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51.
中国北方夏半年最长连续无降水日数的变化特征 总被引:20,自引:2,他引:18
利用1951-2004年中国北方各气象台站夏半年逐日降水资料,建立最长连续无降水日数时间序列,采用经验模态分解(EMD)求出该序列的本征模态函数(IMF),分析原序列内在的多尺度振荡变化.用小波分析原序列的突变.结果表明,连续无降水日数的变化主要是由IMF1、IMF2和IMF3这3个本征模态构成,3-4 a、8-10 a尺度的振荡对整个变化起主要作用.近50年来,最长连续无降水日数呈线性增加趋势;显著增加的年份在1960年和1994年前后,与干旱现象的发生有紧密的联系. 相似文献
52.
53.
西安地区气温的年代际变化及其受城市化进程的影响 总被引:4,自引:0,他引:4
利用西安及周边14个观测站1966~2005年冬季(12~2月)、夏季(6~8月)平均气温及城市化信息的相关统计资料,以各站与14站区域平均气温的差值(空间距平值)反映城市热岛空间分布,以城区站与区域平均气温的差值代表城市影响程度,探讨了城市影响及城市化指数在气温突变和热岛效应中的作用。分析结果表明:1)冬夏季,近城区、平原区、浅塬山区与整个区域平均气温变化一致,表现为大尺度的气候变化特征,而城区和全区变化同步性差,呈现小尺度气候变化特征。2)冬季全区在1977年发生增温突变,这次突变以自然增温为主,与全国(1980年)突变时间基本同步,但略显偏早,比西北区(1984年)偏早7年。夏季全区在1988年发生第一次气温突变增温,比西北区(1993年)偏早5年,偏早原因可能是地形和城市化共同作用。3)冬、夏季平均热岛强度分别为0.65℃、0.46℃,具有典型性。4)城区冬季突变点(1989年)后西安城区的平均气温增加1.3℃,城市影响在气温突变中贡献了0.35℃。夏季突变点(1987年)后平均气温增加了0.4℃,城市影响贡献增温0.39℃,夏季气温突变可能主要是由城市影响造成的。5)城市房屋竣工面积、市区总人口、公... 相似文献
54.
浅谈液动冲击锤施工工艺在硬岩层中的应用 总被引:2,自引:0,他引:2
在河南禹州煤田景家洼矿区勘探中,遇到一层约90米左右的长石石英砂岩(俗称平顶山砂岩),钻进效率低,材料消耗大,通过ZK—09孔改用冲击回转钻进,取得了较好效果,介绍在硬岩层运用多工艺技术的施工方法。 相似文献
55.
数字图像监测系统应用于高压导线覆冰试验(英文) 总被引:1,自引:0,他引:1
A real-time system of numeral image manipulation technology is employed to inspect the dynamic displacement of an engineering
structure. First, the CCD vidicon aims at the fixed point. The image of the fixed point on the structure is gathered by a
picture gathering card. By processing pictures with a self-programmed software, the real-time space coordinate of the calibration
device can be obtained. Finally, the data is dealt with to get the movement curve, and the dynamic displacement is carried
out. The system is applied to the test of a high voltage icing conductor. The result indicates that the dynamic data of the
ice shedding conductor includes jumping amplitude, displacement-time curve and attenuation process.
Supported by the National Natural Science Foundation of China (No.50778077, No.50608036). 相似文献
56.
