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191.
检波器尾锥与地表耦合阻尼研究   总被引:1,自引:0,他引:1  
结合检波器与松散地表耦合的实际,设计了双自由度耦合模型,从理论上分析了检波器与地表耦合系统的特性,并结合野外实验定性地分析了在不同表土情况下,检波器尾锥与地表耦合系统中尾锥与地表之间的阻尼变化时对耦合系统特性及地震资料的影响,揭示了合理的选择检波器尾锥与地表之间的阻尼在地震信号采集中的意义。  相似文献   
192.
矢量数字地图数据质量的综合评估   总被引:1,自引:0,他引:1  
王华  陈星 《测绘学院学报》2005,22(4):278-280
研究和确定了矢量数字地图数据的质量评估因子和评估标准,介绍了利用模糊综合评估方法进行质量评估的过程和做法,并给出了实例.  相似文献   
193.
生物去除地下水中硫酸盐的实验研究   总被引:1,自引:0,他引:1  
张宏涛  翟辉 《地下水》2005,27(1):19-22
使用平皿夹层厌氧法分离得到纯化的硫酸盐还原菌,通过对比封口、敞口两种情况下细菌培养过程中产生的现象和细菌的生长曲线,表明SRB并非严格的厌氧菌,能耐受一定浓度的环境溶解氧.将该菌用于去除溶液中的SO42-,发现SRB在还原SO42-的过程中,随着SO42-去除率的增加,溶液的pH值会减小,而当SO42-去除率降低时,溶液的pH有增加的趋势;COD/SO42-比值对SO42-的去除率有很重要的影响,在封口情况下,COD/SO42-=0.75时SO42-的最大去除率约为48.60%,COD/SO42比值增加至2.5时,SO42-最大去除率可以达到89.72%,要达到SO42-高去除率,必须增加COD/SO42-比值.  相似文献   
194.
利用一维线性浅水模式从一个比较普遍的角度对地转适应过程中能量转换的特点进行分析。中首先考虑了两类不同的初始不平衡流的适应问题。一个是Gill所采用的质量不平衡模型,即初始场是静止的,只有水面扰动;另一个是Rossby中所考虑的动量不平衡模型,其初始不平衡流中只有风场的扰动,对这两个模型的适应过程而言,一个显的 特点就是能量转换率始终不会大于1/2或小于0,即适应过程中有位(动)能的释放和向动(位)能的转换,但释放出的能量最多只有其中的一半可以保留在最后的平衡场中。另外,本对任意初始不平衡流适应过程中的能量学特征也进行了分析,指出对于偏差场(相对于一定基本态)的动能和位能而言,上述能量转换关系依然成立。  相似文献   
195.
孙力  安刚 《应用气象学报》2002,13(6):650-661
利用1951~2000年共50年的北半球500 hPa月平均高度距平场资料和奇异值分解技术(SVD),重点对东亚地区季节间大气环流异常的相互关系进行了初步探讨。结果表明,东亚地区季节间大气环流异常存在着较为密切的关联,并且这种明显的非同步联系具有时空相关显著的特点,尤其是夏季大气环流异常与其前冬和前春大气环流异常的联系更为密切。当前冬和前春北半球东亚大槽和北美大槽及蒙古高压偏强(或偏弱),极涡偏弱(或偏强),中高纬度盛行经向环流(或纬向环流),以及低纬和热带地区高度正距平(或负距平)明显时,则对应于夏季东亚地区西太平洋副高和鄂霍次克海阻高强度偏强(或偏弱),位置偏南(或偏北),贝加尔湖阻高强度也偏强(或偏弱),但位置偏西(或偏东)的大尺度环流形势出现。当春季北半球大气环流具有上述特点以及夏季鄂霍次克海阻高和西太平洋副高强度偏强(或偏弱),位置偏南(或偏北),且极涡较弱(较强)时,则东亚地区秋季大气环流对应于蒙古高压加强(或较弱),西太平洋副高减弱(或加强),并向南和向东移动(或移动较慢),极涡向南扩散(或扩散减弱),大气环流向冬季过渡加快(或减慢)。另外,大气环流异常还具有一定的持续性特征。  相似文献   
196.
