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991.
992.
为研究外包钢-混凝土组合梁与钢管混凝土柱连接节点的抗震性能,基于外包钢-混凝土组合梁与钢管混凝土柱连接节点低周反复荷载作用下的试验结果和有限元的模拟,分析了两类试验节点的滞回特性,提出外包钢-混凝土组合梁与钢管混凝土柱连接节点的三折线恢复力模型及其特征参数的取值范围,并给出恢复力模型表达式。结果表明,试件具有良好的耗能能力,建立的恢复力模型骨架曲线与试验值接近;有限元与试验所得的滞回曲线及骨架曲线在弹性阶段吻合较好,随着荷载的反复,两者之间的差异逐渐增大。 相似文献
993.
994.
动力方程求解的显式积分格式及其稳定性与适用性 总被引:12,自引:0,他引:12
文献(1)给出了一种求解有阻尼体系动力方程的显式积分格式,文中以数值表格的形式给出了格式的稳定性条件,本文对该格式的稳定性问题作了进一步的分析,并给出了其计算稳定性条件的表示式。本文还着重讨论了基于这一显式积分格式的推导过程而派生出的另一形式的积分格式的稳定性,并指出了该派生格式的适用性问题。 相似文献
995.
不同构造参数对圆环耗能器性能的影响分析 总被引:1,自引:0,他引:1
设计了13组不同构造参数的圆环耗能器,采用ABAQUS软件对安装在支撑框架结构中的圆环耗能器进行参数分析,研究圆环钢板厚度、圆环外直径、支撑角度、圆环钢板局部削弱形式和削弱深度对圆环耗能器性能的影响。研究结果表明:圆环耗能器滞回曲线稳定、饱满,塑性耗能能力强;随着圆环钢板厚度的增加或者圆环外直径的减小,圆环耗能器初始刚度和屈服力增大;支撑与横梁之间的角度对圆环耗能器性能有一定影响,交叉支撑角度宜取45°左右;圆环钢板局部削弱圆环耗能器比不削弱圆环耗能器具有更好的耗能效果;圆环钢板局部削弱形式宜采用圆弧式,且钢板削弱深度宜控制在圆环钢板宽度的20%~30%。 相似文献
996.
水位埋深对菖蒲萌发和幼苗生长的影响 总被引:1,自引:0,他引:1
在直径35.5cm、深100cm的试验桶内装填厚度80cm的江沙,选择形态和节数一致的菖蒲根状茎栽种到桶内江沙中,调节并控制试验桶水位埋深,模拟研究湿地水位埋深变化对菖蒲萌发和幼苗生长的影响.为湿地生态系统保育和受损区域植被恢复提供理论依据.试验结果表明:(1)水位埋深对菖蒲萌发和幼苗生长有不同程度的影响,水位埋深为-60cm至-20cm条件下菖蒲皆能萌发,且随着水位埋深减小,萌发率降低.试验70d,-20cm试验组菖蒲萌发率达到90%,分别为-50cm和-60cm试验组的2.25和3倍.而0cm水位埋深条件下,菖蒲不萌发;(2)菖蒲幼苗叶长、叶宽和叶面积随水位埋深减小而减小.各试验组间差异极显著(P<0.01),叶片数量也随水位埋深减小而减小,-20cm和-40cm试验组极显著高于-50cm和-60cm试验组(P<0.01),且-60cm水位埋深严重影响菖蒲幼苗的存活,试验70d后菖蒲幼苗相继死亡;(3)随水位埋深减小,菖蒲幼苗叶片Ch1.a和Ch1.b含量下降,Ch1.a/b升高,类胡萝卜素(Car)含量升高,植物通过形态调节和减少色素含量来减少叶片对光能的捕获;(4)水位埋深过小导致的低土壤水分含量还使菖蒲幼苗叶片细胞膜脂过氧化加剧,细胞质膜透性迅速增大;(5)水位埋深影响菖蒲幼苗叶片快速光响应曲线,水位埋深越小,ETRmax和最小饱和光照强度越低,光响应能力越弱, 相似文献
997.
滨海砂矿是目前全球最大的潜在矿产资源之一。以莫桑比克的滨海砂矿作为研究对象,利用光学显微镜、X射线衍射、扫描电镜、等离子体质谱(ICP-MS)等手段对莫桑比克东部滨海砂矿的矿物组成及特征进行了研究。并用数理统计方法讨论了重砂矿的元素赋存状态及其载体矿物。研究结果表明:(1)砂矿的矿石矿物主要为钛铁矿、金红石和锆石,脉石矿物主要为石英和长石。(2)重砂矿的主要化学组分为Ti和zr;Hf及REE为次要组分;而主要有害元素组分Th和U,其总体含量低,故重砂矿对采选加工和产品利用均无明显环境危害。(3)重砂矿中元素含量与粒度之间呈一定相关性,显示zr、Hf、U、Cr、Ta的载体矿物的粒度相对较细;Ti、Fe、V、Nb的载体矿物的粒度相对较粗。 相似文献
998.
