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Experimental investigation of Steel-Concrete-Polymer composite barrier for the ship internal tank construction

机译:钢-混凝土-聚合物复合屏障在船舶内舱结构中的试验研究。

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Transportation of dangerous cargo by ships demands ensuring an appropriate protection level in case of an accident. Two of the most dangerous accident types resulting in an oil spill are grounding and ship to ship collision. The article presents results of research on a new composite construction for a ship hull that increases structural safety during collision. The concept of semi-elastic Steel-Concrete-Polymer structure is presented. The most important results of the research are discussed. The resistance to collision and grounding of the new sandwich solution is investigated by means of two independent large scale experiments. The first collision experiment was conducted on a reference ship section representative for a double bottom or a double side of a ship. The second test was performed on a construction similar to the first one, but with an additional semi-elastic protective barrier. Both ship sections were loaded in the same manner by a sphere-shaped intender simulating the assumed collision scenario. On the basis of large-scale collision experiments the new solution of semi-elastic protective barrier was proven to significantly increase resistance to collision and grounding. (C) 2015 Elsevier Ltd. All rights reserved.
机译:船舶运输危险货物要求在发生事故时确保适当的防护等级。导致漏油的两种最危险的事故类型是接地和船对船碰撞。本文介绍了一种用于船体的新型复合结构的研究结果,该结构可提高碰撞过程中的结构安全性。提出了半弹性钢-混凝土-聚合物结构的概念。讨论了研究的最重要结果。通过两个独立的大规模实验研究了新的三明治溶液的耐碰撞和接地性能。第一次碰撞实验是在参考船的剖面上进行的,该剖面代表船的双底或双侧。在与第一个相似的结构上进行了第二个测试,但有一个附加的半弹性防护层。球形拟人以相同的方式模拟了假定的碰撞场景,从而使两个舰艇部分均以相同的方式加载。在大规模碰撞实验的基础上,事实证明,新的半弹性防护屏障解决方案可以显着提高抗碰撞和接地的能力。 (C)2015 Elsevier Ltd.保留所有权利。

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