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31.
利用美国研制的WRF-Var同化系统以及中国的云迹风资料,对2008年6月10日长江流域的一次暴雨过程做了三维和四维变分同化试验。试验结果表明:上述两种方案均能提高模式对大到暴雨预报的准确率,特别是四维方案在提高大暴雨的准确率方面表现更好,这是降水预报的重要方面;两个同化试验均能在一定程度上改善对要素场的预报,使用四维同化方案能够更有效地调整初始场、降低各要素场的预报误差。诊断结果表明:此次大暴雨过程是在高空低槽和低层切变线的共同作用下发生的,并有高、低空急流与之配合,具有较好的动力条件;低空的西南急流,不但为产生暴雨提供了所需的水汽输送,也为造成暴雨强对流所需的位势不稳定提供了必要的能量。 相似文献
32.
在现有GPS星座和大气球对称假设条件下,利用射线追踪法对掩星事件进行了数值模拟,讨论了大气折射指数垂直分布、LEO卫星轨道倾角和高度对GPS掩星切点水平漂移的影响情况。结果表明:在太阳活动剧烈的白天和夜间两种典型情况下,切点平均水平漂移变化约20 km;对735 km高度的LEO卫星来说,轨道倾角在130°附近时,切点平均水平漂移最小,并随着倾角向0°或180°变化,切点平均水平漂移均增大,但在55°附近时随倾角变化稍有波动;对倾角为70°的LEO卫星来说,当轨道高度从400 km变化到1500 km时,切点平均水平漂移变化约141 km,且随高度增加而单调减小 相似文献
33.
Separation of electrostatic charge during the transport of particles by wind adds a force to the gravitational and fluid forces that determine trajectories of particles moving by saltation. Evaluating this electrostatic force requires the electric field strength very near the saltation surface, and charge-to-mass ratios for the moving particles. Field mill readings 4 cm above the surface in a moderate blizzard showed electric field strength as high as +30 kV m-1. Another experiment gave charge-to-mass ratios of individual saltation particles in low-level drifting that ranged between +72 C kg-1 and -208 C kg-1. From these measurements, we estimated electrostatic forces as large as the gravitational force on some saltating particles. Including forces of this magnitude in the equations of motion significantly alters predicted saltation trajectories from those for uncharged particles. Predictions appear reasonable that for some saltating particles, the electrostatic force prevents new surface impacts. These results should help improve models of energy transfer in the planetary boundary layer during blizzards and sandstorms. 相似文献
34.
35.
接地电阻测量中应注意的几个问题 总被引:1,自引:0,他引:1
参照国家有关规范和标准的要求,对接地装置、接地电阻及其测量原理进行分析和总结,指出4102型和摇表式接地电阻仪测量接地电阻时电极的布置方法对测量结果的影响。 相似文献
36.
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某水电站长探洞的岩爆特征 总被引:1,自引:1,他引:1
周春宏 《地质灾害与环境保护》2006,17(1):78-81
从岩爆发生的形式、特征等方面,闸述处于高地应力地区的某水电站长探洞在掘进过程中所发生岩爆问题,并提出对于埋深大、洞径大引水隧洞,由于存在尺寸效应问题,在今后的施工过程中将不可避免地遇到岩爆问题,且发生岩爆的量级将比长探洞要严重,局部洞段可能性发生强烈—极强岩爆,将严重威胁施工设备和作业人员的安全,并制约工程的进展。 相似文献
38.