JULIEN BOURGET SEBASTIEN ZARAGOSI NADINE ELLOUZ‐ZIMMERMANN NICOLAS MOUCHOT THIERRY GARLAN JEAN‐LUC SCHNEIDER VALENTINE LANFUMEY SIGFRIED LALLEMANT 《Sedimentology》2011,58(2):376-406
This study investigates the morphology and Late Quaternary sediment distribution of the Makran turbidite system (Makran subduction zone, north‐west Indian Ocean) from a nearly complete subsurface mapping of the Oman basin, two‐dimensional seismic and a large set of coring data in order to characterize turbidite system architecture across an active (fold and thrust belt) margin. The Makran turbidite system is composed of a dense network of canyons, which cut into high relief accreted ridges and intra‐slope piggyback basins, forming at some locations connected and variably tortuous paths down complex slopes. Turbidite activity and trench filling rates are high even during the Holocene sea‐level highstand conditions. In particular, basin‐wide, sheet‐like thick mud turbidites, probably related to major mass wasting events of low recurrence time, drape the flat and unchannellized Oman abyssal plain. Longitudinal depth profiles show that the Makran canyons are highly disrupted by numerous thrust‐related large‐scale knickpoints (with gradients up to 20° and walls up to 500 m high). At the deformation front, the strong break of slope can lead to the formation of canyon‐mouth ‘plunge pools’ of variable shapes and sizes. The plunge pools observed in the western Makran are considerably larger than those previously described in sub‐surface successions; the first insights into their internal architecture and sedimentary processes are presented here. Large plunge pools in the western Makran are associated with large scoured areas at the slope break and enhanced sediment deposition downstream: high‐amplitude reflectors are observed inside the plunge pools, while their flanks are composed of thin‐bedded, fine‐grained turbidites deposited by the uppermost part of the turbidity flows. Thus, these architectural elements are associated with strong sediment segregation leading to specific trench‐fill mechanisms, as only the finer‐grained component of the flows is transferred to the abyssal plain. However, the Makran accretionary prism is characterized by strong along‐strike variability in tectonics and fluvial input distribution that might directly influence the turbidite system architecture (i.e. canyon entrenchment, plunge pool formation or channel development at canyon mouths), the sedimentary dynamics and the resulting sediment distribution. Channel formation in the abyssal plain and trench‐fill characteristics depend on the theoretical ‘equilibrium’ conditions of the feeder system, which is related closely to the balance between erosion rates and tectonic regime. Thus, the Makran turbidite system constitutes an excellent modern analogue for deep‐water sedimentary systems with structurally complex depocentres, in convergent margin settings. 相似文献
57.
井周流场,水跃值与井内水位降深的关系 总被引:2,自引:0,他引:2
徐至进 《水文地质工程地质》1993,20(6):24-27,52
本文以单井稳定流抽水为例,从井固流场与地下水向集水井幅射流的涌水量方程入手,阐明井结构,井周泥浆堵塞和井内水位降深的关系。证明了水跃值是井周泥浆堵塞降深与井周三维流域或紊流引起的二次项降深(简称“井损“)之代数和,并得出了水跃值不同组成部分随井内降深变化而变化的规律。从而提出了消除水跃值,利用裘布依涌水量方程进行水文地质参数计算。 相似文献
58.
ZHENG Hongwei LI Tingdong HE Rizheng YANG Hui NIU Xiao ZOU Changqiao 《《地质学报》英文版》2020,94(4):1159-1166
To better understand the lithosphere mantle collision tectonics between the India plate and Asia plate, we determine three dimensional P wave velocity structure beneath western Tibet using 27,439 arrival times from 2,174 teleseismic events recorded by 182 stations of Hi-CLIMB Project and 16 stations in the north of Hi-CLMB. Our tomographic images show the velocity structure significantly difference beneath northern and southern Qiangtang, which can further prove that the Longmu Co-Shuanghu ophiolitic belt is a significant tectonic boundary fault zone. There are two prominent high velocity anomalies and two prominent low velocity anomalies in our images. One obvious high velocity anomalies subduct beneath the Tibet at the long distance near 34°N, whereas it is broke off by an obvious low velocity anomaly under the IYS. We interpret them as northward subducting Indian lithosphere mantle and the low velocity anomanly under IYS likely reflects mantle material upwelling triggered by tearing of the northward subduction Indian lithosphere. The other prominent high velocity anomaly was imaged at a depth from 50 km to 200 km horizontal and up to the northern Qiangtang with its southern edge extending to about 34°N through Hoh Xil block. We infer it as the southward subducting Asia lithosphere mantle. The other widely low velocity anomaly beneath the Qiangtang block lies in the gap between the frontier of India plate and Asia plate, where is the channel of mantle material upwelling. 相似文献
59.
1 INTERNAL HYDRAULIC JUMPS AND LOCAL WATER ENTRAINMENT Traveling and stationary internal hydraulic jumps in two-layer flow can occur in the following situations (Fig. 1). When a stratified fluid flows over an obstacle created by a sudden blockage, the layer of increased depth within the heavier fluid will propagate upstream as a traveling hydraulic jump. When the heavier fluid overtops the obstacle it will flow along the downstream face of the obstacle as a supercritical flow… 相似文献
60.