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复古又运动——摩托古兹V9 Bobber Sport赏析
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作者 王萌 《摩托车信息》 2019年第1期54-57,共4页
2018年秋季,意大利老牌摩托车制造商摩托古兹(Moto Guzzi)在历史悠久的Mandello del Lario厂区举办了工厂开放日活动,吸引了上千车迷前来观摩体验。借此机会,V9系列新成员V9 Bobber Sport亮相,它标志着V9的一次大胆变革。Bobber车型是继... 2018年秋季,意大利老牌摩托车制造商摩托古兹(Moto Guzzi)在历史悠久的Mandello del Lario厂区举办了工厂开放日活动,吸引了上千车迷前来观摩体验。借此机会,V9系列新成员V9 Bobber Sport亮相,它标志着V9的一次大胆变革。Bobber车型是继Cafe Racer、Scrambler后又一风靡全球的改装风格摩托,它最初来源于美国。二战后从欧洲战场返回的美国大兵们,注意到欧洲的摩托车较为轻盈纤巧,而当时美国产摩托如哈雷与之相较则过于笨重. 展开更多
关键词 挡泥板 V9 bobber SPORT 排气管 摩托车
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本田铁马改装硬版“BOBBER”风 双色“捷疾鬼”夜叉真身
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作者 崔健磊(叁石) 《摩托车》 2015年第9期78-85,共8页
本期分享的这款夜叉车型,正是上期"原创改装"版中本田Steed的完成品。尽管这两款改装车都是属于"BOBBER"风格的大范畴之内,但是两款成品车散发出的味道,却是十分迥异的。这种差别感的存在,实际上代表着改装师个人的改装取向。无论... 本期分享的这款夜叉车型,正是上期"原创改装"版中本田Steed的完成品。尽管这两款改装车都是属于"BOBBER"风格的大范畴之内,但是两款成品车散发出的味道,却是十分迥异的。这种差别感的存在,实际上代表着改装师个人的改装取向。无论是在造型把握、坐姿设立、分色调试和改装件应用等方面,每一步都是环环相扣的。叁石习惯每次在改装完成之前,都把成品形象在头脑中按照车身的几何结构过一遍,这样作品完成时,准确度也就八九不离十了。请明白,这一步是非常非常必要的!原创改装师永远是用严谨细致的态度和创意精致的细节去侵蚀人心。 展开更多
关键词 bobber 改装车 车身结构 转向灯 整体外观 哈雷 车架结构 制动灯 维修技师 座驾
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本田铁马化身夜叉:阿修罗! Honda VLX400改装硬版“BOBBER”风
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作者 崔健磊(叁石) 《摩托车》 2015年第8期80-83,共4页
第二期原创改装专版的这款主角,正是名震全国改装圈的经典车型——本田VLX400,也称作STEED铁马400!这是本田的一款经典巡航车型,本田还生产过600mL排量的车型,但是叁石实测后认为排量600mL的铁马,相对400mL铁马而言,无论是动力或极速方... 第二期原创改装专版的这款主角,正是名震全国改装圈的经典车型——本田VLX400,也称作STEED铁马400!这是本田的一款经典巡航车型,本田还生产过600mL排量的车型,但是叁石实测后认为排量600mL的铁马,相对400mL铁马而言,无论是动力或极速方面的增长并不明显。大家谨记:如果对动力改装有较高要求,巡航车显然是达不到的。 展开更多
关键词 HONDA VLX400 阿修罗 bobber 经典车型 改装车 车架结构 阿须 声名远扬 天龙八部 帝释天
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BOBBER的前世今生
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作者 高亮 塞纳 瑞丽 《摩托车》 2011年第5期26-39,共14页
英国的W650脱销了;美国的ZERO走俏了;法国的T台上一水的复古摩托车元素;我们不可否认,复古风来了!而且吹得正劲。说到复古,我们想到了BOBBER,那么BOBBER到底是什么?国内玩家又能接触到哪些复古摩托车?复古文化蕴含着哪些不为人知的秘... 英国的W650脱销了;美国的ZERO走俏了;法国的T台上一水的复古摩托车元素;我们不可否认,复古风来了!而且吹得正劲。说到复古,我们想到了BOBBER,那么BOBBER到底是什么?国内玩家又能接触到哪些复古摩托车?复古文化蕴含着哪些不为人知的秘密?且让我们一一道来。 展开更多
关键词 摩托车 bobber 复古 设计方案
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Current-driven transformations of a skyrmion tube and a bobber in stepped nanostructures of chiral magnets 被引量:2
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作者 Jin Zhu YaoDong Wu +4 位作者 QiYang Hu LingYao Kong Jin Tang MingLiang Tian HaiFeng Du 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2021年第2期105-110,共6页
Magnetic skyrmion tubes and bobbers are two types of different nanoscale spin configurations that can coexist in nanostructures of chiral magnets.They are then proposed to be utilized as binary bits to build racetrack... Magnetic skyrmion tubes and bobbers are two types of different nanoscale spin configurations that can coexist in nanostructures of chiral magnets.They are then proposed to be utilized as binary bits to build racetrack memory devices.The ability to manipulate the two magnetic objects controllably by current in nanostructures is the prerequisite to realize the device.Here,we demonstrate by numerical simulations that a magnetic bobber and a skyrmion tube can be transformed to each other using spinpolarized current in nanostripes with stepped shape.We also show such stepped nanostructures can be readily applied as the write head for the skyrmion-bobber-based racetrack memory. 展开更多
关键词 SKYRMION bobber racetrack memory stepped nanostructures chiral magnets
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Investigation of Wave-Structure Interaction Using State of the Art CFD Techniques 被引量:1
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作者 Jan Westphalen Deborah M. Greaves +6 位作者 Alison Raby Zheng Zheng Hu Derek M. Causon Clive G. Mingham Pourya Omidvar Peter K. Stansby Benedict D. Rogers 《Open Journal of Fluid Dynamics》 2014年第1期18-43,共26页
