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   10521篇
  免费   595篇
  国内免费   445篇
化学   1834篇
晶体学   32篇
力学   2782篇
综合类   27篇
数学   1198篇
物理学   1544篇
综合类   4144篇
  2024年   29篇
  2023年   128篇
  2022年   198篇
  2021年   198篇
  2020年   236篇
  2019年   184篇
  2018年   204篇
  2017年   281篇
  2016年   355篇
  2015年   336篇
  2014年   423篇
  2013年   596篇
  2012年   535篇
  2011年   591篇
  2010年   432篇
  2009年   563篇
  2008年   487篇
  2007年   589篇
  2006年   489篇
  2005年   549篇
  2004年   427篇
  2003年   411篇
  2002年   379篇
  2001年   336篇
  2000年   318篇
  1999年   302篇
  1998年   230篇
  1997年   210篇
  1996年   172篇
  1995年   202篇
  1994年   155篇
  1993年   149篇
  1992年   108篇
  1991年   126篇
  1990年   102篇
  1989年   93篇
  1988年   98篇
  1987年   74篇
  1986年   67篇
  1985年   47篇
  1984年   33篇
  1983年   14篇
  1982年   47篇
  1981年   16篇
  1980年   6篇
  1979年   8篇
  1978年   8篇
  1971年   4篇
  1970年   2篇
  1957年   3篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
1.
A numerical model was developed and validated to investigate the fluid–structure interactions between fully developed pipe flow and core–shell-structured microcapsule in a microchannel. Different flow rates and microcapsule shell thicknesses were considered. A sixth-order rotational symmetric distribution of von Mises stress over the microcapsule shell can be observed on the microcapsule with a thinner shell configuration, especially at higher flow rate conditions. It is also observed that when being carried along in a fully developed pipe flow, the microcapsule with a thinner shell tends to accumulate stress at a higher rate compared to that with a thicker shell. In general, for the same microcapsule configuration, higher flow velocity would induce a higher stress level over the microcapsule shell. The deformation gradient was used to capture the microcapsule's deformation in the present study. The effect of Young's modulus on the microcapsule shell on the microcapsule deformation was investigated as well. Our findings will shed light on the understanding of the stability of core–shell-structured microcapsule when subjected to flow-induced shear stress in a microfluidic system, enabling a more exquisite control over the breakup dynamics of drug-loaded microcapsule for biomedical applications.  相似文献   
2.
在深井、超深井以及地层复杂等条件下,为了避免或减少钻井事故的发生,达到优质快速钻井的目的,选择合适的钻井液体系至关重要。基于案例推理(CBR,Case-Based Reasoning)的钻井液设计中,钻井液体系由岩性、井型和井深等属性推理得出,但属性权重的分配会对推理结果产生显著的影响;遗传算法在优化属性权重时,存在收敛速度慢、收敛精度低的缺点。针对上述问题,提出一种解决CBR中属性权重分配问题的改进遗传算法。首先,对遗传算子进行改进:选择算子方面,利用指数尺度变换法优化个体选择;交叉算子方面,对算术交叉中的比例因子进行自适应调整;变异算子方面,改进个体变异方向,保持种群多样性。其次,从个体适应度和交叉个体的差异程度两方面实现交叉概率自适应调整。最后,通过对UCI数据集的对比实验,证明了改进后的遗传算法能改善全局收敛性能,提高CBR的准确率。将该算法运用到基于CBR的钻井液设计中,实验结果表明,所提方法能够优化属性权重的分配,进而提高钻井液设计的质量。  相似文献   
3.
We extend our previous results characterizing the loading properties of a diffusing passive scalar advected by a laminar shear flow in ducts and channels to more general cross‐sectional shapes, including regular polygons and smoothed corner ducts originating from deformations of ellipses. For the case of the triangle and localized, cross‐wise uniform initial distributions, short‐time skewness is calculated exactly to be positive, while long‐time asymptotics shows it to be negative. Monte Carlo simulations confirm these predictions, and document the timescale for sign change. The equilateral triangle appears to be the only regular polygon with this property—all others possess positive skewness at all times. Alternatively, closed‐form flow solutions can be constructed for smooth deformations of ellipses, and illustrate how both nonzero short‐time skewness and the possibility of multiple sign switching in time is unrelated to domain corners. Exact conditions relating the median and the skewness to the mean are developed which guarantee when the sign for the skewness implies front (more mass to the right of the mean) or back (more mass to the left of the mean) “loading” properties of the evolving tracer distribution along the pipe. Short‐ and long‐time asymptotics confirm this condition, and Monte Carlo simulations verify this at all times. The simulations are also used to examine the role of corners and boundaries on the distribution for short‐time evolution of point source , as opposed to cross‐wise uniform, initial data.  相似文献   
4.
