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1.
Large rock slope failures play a pivotal role in long-term landscape evolution and are a major concern in land use planning and hazard aspects. While the failure phase and the time immediately prior to failure are increasingly well studied, the nature of the preparation phase remains enigmatic. This knowledge gap is due, to a large degree, to difficulties associated with instrumenting high mountain terrain and the local nature of classic monitoring methods, which does not allow integral observation of large rock volumes. Here, we analyse data from a small network of up to seven seismic sensors installed during July–October 2018 (with 43 days of data loss) at the summit of the Hochvogel, a 2592 m high Alpine peak. We develop proxy time series indicative of cyclic and progressive changes of the summit. Modal analysis, horizontal-to-vertical spectral ratio data and end-member modelling analysis reveal diurnal cycles of increasing and decreasing coupling stiffness of a 260,000 m3 large, instable rock volume, due to thermal forcing. Relative seismic wave velocity changes also indicate diurnal accumulation and release of stress within the rock mass. At longer time scales, there is a systematic superimposed pattern of stress increased over multiple days and episodic stress release within a few days, expressed in an increased emission of short seismic pulses indicative of rock cracking. Our data provide essential first order information on the development of large-scale slope instabilities towards catastrophic failure. © 2020 The Authors. Earth Surface Processes and Landforms published by John Wiley & Sons Ltd.  相似文献   
2.
Knowledge about the stochastic nature of heterogeneity in subsurface hydraulic properties is critical for aquifer characterization and the corresponding prediction of groundwater flow and contaminant transport. Whereas the vertical correlation structure of the heterogeneity is often well constrained by borehole information, the lateral correlation structure is generally unknown because the spacing between boreholes is too large to allow for its meaningful inference. There is, however, evidence to suggest that information on the lateral correlation structure may be extracted from the correlation statistics of the subsurface reflectivity structure imaged by surface-based ground-penetrating radar measurements. To date, case studies involving this approach have been limited to 2D profiles acquired at a single antenna centre frequency in areas with limited complementary information. As a result, the practical reliability of this methodology has been difficult to assess. Here, we extend previous work to 3D and consider reflection ground-penetrating radar data acquired using two antenna centre frequencies at the extensively explored and well-constrained Boise Hydrogeophysical Research Site. We find that the results obtained using the two ground-penetrating radar frequencies are consistent with each other, as well as with information from a number of other studies at the Boise Hydrogeophysical Research Site. In addition, contrary to previous 2D work, our results indicate that the surface-based reflection ground-penetrating radar data are not only sensitive to the aspect ratio of the underlying heterogeneity, but also, albeit to a lesser extent, to the so-called Hurst number, which is a key parameter characterizing the local variability of the fine-scale structure.  相似文献   
3.
Abstract

The ground vibrations during pile driving operation have a drastic potential to undermine the surrounding structures both in land and reclaimed land. Particularly, reclaimed land necessitates ample application of pile driving due to the weak land condition. To prevent the structural damage, attenuation of the ground vibrations to an allowable level through active isolation of circular open trench is the scope of this study. In this research, finite element simulations of continuous impact pile driving process from the ground surface was executed with particular attention to the pile-soil interaction, and thereby, the efficiency of open trench application in attenuation of the unsafe distance of different structures was surveyed using the vibration sensitivity degree. Regarding the crucial parameters of an open trench (depth, width, and location), it was concluded that a sufficient high depth can attenuate the unsafe distance up to 68%, the trench width variations are less effective, and an average pile-trench distance is the most efficient option. The excavation volume was also concluded as another crucial parameter in open trench design which takes all three parameters into account. The trench depth equal to the pile’s maximum critical depth of vibration was inferred for an optimum design.  相似文献   
4.
Based on statistical data and population flow data for 2016,and using entropy weight TOPSIS and the obstacle degree model,the centrality of cities in the Yangtze River Economic Belt(YREB)together with the factors influencing centrality were measured.In addition,data for the population flow were used to analyze the relationships between cities and to verify centrality.The results showed that:(1)The pattern of centrality conforms closely to the pole-axis theory and the central geography theory.Two axes,corresponding to the Yangtze River and the Shanghai-Kunming railway line,interconnect cities of different classes.On the whole,the downstream cities have higher centrality,well-defined gradients and better development of city infrastructure compared with cities in the middle and upper reaches.(2)The economic scale and size of the population play a fundamental role in the centrality of cities,and other factors reflect differences due to different city classes.For most of the coastal cities or the capital cities in the central and western regions,factors that require long-term development such as industrial facilities,consumption,research and education provide the main competitive advantages.For cities that are lagging behind in development,transportation facilities,construction of infrastructure and fixed asset investment have become the main methods to achieve development and enhance competitiveness.(3)The mobility of city populations has a significant correlation with the centrality score,the correlation coefficients for the relationships between population mobility and centrality are all greater than 0.86(P<0.01).The population flow is mainly between high-class cities,or high-class and low-class cities,reflecting the high centrality and huge radiating effects of high-class cities.Furthermore,the cities in the YREB are closely linked to Guangdong and Beijing,reflecting the dominant economic status of Guangdong with its geographical proximity to the YREB and Beijing's enormous influence as the national political and cultural center,respectively.  相似文献   
5.
