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首页> 外文期刊>Ocean Engineering >Lifting forces required to salvage a sunken vessel and caisson and their response to bottom friction, buoyancy release, surface tension, water capture and water release.
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Lifting forces required to salvage a sunken vessel and caisson and their response to bottom friction, buoyancy release, surface tension, water capture and water release.

机译:挽救沉没的沉船和沉箱所需的提升力及其对底部摩擦,浮力释放,表面张力,集水和放水的响应。

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Two field tests were carried out to measure the lifting forces required to salvage a sunken vessel and caisson, and force histories were obtained to assess their response to bottom friction (BF), surface tension (ST), buoyancy release (BR), water capture (WC) and water release (WR). The test results for the two fully sunken objects showed rather different force profiles. The effect of BF on the caisson, at 1.27 MN, is much larger than that (0.086 MN) on the vessel due to the greater weight of the caisson, whereas the effect indices are almost identical. During separation from the surface water, the vessel was affected by the WC within the vessel as well as by BR and ST. Once fully salvaged, the lifting force of the vessel gradually reduced to 0.71 MN from the maximum of 138 MN, owing to WR. The maximum lifting forces of the vessel and the caisson correspond to two and one times the initial lifting forces of 0.69 MN and 9.41 MN, respectively. It was found that the salvage process of the vessel resulted in a more complicated lifting force history than that of the caisson, primarily because the vessel structure allowed WC and release. (C) 2016 Elsevier Ltd. All rights reserved.
机译:进行了两次现场测试以测量打捞沉没的船只和沉箱所需的提升力,并获得了力的历史记录以评估它们对底部摩擦力(BF),表面张力(ST),浮力释放(BR),水俘获的响应(WC)和水释放(WR)。两个完全下沉的物体的测试结果显示出相当不同的力分布。由于沉箱重量更大,BF对沉箱的影响在1.27 MN处比对船只的影响(0.086 MN)大得多,但影响指数几乎相同。在与地表水分离的过程中,容器受到容器内的WC以及BR和ST的影响。一旦完全打捞,由于WR,船只的提升力从最大138 MN逐渐减小至0.71 MN。船只和沉箱的最大升力分别相当于初始升力0.69 MN和9.41 MN的两倍和一倍。已经发现,抢救过程比起沉箱导致了更复杂的提升力历程,这主要是因为船只结构允许WC和释放。 (C)2016 Elsevier Ltd.保留所有权利。

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