首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   364篇
  免费   1篇
公路运输   35篇
综合类   65篇
水路运输   233篇
铁路运输   28篇
综合运输   4篇
  2024年   2篇
  2023年   21篇
  2022年   2篇
  2021年   9篇
  2020年   17篇
  2019年   9篇
  2018年   10篇
  2017年   10篇
  2016年   23篇
  2015年   14篇
  2014年   17篇
  2013年   6篇
  2012年   27篇
  2011年   33篇
  2010年   16篇
  2009年   14篇
  2008年   17篇
  2007年   17篇
  2006年   24篇
  2005年   14篇
  2004年   15篇
  2003年   6篇
  2002年   6篇
  2001年   6篇
  2000年   3篇
  1999年   2篇
  1998年   3篇
  1997年   5篇
  1996年   4篇
  1995年   1篇
  1994年   6篇
  1993年   2篇
  1989年   1篇
  1988年   2篇
  1984年   1篇
排序方式: 共有365条查询结果,搜索用时 15 毫秒
1.
非线性负载会在三相车载逆变电源系统中引入谐波,损伤用电设备。为了降低逆变电源输出电压谐波含量,文章研究了基于准比例谐振控制算法的谐波抑制方法 ,主要抑制电源输出的5次和7次谐波。通过仿真模型和实物试验,测试了传统瞬时控制方法和准比例谐振控制方法的差别。结果表明,准比例谐振控制方法既能消除输出电压中的特定次谐波,又可满足系统动态响应性能和稳态精度要求,具有良好的谐波抑制效果。  相似文献   
2.
水深对船舶运动和波浪载荷的影响   总被引:11,自引:0,他引:11  
本文利用简单Green函数法计算二维水动力,特切片法用于有限深水中船舶运动和波载的计算。对实船试算了迎浪航行时几种不同航速和水深的组合,计算结果(垂荡和纵摇响应、舯弯矩和钟前1/4船长处剪力)表明水深的显著影响。水深变浅,垂荡和纵摇响应峰值变小,弯矩和剪力变大,航速越大水深的影响越显著。  相似文献   
3.
利用CFD技术对仿箱鲀科胸尾鳍协同推进机器鱼的水动力学特性进行分析,将整个机器鱼放入流场,对其胸鳍推进模式、尾鳍推进模式和胸尾鳍协同推进模式的水动力学特性进行对比,得出不同模式下机器鱼水动力学的变化规律。分析得出,在压力变化云图中,胸尾鳍协同推进产生的压力变化最为复杂;在速度涡量变化图中,胸尾鳍协同推进产生最为复杂的涡量变化,胸鳍运动产生的涡会逐渐脱落向后移动,与尾鳍产生的涡互相作用,增加尾鳍的推力,从而证明胸尾鳍协同推进模式是一种高效的推进机制。  相似文献   
4.
为揭示冲击荷载作用下无砟轨道结构振动和噪声的内在关联性,采用1∶1足尺模型对CRTSⅡ型板式无砟轨道结构进行多组冲击振动试验。通过在板式无砟轨道不同方向、不同位置的锤击,获得钢轨轨顶、轨腰、轨底各个位置的加速度及声强声压数据,采用快速傅里叶变换(FFT)获得了振动和噪声的频谱图,并进行频域特性对比分析,研究振动和噪声的内在关联性。结果表明:侧向冲击荷载下,轨顶轨腰处声强主要与侧向振动有关,频谱图峰值对应良好;垂向冲击荷载下,0~1 500 Hz区段的声强主要受垂向振动影响。  相似文献   
5.
随着高速铁路的大范围应用,无砟轨道在列车荷载与水耦合作用下的水致损伤问题备受关注。为研究列车荷载与水耦合作用下无砟轨道层间裂纹扩展现象,运用有限元软件进行无砟轨道层间裂纹扩展分析,开展动荷载与水耦合作用下的混凝土层间裂纹扩展试验。研究结果表明:裂纹尖端疲劳寿命与列车速度呈二次方关系,随列车轴重增加,裂纹尖端疲劳寿命显著降低;裂纹尖端剪应力随裂纹深度增大呈高次方增长;裂纹扩展初期尖端多呈一定弧度,裂纹局部会伴有压溃现象;混凝土层间裂纹沿界面扩展时为折线形,并可能会产生裂纹分叉,最终导致裂纹面掉块现象发生。  相似文献   
6.