1 地震背景
据中国地震台网( CENC)测定,2021年6月10日19时46分07秒,在云南省楚雄州双柏县发生MS5.1地震,震中(24.34°N,101.91°E),震源深度8 km.本次地震共造成楚雄州双柏县、玉溪市峨山县和易门县3个县5个乡镇不同程度受灾,2人受伤,直接经济总损失3440万元(引自云南省地震局关于双柏MS5.1地震灾害直接经济损失评估工作报告). 相似文献
999.
DING Guoan CHAN Chuenyu GAO Zhiqiu YAO Wenqing LI Yoksheung CHENG Xinghong MENG Zhaoyang YU Haiqing WONG Kamhang WANG Shufeng MIAO Qiuju 《中国科学D辑(英文版)》2005,48(Z2)
The vertical structures and their dynamical character of PM2.5 and PM10 over Beijing urban areas are revealed using the 1 min mean continuous mass concentration data of PM2.5 and PM10 at 8, 100, and 320 m heights of the meteorological observation tower of 325 m at Institute of Atmospheric Physics, Chinese Academy of Sciences (IAP CAS tower hereafter) on 10―26 August, 2003, as well as the daily mean mass concentration data of PM2.5 and PM10 and the continuous data of CO and NO2 at 8, 100 (low layer), 200 (middle layer), and 320 m (high layer) heights, in combination with the same period meteorological field observation data of the meteorological tower. The vertical distributions of aerosols observed on IAP CAS tower in Beijing can be roughly divided into two patterns: gradually and rapidly decreasing patterns, I.e. The vertical distribution of aerosols in calm weather or on pollution day belongs to the gradually decreasing pattern, while one on clean day or weak cold air day belongs to the rapidly decreasing pattern. The vertical distributive characters of aerosols were closely related with the dynamical/thermal structure and turbulence character of the atmosphere boundary layer. On the clean day, the low layer PM2.5 and PM10 concentrations were close to those at 8 m height, while the concentrations rapidly decreased at the high layer, and their values were only one half of those at 8 m, especially, the concentration of PM2.5 dropped even more. On the clean day, there existed stronger turbulence below 150 m, aerosols were well mixed, but blocked by the more stronger inversion layer aloft, and meanwhile, at various heights, especially in the high layer, the horizontal wind speed was larger, resulting in the rapid decrease of aerosol concentration, I.e. Resulting in the obvious vertical difference of aerosol concentrations between the low and high layers. On the pollution day, the concentrations of PM2.5 and PM10 at the low, middle, and high layers dropped successively by, on average, about 10% for each layer in comparison with those at 8 m height. On pollution days, in company with the low wind speed, there existed two shallow inversion layers in the boundary layer, but aerosols might be, to some extent, mixed below the inversion layer, therefore, on the pollution day the concentrations of PM2.5 and PM10 dropped with height slowly; and the observational results also show that the concentrations at 320 m height were obviously high under SW and SE winds, but at other heights, the concentrations were not correlated with wind directions. The computational results of footprint analysis suggest that this was due to the fact that the 320 m height was impacted by the pollutants transfer of southerly flow from the southern peripheral heavier polluted areas, such as Baoding, and Shijiazhuang of Hebei Province, Tianjin, and Shandong Province, etc., while the low layer was only affected by Beijing's local pollution source. The computational results of power spectra and periods preliminarily reveal that under the condition of calm weather, the periods of PM10 concentration at various heights of the tower were on the order of minutes, while in cases of larger wind speed, the concentrations of PM2.5 and PM10 at 320 m height not only had the short periods of minute-order, but also the longer periods of hour order. Consistent with the conclusion previously drawn by Ding et al., that air pollutants at different heights and at different sites in Beijing had the character of "in-phase" variation, was also observed for the diurnal variation and mean diurnal variation of PM2.5 and PM10 at various heights of the tower in this experiment, again confirming the "in-phase" temporal/spatial distributive character of air pollutants in the urban canopy of Beijing. The gentle double-peak character of the mean diurnal variation of PM2.5 and PM10 was closely related with the evident/similar diurnal variation of turbulent momentum fluxes, sensible heat fluxes, and turbulent kinetic energy at various heights in the urban canopy. Besides, under the condition of calm weather, the concentration of PM2.5 and PM10 declined with height slowly, it was 90% of 8 m concentration at the low layer, a little lesser than 90% at the middle layer, and 80% at the high layer, respectively. Under the condition of weak cold air weather, the concentration remarkably dropped with height, it was 70% of 8 m concentration at the low layer, and 20%―30% at the middle and high layers, especially the concentration of PM2.5 was even lower. 相似文献
1000.
利用远震接收函数偏移成像方法获得青藏高原西部Hi-Climb项目剖面北段地壳结构转换波成像。结果显示班公-怒江缝合带下方拉萨地体上地壳向N仰冲,下地壳向N俯冲,而羌塘地块上地壳向S仰冲,下地壳向S俯冲,可能意味着青藏高原西部拉萨地块和羌塘地块具有复杂的拼合过程。结合前人的岩石学研究成果,建立了新特提斯北洋盆洋壳S向俯冲、距今60~50Ma印度板块与欧亚板块碰撞后,拉萨地块的下地壳向羌塘地块下俯冲,而后印度板块俯冲到羌塘地块下方的地块拼合模式 相似文献