首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >EFFECTS OF HIGHLY DUCTILE STEEL ON THE CRASHWORTHINESS OF HULL STRUCTURES IN SHIP TO SHIP COLLISION
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EFFECTS OF HIGHLY DUCTILE STEEL ON THE CRASHWORTHINESS OF HULL STRUCTURES IN SHIP TO SHIP COLLISION

机译:高延展性钢对船到船碰撞的船体结构的脆性的影响

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In order to preliminary investigate effect of HDS (Highly Ductile Steel) on the crashworthiness of struck ship, a series of large scale 3-dimensional ship-ship collision analysis are carried out using the non-linear finite element code LS-DYNA. A very large crude oil carrier (VLCC) is assumed to collide with midship region of another double hull (D/H) VLCC in right angle (90 deg.). Two collision points for the struck VLCC are assumed. One is between Swash Bulkhead (S.BHD) and Oil Tight Bulkhead (OT.BHD), the other is just on S.BHD. Damage extent and total absorbed energy until oil cargo tank ruptures in the case of HDS are compared with those in the case of conventional material. Critical colliding speed (V_(B,cr)) is also compared. Effects of HDS on absorbed energy and V_(B,cr) are discussed in detail. It can be found energy absorption by inner shell (IS) rupture with using HDS is about 2-3 times larger than that with using conventional It is also estimated that IS rupture does not take place when a striking ship collides in less than 8kt in the case of using HDS although a critical striking velocity in the case of conventional bow is about 4-5kt.
机译:为了初步研究HDS(高韧性钢)对撞船的耐撞性的影响,使用非线性有限元代码LS-DYNA进行了一系列大规模的3D撞船分析。假定一个非常大的原油运输船(VLCC)与另一个双船体(D / H)VLCC的船中区域以直角(90度)相撞。假定被撞击的VLCC有两个碰撞点。一个介于Swash隔壁(S.BHD)和防油隔壁(OT.BHD)之间,另一个仅位于S.BHD上。将HDS情况下直到油货舱破裂的损坏程度和总吸收能量与常规材料进行比较。还比较了临界碰撞速度(V_(B,cr))。详细讨论了HDS对吸收能量和V_(B,cr)的影响。可以发现,使用HDS的内壳(IS)破裂的能量吸收约为使用常规方法的2-3倍。据估计,当撞船碰撞小于8kt的船舶时,IS破裂不会发生。在使用HDS的情况下,尽管在传统船首情况下的临界打击速度约为4-5kt。

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