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Application of the generalized body-fixed coordinate system for the wave-body interaction problem of a small-depth elastic structure in head seas
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作者 Kyeonguk Heo Masashi Kashiwagi 《Journal of Hydrodynamics》 SCIE EI CSCD 2021年第6期1255-1270,共16页
The body-fixed coordinate system is applied to the wave-body interaction problem of a small-depth elastic structure which has both rigid and elastic body motions in head waves.In the weakly non-linear assumption,the p... The body-fixed coordinate system is applied to the wave-body interaction problem of a small-depth elastic structure which has both rigid and elastic body motions in head waves.In the weakly non-linear assumption,the perturbation scheme is used and the expansion is conducted up to second-order to consider several non-linear quantities.To solve the boundary value problem,linearization is carried out based not on inertial coordinate but on body-fixed coordinate which could be accelerated by a motion of a body.At first,the main feature of the application of body-fixed coordinate system for a seakeeping problem is briefly described.After that the transformation of a coordinate system is extended to consider an elastic body motion and several physical variables are re-described in the generalized mode.It has been found that the deformation gradient could be used for the transformation of a coordinate system if several conditions are satisfied.Provided there are only vertical bending in elastic modes and the structure has relatively small depth,these conditions are generally satisfied.To calculate an elastic motion of a body,the generalized mode method is adopted and the mode shape is obtained by solving eigen-value problem of dynamic beam equation.In the boundary condition of the body-fixed coordinate system,the motion effect reflected to free-surface boundary is considered by extrapolating each mode shape to the horizontal direction from a body.At last,simple numerical tests are implemented as a validation process.The second-order hydrodynamic force of a freely floating hemisphere is first calculated in zero forward speed condition.Next,motion and added resistance of a ship with forward speed are considered at different flexibility to confirm the effect of an elastic body motion in body-fixed coordinate system. 展开更多
关键词 HYDROELASTICITY Higher-order boundary element method(HOBEM) generalized mode method perturbation scheme body-fixed coordinate system wave-body interaction
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不同型号卫星的光压模型参数的拟合
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作者 刘永 李姗姗 +1 位作者 张传定 王琰 《测绘科学技术学报》 CSCD 北大核心 2016年第1期33-37,共5页
随着GPS卫星型号的不断更新,目前共存在8种型号的卫星。每一种型号卫星的材质不尽相同,关于卫星的光压模型也略微不同。探究了不同型号卫星在body-fixed坐标系下光压加速度分量关于B角的约函数模型;利用IGS提供的精密星历,通过动力学轨... 随着GPS卫星型号的不断更新,目前共存在8种型号的卫星。每一种型号卫星的材质不尽相同,关于卫星的光压模型也略微不同。探究了不同型号卫星在body-fixed坐标系下光压加速度分量关于B角的约函数模型;利用IGS提供的精密星历,通过动力学轨道平滑过程来拟合8 d的数据,生成在solar-oriented坐标系下的加速度;把加速度在solar-oriented坐标系D-Y-B轴的分量转换到在body-fixed坐标系X-Y-Z轴分量;利用最小二乘法则拟合关于B角的约函数模型,建立关于B角的不同型号卫星的傅里叶光压模型,并进行轨道的外推。通过分析轨道外推的精度,验证GPS不同型号卫星光压模型拟合的精准性,为以后北斗卫星的光压建模提供理论依据。 展开更多
关键词 solar-oriented坐标系 body-fixed坐标系 最小二乘法则 约函数模型 轨道外推
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Body—Fix装置对脊椎转移瘤大分割调强放疗摆位误差的影响 被引量:1
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作者 章雅琴 刘裕杰 +2 位作者 许青 朱国培 章真 《中华放射肿瘤学杂志》 CSCD 北大核心 2013年第4期315-317,共3页
目的观察Body-Fix装置用于脊椎转移瘤大分割调强放疗的误差改变,为广泛开展骨转移大分割治疗提供参考资料。方法选择2008--2009年在本院接受大分割调强放疗的6例鼻咽癌椎体转移患者,均使用Body-Fix装置进行固定、摆位和治疗。利用千... 目的观察Body-Fix装置用于脊椎转移瘤大分割调强放疗的误差改变,为广泛开展骨转移大分割治疗提供参考资料。方法选择2008--2009年在本院接受大分割调强放疗的6例鼻咽癌椎体转移患者,均使用Body-Fix装置进行固定、摆位和治疗。利用千伏级锥形束cT采集放疗前、摆位纠正后、放疗后图像,与计划CT图像进行配准,对摆位纠正后和放疗后位置误差变化情况(分次内误差)进行统计分析。结果上、中、下段椎体左右方向分次内误差分别为(-0.6±0.5)、(-0.1±1.0)、(0.0±0.4)mm,头脚方向分次内误差分别为(1.0±1.4)、(4.8±5.7)、(0.0±0.3)mm,前后方向分次内误差分别为(1.2±5.2)、(-0.3±0.3)、(0.0±0.5)mm。结论采用Body—Fix装置后各节段椎体的分次内误差基本能控制在2mm内,为采用大分割调强放疗治疗椎体转移瘤提供了良好的固定保障。 展开更多
关键词 body-fix装置 摆位误差 椎体转移瘤 调强放射疗法
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