10
    • EP11752084.1
    • 2011-05-05
    • Stiftung Alfred-Wegener-Institut für Polar- und Meeresforschung
    • KRONE, RolandKRÄMER, PhilippSCHRÖDER, Alexander
    • E02B3/04A01K61/00
    • A01K61/005A01K61/59A01K61/70E02B3/046Y02A40/824Y02A40/83
    • Known devices having climbing aids do not have sufficient attractiveness for walking hard epifauna, such as lobsters and crabs. Therefore, the device (01) according to the invention has climbing aids (08) in the form of guide profiles (09), which are fastened to the offshore construction (02) in the vertical, horizontal, and/or diagonal direction at least in some sections and/or continuously. The guide profiles (09) are preferably designed as rib-shaped flat profiles (10) and further structured by flat transverse profiles (12), which are also used for horst formation. The flat profiles (10) can be made of construction steel and are simply welded to the offshore construction (2) during production or installation. The guide profiles (09) can also form circumferential one-piece or multi-piece spirals. Structural collars (17) having nets (18) or grates (20) arranged between two apparent, annular guide profiles (15) can also be formed. In addition, pipe elements (24) and connecting elements (25) can be provided in order to further improve the attractiveness. By means of the device (01) according to the invention, artificial offshore constructions (02), such as wind turbines, can be sustainably developed in the underwater area (32) as additional living space for vagile hard epifauna and efficiently used in a secondary manner.
    • 用于在海底结构的水下地区栖息地开发海洋动物的装置,其具有放置在水体床中的基底,包括设置在海底结构中的水下区域和水体床上的爬行器。 攀爬助剂包括引导轮廓,引导轮廓被配置为允许困难的硬地板动物在垂直,水平和对角线方向中的至少一个中以部分或连续地爬上设置在海上结构上的海上结构。
    • 34. 发明公开
    • Substratgefüllter (Geo-)kunststoffgitterschlauch Verfahren zur Herstellung des substratgfüllten (Geo-)kunststoffgitterschlauches Verfahren zur Schüttbefüllung des (Geo-)kunststoffgitterschlauches Verfahren zur Horziontalbefüllung des (Geo-)kunststoffgitterschlauches
    • 填充基板(GEO)用于制备substratgfüllten(GEO)大头(GEO)塑料网状管方法的填充的(GEO)塑料网状管的水平填充塑料网状管方法塑料网状管方法
    • EP1908870A2
    • 2008-04-09
    • EP07090130.1
    • 2007-10-05
    • Wilcke, Claudia Katrin
    • Wilcke, Claudia Katrin
    • D04H3/07D04H13/00
    • E02B3/122A01K61/70D04H13/00Y02A40/83
    • Die Erfindung umfasst den substratgefüllten (Geo-)kunststoffgitterschlauch einschließlich zweier Herstellungsverfahren - entwickelt für Kunststoffe, die auf Grund ihrer Dichte unterschiedlich zu verarbeiten sind, und die Schütt- sowie die Horizontalbefüllung.
      Der substratgefüllte (Geo-)kunststoffgitterschlauch ist vornehmlich dazu entwickelt, die Wanderung von Evertebraten / Wasserinsekten in Fließgewässern mit befestigter Sohle zu unterstützen.
      Grobschotter- wie Steinschüttungen weisen kaum größengerechte Nischen zur Wanderung auf, die Turbulenzen in den Steinzwischenräumen wirken besiedlungsfeindlich. Betongitter o. ä. befestigte Sohlen weisen eine deutlich verringerte Nischenzahl auf, natürlicher Bewuchs fehlt. Evertebraten, die wichtige Funktionen innerhalb des Fließgewässers einnehmen und die Nahrungsgrundlage für Fische, Vögel etc. darstellen, werden in ihrer Wanderung behindert.
      Durch den mit geologischem und biogenem Material gefüllten (Geo-)gitterschlauch, der eine dreidimensional strukturierte Oberfläche aufweist, können Wasserinsekten in den Schlauch einwandern und so befestigte oder schnell strömende Gewässerabschnitte (Sohlübergänge, Fischaufstiegsanlagen technischer Bauart, Brückensohlen) überwinden. Die Schläuche bieten weiterhin der leistungsschwächeren Ichthyofauna und Jungfischen einen optimalen Strömungsschatten innerhalb dieser kritischen Gewässerstrecken.
    • Gambions是在填充有衬底(2)的塑料或纺织土工布(3,4,6)的形式。 地质材料的这一besteht,E.G. 粘土,卵石或岩石和生物材料如 枯木,树皮,树枝和苔藓,以及任选的粘土珠。 结构允许无脊椎动物和水生昆虫在gambion走动。 独立权利要求中包括了:(A)用于通过同心挤出熔融塑料制造gambions的方法,以便连续长丝和馈送合成在导环入水在那里它们冷却,形成管所有这一切都被卷起以产生缠结; (B)类似的方法,其中缠结自发形成作为长丝被送入浴(C)用于填充使用具有倾斜出口管,在其上纺织管被夹紧的料斗的gambions的方法; 和(D)用于水平使用用于基板螺旋进料器填充它们的方法。
    • 36. 发明授权
    • AQUATIC STRUCTURE AND METHOD
    • 水下的系统和方法
    • EP1207750B1
    • 2006-02-08
    • EP00954089.9
    • 2000-08-16
    • Marine Environmental Solutions, L.L.C.
    • MCNEIL, Roderick, J.
