首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2011 >DETAILED ANALYSES OF THE TOW LINE BEHAVIOUR IN SINGLE, DOUBLE AND TRIPLE TOWAGES IN CASE OF EMERGENCY STOP AND CATENARY
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DETAILED ANALYSES OF THE TOW LINE BEHAVIOUR IN SINGLE, DOUBLE AND TRIPLE TOWAGES IN CASE OF EMERGENCY STOP AND CATENARY

机译:紧急停车和紧急情况下单,双和三重牵引的拖缆行为的详细分析

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Two phenomena have been studied in order to enhance the contingency plans and improve the safety of towages. 1.For multi tug towages it is important to prepare proper contingency plans for the case that a tug fails and overrun by the tow is a probability, especially the towages of FPSO's and huge rigs performed by more tugs. A model has been developed to assess the time between the failure and the moment the tow will collide. After thorough research not the stopping distance proved important, but the time it takes for both objects to collide.In case the tug is allowed to be pulled towards the FPSO, the time from engine failure to collision is 380 [s] or 6 minutes 20 seconds. Both objects will collide with a speed difference of 2.28 [m/s].In case the towline is cut, the time until collision is 1479 [s], or 24 minutes and 40 seconds. In this case it is very important to cut the towline instantly after the engine failure. Otherwise the tug will gain a negative speed of 1 m/s within 2 minutes, and the distance between the FPSO and the tug will be reduced to 683 [m] already.2. Grounding of tow lines must be avoided the standard of the catenary approach to assume a hyperbolic shape is investigated and a detailed finite element model approach shows that the standard assumptions are not accurate enough. A numerical approach has been used to calculate the effect of current and loss of tension in the wire. The influence of current along the towing-wire depends on the speed, diameter, length and the angle of the towing-wire in the water. The maximum depth increases when the speed increases or the tension in the wire decreases. In the example the depths are on the safe side for depths below 35[m], but above 35[m] the values are too optimistic when current is involved.
机译:为了增强应急计划并提高拖曳的安全性,已经研究了两种现象。 1.对于多轮拖船,重要的是要准备适当的应变计划,以防拖船发生故障并且被拖船超载的可能性很大,特别是FPSO和由更多拖船进行的大型钻机的拖船。已经开发出一种模型来评估故障和拖曳发生碰撞之间的时间。经过深入研究,停止距离并不是很重要,但是两个物体碰撞所需的时间。如果允许拖船拉向FPSO,则从发动机故障到碰撞的时间为380 [s]或6分钟20秒。两个物体的碰撞速度差为2.28 [m / s]。如果拖曳缆绳被割断,则直到碰撞的时间为1479 [s],即24分40秒。在这种情况下,在发动机故障后立即切断拖缆非常重要。否则,拖船将在2分钟内获得1 m / s的负速度,并且FPSO与拖船之间的距离已减小到683 [m]。2。必须避免拖曳线接地,研究了假定双曲线形状的悬链线方法的标准,详细的有限元模型方法表明标准假设不够准确。已经使用数值方法来计算电流和导线中张力损失的影响。沿着拖缆的电流的影响取决于拖缆在水中的速度,直径,长度和角度。当速度增加或金属丝中的张力减小时,最大深度会增加。在示例中,对于低于35 [m]的深度,深度是安全的,但是对于高于35 [m]的深度,当涉及电流时,该值过于乐观。

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