H. Thveniaut C. Delor J.M. Lafon P. Moni P. Rossi D. Lahondre 《Precambrian Research》2006,150(3-4):221-256
We present a comprehensive paleomagnetic study on Paleoproterozoic (2173–2060 Ma) plutonic and metamorphic rocks from French Guiana, representative of the full range of the main Transamazonian tectonothermal steps. Twenty-seven groups of directions and poles were obtained from combination of 102 sites (613 samples) based on age constraint, similar lithology and/or geographical proximity. Paleomagnetic results show variations between rocks of different ages which are supposed to be characteristic of magnetizations acquired during uplift and cooling of successive plutonic pulses and metamorphic phases. This is also reinforced by positive field tests (baked contact and reversal tests). Recent U/Pb and Pb/Pb on zircon and complementary 40Ar/39Ar on amphibole and biotite allow questioning the problem of magnetic ages relative to rock formation ages. Estimated magnetic ages, based on amphibole dating as a proxy, enable us to construct a Guiana Shield apparent polar wander path for the 2155–1970 Ma period. It is also possible to present paleolatidudinal evolution and continental drift rates related to specific Transamazonian tectonic regimes.French Guiana and probably the Guiana Shield were located at the Equator from ca. 2155 to 2130 Ma during the Meso-Rhyacian D1 magmatic accretion phase, related to subduction of Eorhyacian oceanic crust. After closure of the Eorhyacian Ocean and collision of West African and Amazonian plates, the Guiana Shield moved. The first evolution towards 60° latitude, occurs after 2080 Ma, during the Neorhyacian D2a post collisional sinistral transcurrent phase. During the Late Rhyacian D2b phase, up to 2050 Ma, the Guiana Shield reaches the pole and starts to move to lower latitudes on an opposite meridian. By the Orosirian D2c phase, from ca. 2050 to 1970 Ma, the Guiana Shield reaches the Equator.Based on the amphibole 40Ar/39Ar dates, we estimate the continental drift between 12 and 16 cm/y for the Meso to Late Rhyacian period followed by a lower rate between 9 and 14 cm/y up to Orosirian time. This study highlights rock ages and magnetic ages are prerequisite to any continental reconstruction especially when it is shown continental drift is important for a 100–200 Ma time period. Our results confirm the possibility of APWP construction on Paleoproterozoic plutonic rocks but suggest improvement will rely on the combination with multidisciplinary approaches such as structural geology and multi-method radiometric dating. 相似文献
39.
利用9个国际纬度观测站的平纬长期变化序列,重新讨论并估计了平极的长期漂移,得到漂移的平均速率为(3.356“±0.142”)×l0-3/a,方向为西经78.7°±2.5°.进一步基于最新的ICE-4G冰期后地壳反弹模型,采用地球上8个冰盖的冰融参数,估计了理论的平极长期漂移方向为西经74.8°.由观测的平极长期漂移速率为约束,基于1066B地球模型,估计得到地球平均下地幔的黏性为vLM=(0.5-1.7)×1022Pa.s,表明vLM应具有近1022Pa.s量级,并认为地球平极的长期漂移很可能是由最近的21000年以来冰期后的地壳反弹所致. 相似文献
40.
The Gulf of Cadiz is swept by the strong saline Mediterranean Outflow Water (MOW). On the Algarve Margin (South Portugal), this current has constructed fine-grained contourite drifts. This margin is dissected by the Portimao Canyon and three short channels that only incise the upper slope, and are absent on a terrace located at mid-slope depths along the Algarve Margin. High-resolution seismic profiles and sediment cores highlight the original architecture of the sedimentary deposits on this terrace. Coarse-grained lenticular chaotic bodies formed during major relative sea-level lowstands are intercalated within the drift. The lobate shape and sandy nature of the lenticular chaotic bodies and their location at the mouths of the three short channels suggest they are gravity-generated deposits that are perched on the middle continental slope.In the Gulf of Cadiz, the interaction between contour current and gravity processes is strongly controlled by climatic variations and relative sea-level changes during the late Quaternary. During cold periods when sea-level was low, erosion intensified on the continental shelf and the deepest part of MOW was active. Sediment was transported downslope through the channels and deposited on sedimentary lobes perched on the mid-slope terrace. During warm periods when relative sea-level was high, the supply of sediment from the shelf was shut off and the shallowest part of MOW was more active. Contourite drifts fill the channels and bury the sandy lobes. 相似文献