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41.
LNG-FSRU采用软刚臂单点系泊系统定位于特定海域在风、浪、流联合作用下进行作业,其运动非常复杂,必须进行水动力性能研究.本文针对35万立方米超大型LNG-FSRU,采用软刚臂单点系泊系统定位方式,开展了风、浪、流联合作用下水动力模型试验研究.软刚臂系泊系统软中各构件间的连接方式及Yoke重量相似是模型试验的关键,试验对该系泊系统的相似性进行了模拟,并将试验结果与数值计算结果进行了对比分析,结果显示,软刚臂系泊系统刚度曲线呈现非线性,试验结果与数值结果吻合良好,表明试验中对于软刚臂系泊系统的模拟是合理的,反映了LNG-FSRU在风、浪、流联合作用下的运动特性. 相似文献
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A constrained interpolation profile (CIP)-based Cartesian grid method for strongly nonlinear wave–body interaction problems
is presented and validated by a newly designed experiment, which is performed in a two-dimensional wave channel. In the experiment,
a floating body that has a rectangular section shape is used. A superstructure is installed on the deck and a small floating-body
freeboard is adopted in order to easily obtain water-on-deck phenomena. A forced oscillation test in heave and a wave–body
interaction test are carried out. The numerical simulation is performed by the CIP-based Cartesian grid method, which is described
in this paper. The CIP scheme is applied in the Cartesian grid-based flow solver. New improvements of the method include an
interface-capturing method that applies the tangent of hyperbola for interface capturing (THINC) scheme and a virtual particle
method for the floating body. The efficiency of the THINC scheme is shown by a dam-breaking computation. Numerical simulations
on the experimental problem for both the forced oscillation test and the wave–body interaction test are carried out, and the
results are compared to the measurements. All of the comparisons are reasonably good. It is shown, based on the numerical
examples, that the present CIP-based Cartesian grid method is an accurate and efficient method for predicting strongly nonlinear
wave–body interactions. 相似文献
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以分段建造费用与工时成线性关系为前提建立的船体分段制造最低成本数学模型其约束条件呈线性关系,目标函数边际收益递减,将最低成本模型改进为二次规划,利用EXCEL工具进行求解,实例计算逼近全局最优,方法简单实用. 相似文献
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收费公路是我国公路在新的建设环境下的产物,其在我国的发展过程中存在着很多问题,为解决这些问题。就必须提高收费公路制度的法律层次,完善收费公路的法律法规。 相似文献
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Considering the influence of many factors (soil loss, frontal additional thrust, the friction force of the shield shell and the additional grouting force), a method for improving the uniform soil body movement model is pro-posed, and a mechanical calculation model is established to study the calculation method for soil body deformation caused by double-line parallel shield driving. Based on the Mindlin solutions of elastic mechanics, the theoretical solutions for soil body deformations caused by the last three factors are calculated; considering the uniform soil body movement model, the theoretical solutions for soil body deformations caused by soil loss are calculated, then the to-tal theoretical solutions for soil body deformations under multiple factors are obtained by means of superposition. The vertical surface settlement, vertical horizontal displacement, and vertical displacements of the soil body at different depths of Hangzhou Metro Line 1 are calculated to analyze the variation laws. Meanwhile the influential factors for horizontal displacement variation are studied. The research shows that with a change of depth, the settlement of the soil body changes within the scope of 10 to 13 m in the horizontal direction near where the maximum settlement occurs;the direction of the horizontal displacement of the soil body changes with a change of the positional relationship be-tween the calculation points and the tunnel; and with an increase of interval J for the two tunnels, the horizontal dis-placement of the soil body of a deep double-line tunnel decreases while the displacement near the surface changes slightly. © 2018, Editorial Office of "Modern Tunnelling Technology". All right reserved. 相似文献
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