隧道塌方的尖点灾变模型及应用   总被引:8,自引:0,他引:8  
针对隧道塌方失稳问题,运用灾变理论建立隧道塌方失稳的尖点灾变模型。基于平衡曲面方程,可求得隧道围岩体内承载区介质刚度与对应的松驰区弱化介质本构曲线拐点处理刚度之比值K,并给出了塌方与否的判据,当K≤1时,隧道将发生塌方失稳;当K>1时,隧道将不会发生塌方失稳。根据此模型,笔者解释了隧道中几种常见的灾变破坏机理,并提出了相应的治理方案。  相似文献   
197.
The damping‐solvent extraction method for the analysis of unbounded visco‐elastic media is evaluated numerically in the frequency domain in order to investigate the influence of the computational parameters—domain size, amount of artificial damping, and mesh density—on the accuracy of results. An analytical estimate of this influence is presented, and specific questions regarding the influence of the parameters on the results are answered using the analytical estimate and numerical results for two classical problems: the rigid strip and rigid disc footings on a visco‐elastic half‐space with constant hysteretic material damping. As the domain size is increased, the results become more accurate only at lower frequencies, but are essentially unaffected at higher frequencies. Choosing the domain size to ensure that the static stiffness is computed accurately leads to an unnecessarily large domain for analysis at higher frequencies. The results improve by increasing artificial damping but at a slower rate as the total (material plus artificial) damping ratio ζt gets closer to 0.866. However, the results do not deteriorate significantly for the larger amounts of artificial damping, suggesting that ζt≈0.6 is appropriate; a larger value is not likely to influence the accuracy of results. Presented results do not support the earlier suggestion that similar accuracy can be achieved by a large bounded domain with small damping or by a small domain with larger damping. Copyright © 2002 John Wiley & Sons, Ltd.  相似文献   
198.
A pseudodynamic testing procedure has been applied by which the seismic response of a base‐isolated building is obtained by using as specimen the isolators, while the superstructure is numerically simulated. The procedure also takes advantage of the continuous pseudodynamic testing capabilities of the ELSA laboratory, which increase the accuracy of the results and reduce the strain‐rate effect of the rubber bearings. A simple proportional correction of the measured forces compensates the remaining strain‐rate effect due to the unrealistic speed of the test. The correction factor is obtained by means of a characterizing test on the specific rubber isolators. The developed method has been successfully applied to the prediction of the seismic response of a base‐isolated four‐storey building submitted to several specified accelerograms. The results for those earthquakes as well as the effects of some changes of the parameters of the system are discussed. Copyright © 2002 John Wiley & Sons, Ltd.  相似文献   
199.
The effects of damping in various laminated rubber bearings (LRB) on the seismic response of a ?‐scale isolated test structure are investigated by shaking table tests and seismic response analyses. A series of shaking table tests of the structure were performed for a fixed base design and for a base isolation design. Two different types of LRB were used: natural rubber bearings (NRB) and lead rubber bearings (LLRB). Three different designs for the LLRB were tested; each design had a different diameter of lead plug, and thus, different damping values. Artificial time histories of peak ground acceleration 0.4g were used in both the tests and the analyses. In both shaking table tests and analyses, as expected, the acceleration responses of the seismically isolated test structure were considerably reduced. However, the shear displacement at the isolators was increased. To reduce the shear displacement in the isolators, the diameter of the lead plug in the LLRB had to be enlarged to increase isolator damping by more than 24%. This caused the isolator stiffness to increase, and resulted in amplifying the floor acceleration response spectra of the isolated test structure in the higher frequency ranges with a monotonic reduction of isolator shear displacement. Copyright © 2002 John Wiley & Sons, Ltd.  相似文献   
200.
The development and the applications of an active controlled viscous damping device with amplifying braces are described. The system of the dampers, defined as active viscous damping system (AVDS), connected to an amplifying brace (AB) is presented herein. Instantaneous control theory with velocity and acceleration feedback is used to obtain the control forces at each time step during an excitation. Control of the damping forces is possible due to the mechanical structure of the proposed AVDS, and the connection to the AB. The proposed system can be efficiently used to enhance the damping of a structure without modifying its stiffness. The added damping forces can be adjusted in a wide range. The efficiency of the presented system is demonstrated by a numerical simulation of a seven‐storey building subjected to earthquakes. The simulation shows a considerable reduction of control forces required for control to the AVDS with AB, compared to the same system without AB. Copyright © 2002 John Wiley & Sons, Ltd.  相似文献   
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