Container shipping has been expanding dramatically during the last decade. Due to their special structural characteristics, such as the wide breadth and large hatch openings, horizontal bending and torsion play an important role to the fatigue safety of containerships. In this study the fatigue contributions from vertical bending, horizontal bending and torsion are investigated using full-scale measurements of strain records on two containerships. Further, these contributions are compared to results from direct calculations where a nonlinear 3D panel method is used to compute wave loads in time domain. It is concluded that both bending and torsion have significant impacts on the fatigue assessment of containerships. The stresses caused by these loads could be correctly computed by full-ship finite element analysis. However, this requires large computational effort, since for fatigue assessment purposes the FE analysis needs to be carried out for all encountered sea states and operational conditions with sufficient time steps for each condition. In this paper, a new procedure is proposed to run the structure finite element analysis under only one sea condition for only a few time steps. Then, these results are used to obtain a relationship between wave loads and structural stresses through a linear regression analysis. This relation can be further used to compute stresses for arbitrary sea states and operational conditions using the computed wave loads (bending and torsion moments) as input. Based on this proposed method for structure stress analysis, an efficient procedure is formulated and found to be in very good agreement with the full-ship finite element analysis. In addition it is several orders of magnitude more time efficient for fatigue assessment of containership structures.  相似文献   
7.
Environmental contours are often applied in probabilistic structural reliability analysis to identify extreme environmental conditions that may give rise to extreme loads and responses. They facilitate approximate long term analysis of critical structural responses in situations where computationally heavy and time-consuming response calculations makes full long-term analysis infeasible. The environmental contour method identifies extreme environmental conditions that are expected to give rise to extreme structural response of marine structures. The extreme responses can then be estimated by performing response calculations for environmental conditions along the contours.Response-based analysis is an alternative, where extreme value analysis is performed on the actual response rather than on the environmental conditions. For complex structures, this is often not practical due to computationally heavy response calculations. However, by establishing statistical emulators of the response, using machine learning techniques, one may obtain long time-series of the structural response and use this to estimate extreme responses.In this paper, various contour methods will be compared to response-based estimation of extreme vertical bending moment for a tanker. A response emulator based on Gaussian processes regression with adaptive sampling has been established based on response calculations from a hydrodynamic model. Long time-series of sea-state parameters such as significant wave height and wave period are used to construct N-year environmental contours and the extreme N-year response is estimated from numerical calculations for identified sea states. At the same time, the response emulator is applied on the time series to provide long time-series of structural response, in this case vertical bending moment of a tanker. Extreme value analysis is then performed directly on the responses to estimate the N-year extreme response. The results from either method will then be compared, and it is possible to evaluate the accuracy of the environmental contour method in estimating the response. Moreover, different contour methods will be compared.  相似文献   
8.
This paper investigates the hydrodynamic damping of a circular cylinder with helical strakes at Keulegan-Carpenter (KC) number from 0.07 to 3 in the presence of steady currents. Experiments were performed with a straked cylinder oscillating in either in-line or cross currents over Reynolds number (based on the oscillating velocity amplitude) varying from 1260 to 54,000. With in-line current being present, the measured drag coefficients of the straked cylinder are found to depend on the ratio between the oscillating velocity amplitude and the steady current velocity. This phenomenon is further confirmed by computational fluid dynamics using large-eddy simulations. The drag coefficients obtained from the numerical simulations agree well with the experimentally determined values. Similar phenomenon is observed for the cases with cross background current. Based on the experimental data, empirical formulae are proposed to evaluate drag coefficients. These results are of importance in estimating the resonant motion and the fatigue life of risers, e.g. water intake risers, in the flow regime of low KC. Finally, recommendations are provided for fatigue analysis of risers with helical strakes from the perspective of engineering practice.  相似文献   
9.
针对仿鱼型海洋探测机器人低速时的机动性问题,受鹞鲼鱼类依靠胸鳍摆动实现各种水下运动的启发,设计出一种基于共融理论的复合驱动刚-柔多体耦合仿生鱼胸鳍机构。通过构建基于三维非定常湍流控制方程组的柔性鳍摆动系统水动力学模型,研究仿生胸鳍柔性鳍面摆动时周围压力和速度场的变化情况,分析不同摆动幅度和频率下鳍面的水动力学特性,揭示仿生鹞鲼机器鱼的水下运动机理,对摆动胸鳍的水动力进行仿真。结论表明:鳍面摆动时周围的漩涡能够引起胸鳍面上推力、升力及侧向力按类似正弦变化,而推进力和侧向力的大小随摆动幅值和摆动频率增加而增大。  相似文献   
10.
卜凡  余龙 《船舶工程》2019,41(6):6-12
本文设计了一种新型的双机对转式海流发电机并对其系泊系统与叶片载荷和直径关系进行模拟分析。首先将单机式海流发电机与已有研究进行对比验证其可靠性,然后在不改变系泊方式的前提下,设计出双机式结构,并通过分析机身位移和旋转比较两种系统的稳定性。为考虑叶片载荷对系泊系统影响,在Orcaflex中对不同精细程度的叶片进行建模,分别对比单一翼型/三翼型/九翼型的数值模拟结果。接着使用M-BEMT软件优化后的翼型参数,对比使用原始升阻力系数的三翼型发电机的模拟结果,同时将使用不同直径叶片的发电机系统进行对比,说明双机式发电机的稳定性更优,对海流发电机及其系泊系统的设计提供重要参考价值。  相似文献   
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号