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   3556篇
  免费   325篇
公路运输   804篇
综合类   1277篇
水路运输   1038篇
铁路运输   488篇
综合运输   274篇
  2024年   15篇
  2023年   42篇
  2022年   101篇
  2021年   116篇
  2020年   141篇
  2019年   114篇
  2018年   99篇
  2017年   155篇
  2016年   156篇
  2015年   199篇
  2014年   245篇
  2013年   204篇
  2012年   251篇
  2011年   337篇
  2010年   230篇
  2009年   221篇
  2008年   234篇
  2007年   255篇
  2006年   207篇
  2005年   134篇
  2004年   96篇
  2003年   61篇
  2002年   46篇
  2001年   55篇
  2000年   38篇
  1999年   16篇
  1998年   18篇
  1997年   19篇
  1996年   12篇
  1995年   14篇
  1994年   4篇
  1993年   11篇
  1992年   9篇
  1991年   7篇
  1990年   4篇
  1989年   8篇
  1988年   2篇
  1986年   1篇
  1985年   3篇
  1984年   1篇
排序方式: 共有3881条查询结果,搜索用时 15 毫秒
51.
为了计算CNG加气系统的高压胶管的流量,以气体动力学为基础,建立等截面一维定常绝热摩擦流动的数学模型.利用VC+ +语言编制界面计算程序对模型进行编程求解,对壅塞状态和非壅塞状态下流量以及出口压力进行计算和拟合.当天然气汽车储瓶内的压力小于临界压力时,加气流量最大,且与胶管两端的压差无关,并计算出最大流量与胶管管长的关...  相似文献   
52.
In this paper a new traffic flow model for congested arterial networks, named shockwave profile model (SPM), is presented. Taking advantage of the fact that traffic states within a congested link can be simplified as free-flow, saturated, and jammed conditions, SPM simulates traffic dynamics by analytically deriving the trajectories of four major shockwaves: queuing, discharge, departure, and compression waves. Unlike conventional macroscopic models, in which space is often discretized into small cells for numerical solutions, SPM treats each homogeneous road segment with constant capacity as a section; and the queuing dynamics within each section are described by tracing the shockwave fronts. SPM is particularly suitable for simulating traffic flow on congested signalized arterials especially with queue spillover problems, where the steady-state periodic pattern of queue build-up and dissipation process may break down. Depending on when and where spillover occurs along a signalized arterial, a large number of queuing patterns may be possible. Therefore it becomes difficult to apply the conventional approach directly to track shockwave fronts. To overcome this difficulty, a novel approach is proposed as part of the SPM, in which queue spillover is treated as either extending a red phase or creating new smaller cycles, so that the analytical solutions for tracing the shockwave fronts can be easily applied. Since only the essential features of arterial traffic flow, i.e., queue build-up and dissipation, are considered, SPM significantly reduces the computational load and improves the numerical efficiency. We further validated SPM using real-world traffic signal data collected from a major arterial in the Twin Cities. The results clearly demonstrate the effectiveness and accuracy of the model. We expect that in the future this model can be applied in a number of real-time applications such as arterial performance prediction and signal optimization.  相似文献   
53.
In this paper, a new cellular automata model is proposed to simulate the car and bicycle heterogeneous traffic on urban road. To capture the complex interactions between these two types of vehicles, a novel occupancy rule is adopted in the proposed model to consider the variable lateral distances of mixed vehicular traffic. Based on massive simulations, microscopic fundamental diagrams under different bicycle densities are devised. With these, the bicycle's spilling behavior is then investigated and discussed. In order to reflect the interference of a bicycle on a car, the interference transformation from friction state to block state is modeled explicitly. Finally, different simulation results under different occupancy rules indicate that the constant and fixed occupancy rule adopted in the previous studies might lead to overestimation of car flux in the heterogeneous traffic flows with different bicycle densities. Copyright © 2013 John Wiley & Sons, Ltd.  相似文献   
54.
Traditional macroscopic traffic flow modeling framework adopts the spatial–temporal coordinate system to analyze traffic flow dynamics. With such modeling and analysis paradigm, complications arise for traffic flow data collected from mobile sensors such as probe vehicles equipped with mobile phones, Bluetooth, and Global Positioning System devices. The vehicle‐based measurement technologies call for new modeling thoughts that address the unique features of moving measurements and explore their full potential. In this paper, we look into the concept of vehicular fundamental diagram (VFD) and discuss its engineering implications. VFD corresponds to a conventional fundamental diagram (FD) in the kinematic wave (KW) theory that adopts space–time coordinates. Similar to the regular FD in the KW theory, VFD encapsulates all traffic flow dynamics. In this paper, to demonstrate the full potential of VFD in interpreting multilane traffic flow dynamics, we generalize the classical Edie's formula and propose a direct approach of reconstructing VFD from traffic measurements in the vehicular coordinates. A smoothing algorithm is proposed to effectively reduce the nonphysical fluctuation of traffic states calculated from multilane vehicle trajectories. As an example, we apply the proposed methodology to explore the next‐generation simulation datasets and identify the existence and forms of shock waves in different coordinate systems. Our findings provide empirical justifications and further insight for the Lagrangian traffic flow theory and models when applied in practice. Copyright © 2015 John Wiley & Sons, Ltd.  相似文献   
55.
A novel multiclass macroscopic model is proposed in this article. In order to enhance first-in, first-out property (FIFO) and transmission function in the multiclass traffic modeling, a new multiclass cell transmission model with FIFO property (herein called FM-CTM) is extended from its prior multiclass cell transmission model (M-CTM). Also, to enhance its analytical compactness and resultant computational convenience, FM-CTM is formulated in this paper as a set of closed-form matrix equations. The objective is to improve the accuracy of traffic state estimation by enforcing FIFO property when a fast vehicle cannot overtake a slow vehicle due to a limitation of a single-lane road. Moreover, the proposed model takes into account a different priority for vehicles of each class to move forward through congested road conditions, and that makes the flow calculation independent from their free-flow speeds. Some hypothetical and real-world freeway networks with a constant or varying number of lanes are selected to verify FM-CTM by comparing with M-CTM and the conventional CTM. Observed densities of VISSIM and real-world dataset of I-80 are selected to compare with the simulated densities from the three CTMs. The numerical results show that FM-CTM outperforms the other two models by 15% of accuracy measures in most cases. Therefore, the proposed model is expected to be well applicable to the road network with a mixed traffic and varying number of lanes.  相似文献   
56.
一辆2020款丰田卡罗拉1.2T汽车,行驶里程为1000KM,出现怠速不稳甚至熄火,经过专用诊断仪测试,汽车的高压燃油压力最高为16MPA,小于正常的20PMA,而且高压压力值随着怠速时间延长逐渐下降,甚至达到0.2MPA,启动时不容易着车,反复启动着车正常,高压压力无规律波动,更换高压油泵故障仍出现,高压油泵属于日本...  相似文献   
57.