    • A01K61/00E02B3/04
    • A01K61/75Y02A40/83
    • A structure is provided for promoting growth of aquatic species for aquaculture operations and other purposes. The aquatic structure may have a buoyant member, a flexible sheet, and flexible strips (such as fronds, ribbons or filaments). The flexible materials are suspended from the buoyant member. The flexible materials may have high surface area structures for promoting growth of autotrophic (including algae) and heterotrophic organisms (such as bacteria) in photic and heterotrophic sections, respectively. The autotrophs and the bacteria are food, and the dispersed flexible strips provide an attractive habitat for the larger feeding organisms such as fish, crustaceans and mollusks. Ballast devices may be used, if desired, to secure the aquatic structure to the benthos. The ballast devices may be formed of flexible material. The flexible ballast devices may be filled with granular material after the apparatus is transported to the job site. The aquatic structure is easy to handle and deploy in aquatic environments. In alternative embodiments of the invention, additional float devices and/or tethered anchors may be provided for maintaining the apparatus in the desired location.
    • 37. 发明授权
    • Artificial reef structure
    • 人造礁石结构
    • EP0747534B1
    • 2002-12-18
    • EP95108860.8
    • 1995-06-08
    • Liaw, Chung-Yi
    • Liaw, Chung-Yi
    • E02B3/06E02B3/04A01K61/00
    • E02B3/046A01K61/70E02B3/062E02B2201/04Y02A10/15Y02A40/83Y02W30/687
    • An artificial reef structure (1) includes a floating platform formed by a number of buoy units (10) combined together and a great number of vertically extending rows of waste tires (2) secured to an under side of the platform to extend to any desired depth and assume any desired configuration. The resiliency of the tires (2) allows the artificial reef structure to be used as a fender, the ring or donut shape of the tires provides cavities in which fishes and other sea creatures may breed and feed, and the bulky volume of the reef structure that is formed by the great number of waste tires serves to break or crash tides and waves and thus protect the seashore and pier and jetty from being damaged by strong tides and waves.
    • 人造礁结构(1)包括由多个组合在一起的浮标单元(10)形成的浮动平台和大量垂直延伸的废轮胎排(2),其固定到平台的下侧以延伸到任何期望的 深度并采取任何期望的配置。 轮胎(2)的弹性允许将人造礁结构用作挡泥板,轮胎的环形或环形形状提供了鱼类和其他海洋生物可以饲养和饲养的空腔,并且大体积的礁石结构 由大量的废轮胎组成,用来破坏潮汐和潮汐,从而保护海岸,码头和码头不受潮汐和潮汐的破坏。
    • 39. 发明公开
    • METHOD OF AND APPARATUS FOR CULTIVATING MARINE ORGANISMS
    • VERFAHREN UND VORRICHTUNG ZURZÜCHTUNGVON MEERESORGANISMEN。
    • EP0574589A1
    • 1993-12-22
    • EP93900408.1
    • 1992-12-28
    • ONNASON GYOGYOU KYOUDOUKUMIAIKABUSHIKI KAISHA AOIUMITOMA, TakeshiMEGARI, MunekazuTOYOHIRA, Choushou
    • TOMA, Takeshi 43-15, Aza UetaMEGARI, Munekazu 2136, Aza SeragakiTOYOHIRA, Choushou 290, NakaimaHIGA, Yoshimi 143, Aza FuchakuCHINEN, Ryuuichi
    • A01K63/04A01K61/00
    • A01K63/04A01K61/10A01K61/50A01K61/60A01K61/70Y02A40/81Y02A40/826Y02A40/83
    • A method of and an apparatus for cultivating marine organisms while circulating the water in the upper and bottom portions of the interior of a marine organism cultivating tank by conducting aeration in the tank so as to generate a vertical convection flow of water therein. A tank (1) is formed by detachably putting a water impermeable sheet cover (3) on a frame body, and provided with a water introducing and discharging port (4) in the central portion of a bottom wall thereof. When the air is introduced into the tank (1) via an air supply pipe (7), a vertical convection flow occurs owing to the lifting force of bubbles. Consequently, the water outside the tank is introduced via the water introducing and discharging port (4) into the tank and the water inside the tank is discharged therethrough to the outside thereof. The marine organisms are cultivated as the water in the tank and that outside the same are thus circulated. Accordingly, the sunlight can be applied uniformly to the algae constantly moving in the tank while they are cultivated therein, and the salt at the bottom of the sea, nutritive chlorine and brine of a stable temperature can be introduced into the tank. The contaminated brine in the tank is discharged therefrom at the same time, so that the cultivation environment in the tank can be improved and controlled.
    • 一种培养海洋生物的方法和装置,同时在海洋生物培养罐的内部的上部和底部循环水,通过在罐中曝气以在其中产生水的垂直对流。 罐体(1)通过将不透水的薄片盖(3)可拆卸地放置在框架体上而形成,并且在其底壁的中心部分设置有水引入和排出口(4)。 当空气通过供气管(7)引入罐(1)时,由于气泡的提升力而产生垂直对流。 因此,罐外的水通过水引入和排出口(4)引入罐中,并且罐内的水通过其排出到其外部。 海洋生物体作为水箱中的水种植,因此在其外面循环。 因此,可以将阳光均匀地施加到在罐中培养的槽中不断移动的藻类,并且可以将稳定温度的海底盐,营养氯和盐水引入罐中。 罐中的污染盐水同时排出,从而可以改善和控制罐中的栽培环境。