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《船舶力学》2021,(10)
本文针对中国新型极地考察船所受冰载荷进行了研究,其中包含了平整冰阻力和浮冰碰撞力。对于船舶设计者和建造者来说,船舶冰载荷的预估非常重要。本文采用经验公式方法计算了该船在平整冰中航行的冰阻力,并且与模型试验结果进行了对比。结果显示,计算和试验结果中的冰阻力都随船舶航行速度的增大而增大,经验公式方法可以预测出合理的平整冰阻力。通过计算得到了该船的性能曲线,即该船在不同厚度平整冰中航行所能达到的速度。此外,本文还考虑了该船与圆形浮冰之间的三维斜向碰撞问题,采用解析方法评估了浮冰对船舶的撞击力,研究了撞击位置、法向框架角度以及浮冰尺寸对碰撞力的影响。基于计算结果,本文就冰载荷的预测进行了讨论并提出了一些建议。 相似文献
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针对计算机模拟极地船舶在冰区航行过程中同时受浮冰与海水影响的非线性与随机性等特点,本文将光滑粒子流体动力学与有限单元法耦合算法应用于某LNG船在冰水池试验航行时与浮冰碰撞的动态过程仿真中。阐述其耦合算法的基本理论与实现方法,模拟船舶航行过程中遇到不同密集度的浮冰工况,分别监测船体所受冰阻力的数值,观察浮冰运动情况,分析LNG舶与各密集度浮冰碰撞时阻力随时间变化规律,与经验公式比较。结果表明,该耦合算法模拟的LNG船航行于各浮冰工况符合真实情况,结果具有较高精度,为后续极地船舶的冰载荷研究提供了有力依据。 相似文献
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为了研究寒地海域航行实体靶船与浮冰发生碰撞过程中的载荷响应,基于S-ALE流固耦合方法和罚函数接触理论构建船-冰-水耦合的数值模型,展开冰-水耦合、船-水耦合以及船-冰-水耦合机理的研究,详细分析碰撞过程中产生的水阻力与冰载荷。结果表明,S-ALE方法在处理船-冰-水相互作用时可以较好地模拟碰撞场景。船体受载主要由水阻力与冰载荷构成,冰载荷占据主要成分。水阻力受到航速的影响,且水域对冰载荷起到了削弱作用;冰载荷随浮冰厚度、尺寸的增加而增加,浮冰尺寸的影响程度高于冰厚。 相似文献
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船舶在冰区航行时的冰阻力性能一直是国内外关注和研究的重点。冰阻力的研究主要集中在经验方法、数值模拟和实验研究三个方面。同时,由于冰区船舶在航行过程中频繁地与冰层或浮冰产生碰撞,海冰的材料结构和力学性质对冰阻力的研究有重要影响。文章从冰的物理力学特性出发,简要回顾几种重要的冰本构关系模型及其适用性;并从经验方法及试验与数值模拟相结合两个角度,回顾和讨论浮冰区和平整冰区中船舶的冰阻力性能研究进展;最后,基于研究现状提出尚需进一步解决的问题。文章旨在介绍冰区船舶冰阻力性能的研究进展,望能为后续冰阻力研究提供参考。 相似文献
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为保证船舶在冰区安全航行和船上机械设备安全,需要考虑冰激载荷特性引起的船舶运动响应问题。论文以一艘极地运输船作为研究对象,采用基于半经验公式的数值方法模拟连续破冰情况下船舶所承受的冰载荷,求解冰区船舶在平整冰区域直航过程中由冰载荷冲击引起的运动响应,计算分析横荡、纵荡和垂荡3自由度冲击加速度,同时基于中国船级社规范,选取PC3冰级,计算规范要求的冲击加速度,将两者计算结果进行对比,揭示了在不同冰厚、弯曲强度和船-冰摩擦系数下加速度的变化趋势。此数值模拟方法对冰区船舶设计与冰区航行具有一定的指导意义。 相似文献
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基于Voronoi图采用参数化设计工具对不规则几何形状的浮冰开展参数化建模,参照真实冰区测量信息,利用遗传算法对浮冰尺度概率分布开展了优化研究。考虑不同浮冰尺度范围,采用有限元方法对船舶在浮冰区航行的冰阻力进行了数值计算。研究发现:大尺度浮冰相对于小尺度浮冰而言,破碎更为剧烈;优化浮冰尺度概率分布的冰阻力峰值总体而言大于优化前,平均值则较小;数值计算结果在较大浮冰尺度范围内与经验值较为吻合,浮冰阻力平均值随浮冰平均尺度增大呈负指数幂函数减小趋势。文中提供了一种对浮冰尺度概率分布进行校正和优化的方法,对船舶在浮冰区的阻力预报具有一定参考价值。 相似文献
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In this paper, a numerical model based on the non-smooth discrete element method is presented to investigate the effect of ice floe shape on ship resistance under low-concentration broken ice condition where ice fields consist of relatively small and unbreakable floes. The accuracy of the numerical model is validated by the comparison with a series of experiments conducted by the authors with artificial ice floes made from polypropylene (PP) material. The mean ice resistance estimated by the numerical model is in fairly good agreement with both the experimental results and those from the existing semi-empirical formulas. Additionally, the floe shape effect captured in the experiment, i.e. “rectangle-like” floes results in higher resistance than “elliptic-like” floes, is also predicted by the numerical model. Then, the validated numerical model is used to further investigate the effect of floe shape on ship resistance. It has been found that the rectangle floe results in higher ice resistance than other studied floe shapes. The ratio between the maximum and minimum caliper diameters of floe shows little influence on the ice resistance of ship. Finally, the effect of ice thickness on the ice resistance is also discussed. 相似文献
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Ship operation and ice loading in floe ice fields have received considerable interest during recent years. There have been several numerical simulators developed by different institutes which can simulate ship navigation through floe ice fields and estimate ship performance and local ice loads. However, public data obtained from full-scale measurement covering comprehensively ship performance and ice loads under various ice thicknesses, concentrations and floe sizes are rare. The 2018/19 Antarctic voyage of the Polar Supply and Research Vessel (PSRV) S.A. Agulhas II gathered considerable data of the ship in floe ice fields under various thicknesses, concentrations, and floe sizes. The aim of this paper is to carry out statistical analysis to seek suitable probability distributions which adequately fit the measured ice load and therefore suitable to be used as parent distributions for long-term estimation. For this aim, three categories of probability distributions, namely standard distributions, truncated distributions and mixture distributions are tested. It is found that truncated distributions can fit the load data better than standard distributions bounded at the threshold. In addition, mixture distributions are shown to have promising features, which fit the data well and are able to separate distribution components. Subsequentially, the well-performed distributions are used as parent distributions to make long-term load estimations. The estimation results demonstrate that long-term estimations are sensitive to the selection of parent distribution, which addresses the importance of finding correct distribution to model short-term ice loads. The data of ten selected cases will be published for the use of other researchers. 相似文献