The suitability of computational fluid dynamics (CFD) for marine renewable energy research and development and in particular for simulating extreme wave interaction with a wave energy converter (WEC) is considered. Fu... The suitability of computational fluid dynamics (CFD) for marine renewable energy research and development and in particular for simulating extreme wave interaction with a wave energy converter (WEC) is considered. Fully nonlinear time domain CFD is often considered to be an expensive and computationally intensive option for marine hydrodynamics and frequency-based methods are traditionally preferred by the industry. However, CFD models capture more of the physics of wave-structure interaction, and whereas traditional frequency domain approaches are restricted to linear motions, fully nonlinear CFD can simulate wave breaking and overtopping. Furthermore, with continuing advances in computing power and speed and the development of new algorithms for CFD, it is becoming a more popular option for design applications in the marine environment. In this work, different CFD approaches of increasing novelty are assessed: two commercial CFD packages incorporating recent advances in high resolution free surface flow simulation;a finite volume based Euler equation model with a shock capturing technique for the free surface;and meshless Smoothed Particle Hydrodynamics (SPH) method. These different approaches to fully nonlinear time domain simulation of free surface flow and wave structure interaction are applied to test cases of increasing complexity and the results compared with experimental data. Results are presented for regular wave interaction with a fixed horizontal cylinder, wave generation by a cone in driven vertical motion at the free surface and extreme wave interaction with a bobbing float (The Manchester Bobber WEC). The numerical results generally show good agreement with the physical experiments and simulate the wave-structure interaction and wave loading satisfactorily. The grid-based methods are shown to be generally less able than the meshless SPH to capture jet formation at the face of the cone, the resolution of the jet being grid dependent. 展开更多
关键词 WAVE Loading WAVE Energy Wave-Structure Interaction Manchester bobber CFD Physical Experiments FV CV-FE SPH Cartesian-Cut-Cell SPHysics AMAZON SC STAR CCM+ CFX
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Numerical Simulation of Water Impact on a Wave Energy Converter in Free Fall Motion
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作者 Zheng Zheng Hu Derek Mark Causon +1 位作者 Clive Geoffrey Mingham Ling Qian 《Open Journal of Fluid Dynamics》 2013年第2期109-115,共7页
Results are presented for the 3D numerical simulation of the water impact of a wave energy converter in free fall and subsequent heave motion. The solver, AMAZON-3D, employs a Riemann-based finite volume method on a C... Results are presented for the 3D numerical simulation of the water impact of a wave energy converter in free fall and subsequent heave motion. The solver, AMAZON-3D, employs a Riemann-based finite volume method on a Cartesian cut cell mesh. The computational domain includes both air and water regions with the air/water boundary captured automatically as a discontinuity in the density field thereby admitting break up and recombination of the free surface. Temporal discretisation uses the artificial compressibility method and a dual time stepping strategy. Cartesian cut cells are used to provide a boundary-fitted grid at all times. The code is validated by experimental data including the free fall of a cone and free decay of a single Manchester Bobber component. 展开更多
关键词 WAVE Energy CONVERTER Manchester bobber CARTESIAN CUT Cell Free Surface Capturing and Artificial COMPRESSIBILITY Method
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