Cavitation erosion is caused in solids exposed to strong pressure waves developing in an adjacent fluid field. The knowledge of the transient distribution of stresses in the solid is important to understand the cause of damaging by comparisons with breaking points of the material. The modeling of this problem requires the coupling of the models for the fluid and the solid. For this purpose, we use a strategy based on the solution of coupled Riemann problems that has been originally developed for the coupling of 2 fluids. This concept is exemplified for the coupling of a linear elastic structure with an ideal gas. The coupling procedure relies on the solution of a nonlinear equation. Existence and uniqueness of the solution is proven. The coupling conditions are validated by means of quasi‐1D problems for which an explicit solution can be determined. For a more realistic scenario, a 2D application is considered where in a compressible single fluid, a hot gas bubble at low pressure collapses in a cold gas at high pressure near an adjacent structure.  相似文献   
5.
针对半潜式海洋钻井平台推进器螺旋桨面临的空泡腐蚀、电化学腐蚀以及海洋生物附着污损等问题,综述了焊接、粘接、热喷涂、冷喷涂修复技术的应用研究进展。认为目前的螺旋桨修复再制造技术普遍存在着修复层应力集中、结合强度低、孔隙率高、高温导致材料变性等缺陷,今后的研究工作应向着避免应力集中、增大修复层结合强度、降低作业温度、减小孔隙率的方向发展,以期能够制备更加致密均匀的修复层。  相似文献   
6.
为探索海上油田电泵举升结蜡井热循环洗井工艺井筒温度场分布规律,综合考虑潜油电机增温、电缆散热、热流体注入量、注入深度、注入温度、结蜡管段传热和海水空气导热的影响,基于热能守恒原理,建立了电泵井结蜡热循环洗井工艺井筒温度场计算模型,分析了热流体注入温度和注入量对混合产出流体的井筒温度分布的影响。研究结果表明,随着注入量的增加混合产出液沿程井筒温度增加,随着注入温度的增加混合产出液沿程井筒温度增加。该方法可有效指导现场措施工艺的实施,达到延长结蜡井的清蜡周期、延缓产液/产油量下降速度的目的。  相似文献   
7.
We show the short-time existence and nonlinear stability of vortex sheets for the nonisentropic compressible Euler equations in two spatial dimensions, based on the weakly linear stability result of Morando and Trebeschi (2008) [20]. The missing normal derivatives are compensated through the equations of the linearized vorticity and entropy when deriving higher-order energy estimates. The proof of the resolution for this nonlinear problem follows from certain a priori tame estimates on the effective linear problem in the usual Sobolev spaces and a suitable Nash–Moser iteration scheme.  相似文献   
8.
Acetyl‐l ‐carnitine (ALCAR) is a potential biomarker for the modulation of brain neurotransmitter activity, but is also present in cerebrospinal fluid (CSF). Recent studies have utilized hydrophilic interaction liquid chromatography–tandem mass spectrometry (HILIC‐MS/MS) based assays to detect and quantify ALCAR within biofluids such as urine, plasma and serum, using various sample pretreatment procedures. In order to address the need to quantify ALCAR in CSF on a high‐throughput scale, a new and simple HILIC‐MS/MS assay has been successfully developed and validated. For rapid analysis, CSF sample pretreatment was performed via ‘dilute and shoot’ directly onto an advanced HILIC column prior to MS/MS detection. This newly developed HILIC‐MS/MS assay shows good recoveries of ALCAR without the need for chemical derivatization and multistep sample extraction procedures. The employment of this assay is suitable for the high‐throughput bioanalysis and quantification of ALCAR within the CSF of various animal models and human clinical studies. Copyright © 2015 John Wiley & Sons, Ltd.  相似文献   
9.
采用计算流体动力学(CFD)模拟,研究3个医药洁净室的气流流型及颗粒物浓度.采用标准k-ε双方程模型,通过模拟颗粒物在洁净室的分布,分析合理的污染物散发位置及散发比例.对比参考发尘量下的结果与实测数据的差异,根据实测数据确定污染散发量,通过试验不同的单位容积发尘量,计算对应的洁净度,得到与实测数据吻合最好的单位容积发尘量.在单位容积发尘量为1 000pc·(m3·min)-1计算条件下,各房间的模拟结果与实测数据数值比较吻合,且经CFD预测的3个房间的洁净度变化趋势与实测一致.  相似文献   
10.
针对常规水压裂液会对页岩造成伤害,容易产生水锁,不易返排,还造成水资源消耗和污染环境等问题,制备了低伤害二氧化碳凝胶压裂液。将自备的F2EU和F4EU增稠剂加入到超临界CO2基液中,探究两种增稠剂的加入量对CO2凝胶压裂液黏度的影响,综合考虑成本与效果,优选了2%的F4EU增稠剂,可将CO2的黏度增至15.4 mPa·s。研究了温度、压力以及剪切速率对凝胶压裂液黏度的影响。实验结果表明,随着温度升高黏度总体降低,但中间出现一个短暂升高阶段;随着压力上升压裂液黏度增加;随着剪切速率的增加压裂液黏度下降,属于一种典型的剪切变稀的假塑性流体。F4EU超临界CO2凝胶压裂液的平均伤害率为1.39%,远远小于常规压裂液对岩芯的伤害率。实验表明,F4EU超临界CO2凝胶压裂液在页岩气压裂开采中具有良好的应用前景。  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