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Whilst climate change is transforming the Arctic into a navigable ocean where small ice floes are floating on the sea surface, the effect of such ice conditions on ship performance has yet to be understood. The present work combines a set of numerical methods to simulate the ship-wave-ice interaction in such ice conditions. Particularly, Computational Fluid Dynamics is applied to provide fluid solutions for the floes and it is incorporated with the Discrete Element Method to govern ice motions and account for ship-ice/ice-ice collisions, by which, the proposed approach innovatively includes ship-generated waves in the interaction. In addition, this work provides two algorithms that can implement computational models with natural ice-floe fields, which takes floe size distribution and randomness into consideration thus achieving high-fidelity modelling of the problem. Following validation against experiments, the model is shown accurate in predicting the ice-floe resistance of a ship, and then a series of simulations are performed to investigate how the resistance is influenced by ship speed, ice concentration, ice thickness and floe diameter. This paper presents a useful approach that can provide power estimates for Arctic shipping and has the potential to facilitate other polar engineering purposes. 相似文献
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With the effects of global warming, the Arctic is presenting a new environment where numerous ice floes are floating on the open sea surface. Whilst this has improved Arctic shipping navigability in an unprecedented way, the interaction of such floes with ships is yet to be understood to aid the designing of ships and route planning for this region. To further explore this topic, the present work develops a procedure to derive an empirical equation that can predict the effects of such floes on ship resistance. Based on a validated computational approach, extensive data are extracted from simulations of three different ships with varying operational and environmental conditions. The ice-floe resistance is shown to strongly correlate with ship beam, ship buttock angle, ship waterline angle, ship speed, ice concentration, ice thickness and floe diameter, and the regression powers of each of the parameters on resistance are ascertained. This leads to a generic empirical equation that can swiftly predict ice-floe resistance for a given ship in a given condition. Subsequently, demonstrations are given on the incorporation of the derived equation into a set of real-time Arctic ship performance model and voyage planning tool, which can predict a ship's fuel consumption in ice-infested seas and dynamically suggest a route with the least safety concern and fuel consumption. Moreover, the equation is validated by providing ice resistance prediction for experimental and full-scale conditions from multiple sources, showing high accuracy. In conclusion, the empirical equation is shown to give valid and rapid estimates for ice-floe resistance, providing valuable insights into ship designs for the region, as well as facilitating practical applications for polar navigation. 相似文献
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船舶在冰区航行时,将遭受浮冰的挤压,船舷侧部位的加筋板会受到冰载荷的作用。以单筋单跨加筋板为研究对象,采用非线性有限元法对冰载荷下加筋板轴向压缩极限强度进行分析。研究冰载荷的大小、加载区域面积和加载区域位置的不同对极限强度的影响规律。结果表明,冰载荷大小一定,冰载荷作用区域面积逐渐增加时,加筋板的轴向压缩极限强度随着面积的增加基本呈线性增加。冰载荷作用区域位置距离加筋板中心点距离逐渐增加时,加筋板的轴向压缩极限强度逐渐增加,且随着相对距离的增加,对加筋板轴向压缩极限强度的影响越来越大。这些结果可用于指导冰区船舶结构的设计以及维护。 相似文献
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The ice resistance on ships in escort operations in level ice are investigated using the discrete element method (DEM). A dilated polyhedron—generated by the Minkowski sum of a sphere and a polyhedron—is employed in the DEM; this dilated polyhedron-based DEM (DPDEM) is adopted to simulate the ship–ice interaction, wherein the contact force and bond-failure criterion are considered for the collision and fracture of sea ice, respectively. A three-point bending test was simulated with DPDEM, and a field test was conducted in the Bohai Sea to validate the DEM results. Further, a parametric analysis of flexural strength was conducted to identify the parameters involved in the bond-failure criterion. The ice resistance on icebreakers and cargo ships in level ice are simulated using DPDEM. The simulated ice resistances are compared with the Lindqvist and Riska formulas and the model test, which proves the validity of the DEM simulation. The interaction between ships and level ice is simulated parametrically to investigate the ice resistance on cargo ships with and without the icebreaker escort. Influencing factors such as ship speed, ice thickness, and ship breadth were examined to investigate the ice resistance on the escorted cargo ship. Analysis and change rules of the ice resistance on cargos affected by those factors were given. 相似文献