基于动态用户均衡、系统最优分配的诱导方法,侧重路网需求的宏观预测和调节,难以准确辨识道路拥堵点的关联车流,制约了诱导效果。为精准调控致堵车流,有效缓解常发性拥堵,研究基于需求溯源的主动交通诱导方法。遵循靶向诱导的思路,分析车辆行驶轨迹和常发拥堵点的交通流关联性,运用卡尔曼滤波对关联车流进行短时预测,在此基础上,结合流量占比、路径饱和度等指标,对诱导目标车流进行优选。同时,从负荷均衡的角度出发,基于路段与路径交通流的时空关联更新路网交通状态,建立以饱和度均衡为目标的主动诱导优化模型。仿真结果表明:相比反应型诱导与基于路径偏好的主动型诱导,所提方法使常发拥堵点的车均延误、停车次数等下降30%~60%,路网车均延误、停车次数等下降10%~15%,模型收敛速度提高,交通效益提升,验证了该方法的有效性。

  相似文献   
58.

短时交通流预测是提高普通国省道交通运行效率和安全的关键技术之一。普通国省道具有分布地域广、情况复杂的特点,要求短时交通流预测方法具有良好的适应性,然而,针对短时交通流预测算法适应性及其机制的系统性研究尚不多见。选取1种自适应卡尔曼滤波算法,系统分析其适应性和适应机制。获取江苏省徐州市普通国省道路网中8个交通调查站所采集的实际交通流数据开展实例分析,结果表明:在不同的交通流量水平下,所选算法均值预测的平均绝对百分比误差在10.98%~15.92%之间,区间预测的无效覆盖率在5.21%~6.15%之间,表明所选的自适应卡尔曼滤波算法在不同交通流水平下都具有良好的预测性能;对所选算法的参数进行分析发现,算法参数能够随交通流水平的变化而自动调整,具有良好的自适应机制;所选算法能够在预测初期实现有效的性能调整和收敛。

  相似文献   
59.
随着中国新基建战略的提出及自动驾驶和网联通信技术的不断发展,网联自动驾驶车辆(CAV)、自动驾驶车辆(AV)和常规人驾车辆混行的交通流将在未来长时间存在.建立适用于网联自动驾驶车辆、自动驾驶车辆和常规人驾车辆3种类型车辆的混流跟驰模型,考虑多前后车车头间距、多前车速度差、加速度差、与主体车辆的相对距离等因素,并进行典型...  相似文献   
60.
为研究岛式地铁车站内列车发生火灾时,站台细水雾与排烟系统对烟气蔓延的控制效果,依托西安地铁4号线岛式地铁车站,采用FDS软件建立1:1的数值仿真模型,选择大涡模拟,研究站内列车火灾规模为5 MW时,站台细水雾与排烟系统共同作用下,火灾烟气蔓延速度、能见度与温度场的分布特征,分析了细水雾与排烟系统对烟气蔓延特性的影响规律;并通过缩尺模型试验,验证了数值模拟方法研究细水雾控制地铁火灾烟气蔓延的可靠性。研究结果表明:车门间隔开启时,烟气先向列车两侧蔓延,150 s时扩散至整个车厢并向站台层蔓延,当开启站台细水雾时,烟气温度明显下降,且随着细水雾粒径的减小与流量的增大,烟层降温效果增强;当水雾粒径为100 μm,流量为8 L·min-1时,距离站台中线3 m处断面平均温度为36.19℃,较未开启细水雾时温升降幅可达62.91%;同时细水雾使得烟层蔓延速度减小,在开启细水雾系统后200 s内2#楼梯口平均空气质量流速下降39.72%;当开启排烟系统时,可使列车内温度场纵向分布最大值向火源下游移动,加快站台层及列车内对流换热效率,使细水雾的气相冷却作用得到加强,二者同时作用时降温阻烟效果最佳。  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