利用2000—2016年的县域台风灾害历史灾情数据,选取受灾人数、死亡人数、倒损房屋数、农作物受灾面积和直接经济损失为评估指标,在对各项指标进行分级的基础上,通过灰色关联分析法建立了以县域为单位的台风灾害综合灾损指标,对所选取市县的台风灾害损失情况进行了分级评估分析。结果表明,所选取的指标能够快速实现不同台风灾害、不同市县间的台风灾害严重程度的对比分析,具有实际应用价值。灾害等级分布结果显示,东南沿海市县为台风灾害多发区,浙江省、广东省和福建省的各市县为严重灾害(特大型、大型灾害)的易发区;8月、9月为严重灾害的多发时间。以不同登陆地点、不同影响范围的1210号“达维”台风和1513号“苏迪罗”台风为例,对灾情评估的合理性进行了验证。  相似文献   
6.
将在一定时空限定范围内的不同低轨卫星COSMIC、GRACE、CHAMP、FY3C的电离层掩星电子密度剖面定义为一个掩星对来对比分析不同类型掩星电离层产品。结果表明:COSMIC掩星对之间的电子密度剖面整体轮廓符合得很好,电子密度剖面主要在250 km以下和500 km以上存在较大的偏差,250~500 km的电子密度整体偏差较小,统计得到的COSMIC掩星对的电子密度参量NmF2和hmF2的相关系数能分别达到0.99和0.97,具有高度相关性,不同COSMIC卫星之间没有明显的系统误差;COSMIC、GRACE、CHAMP和FY3C不同低轨卫星间的电子密度剖面略有差异,通过统计电子密度参量NmF2和hmF2之间的相关系数,COSMIC和CHAMP的相关系数分别为0.95和0.86,COSMIC和GRACE的相关系数分别为0.98和0.94,COSMIC和FY3C的相关系数分别为0.96和0.92,不同掩星类型之间的电子密度参量之间也具有高度相关性,验证了不同卫星任务GPS掩星电离层剖面的一致性。  相似文献   
7.
云南曲靖地区的关底组产出世界闻名的潇湘脊椎动物群(Xiaoxiang Vertebate Fauna),但其地层的划分对比和时代归属一直存有争议,特别是其下部地层的划分及时代归属争议最大。通过在曲靖城南以关底组下段地层为主的刘家冲剖面上开展详细的野外及室内地层古生物学研究工作,文章厘清了该剖面上的志留纪地层,并依据采自数个层位样品中丰富的鱼类微体化石材料探讨了关底组下部的地质时代。研究结果表明:刘家冲剖面上出露的志留纪地层根据岩性变化特征可划分为关底组Ⅰ段(岳家山段)、Ⅱ段(崇家湾段)和Ⅲ段(彩莲段);Ⅰ段的下部以浅黄色、浅黄绿色含砾粉砂质泥岩、钙质粉砂岩为主,未见化石,而上部以深灰色、灰黑色页岩为主,含少量腕足类Lingula sp.及双壳类;Ⅱ段则以灰绿色、暗紫红色页岩互层、并夹薄层状灰岩为主,从下往上灰岩夹层逐渐增多,含丰富的腕足类、海百合茎等无脊椎动物化石及鱼类微体化石;在关底组Ⅲ段地层中首次发现的鱼类微体化石多样性高,门类比较齐全,包括无颌类、盾皮鱼类、棘鱼类和硬骨鱼类四大早期脊椎动物类群,从鱼群组成面貌上看隶属于潇湘脊椎动物群扬子鱼类组合(Yangtze Fish Assemblage)。笔者主要依据对其中棘鱼类的全球对比分析研究,并在结合牙形类等无脊椎动物化石研究进展及新认识的基础上,深入探讨了关底组下部Ⅰ段及Ⅱ段的地质时代。关底组Ⅱ段的时代应为志留纪罗德洛世高斯特晚期(late Gorstian, Ludlow),关底组Ⅰ段含砾岩层之上、含盾皮鱼类“王氏鱼”(Wangolepis)的地层,则应归入罗德洛世高斯特早期(early Gorstian, Ludlow),而在该剖面上尚未发现鱼类化石的关底组Ⅰ段下部,目前还不能确定全部归入高斯特阶(Gorstian),有可能会下延到温洛克统(Wenlock)之中。文章中相关工作的开展,不仅为中国志留纪生物地层的精深研究提供了古鱼类学方面的可靠证据,而且为探讨早期脊椎动物演化提供了新的地质年代意见。  相似文献   
8.
经物探分析在河北省张家口尚义县大青沟镇南海子村东南1.0 km存在深部断裂构造,为了寻找开发坝上地区地热资源,决定在该位置施工一口2000 m深地热井,即穿过该断裂构造寻找导水通道,完成地热井施工任务。施工中采用了CMD180T型钻机,该钻机采用了先进的全液压传动系统,自动化程度高,性能优异,可大大降低操作人员的劳动强度且易于搬迁、易于操作。其优势在这次地热井工程施工过程中得到了充分的体现。  相似文献   
9.
通过对济南2013年12月—2018年2月PM2.5质量浓度数据分析得出,PM2.5质量浓度平均和最大值均为冬季最高,春秋季次之,夏季最低;PM2.5质量浓度值1月和12月最高,8月最低;其质量浓度呈明显的逐年递减趋势。在不同风向上PM2.5质量浓度存在显著差异性,在N风向和ESE(盛行)风向上均出现了质量浓度较大值,一方面与污染物的异地输送有关,另一方面与济南的特殊地形有关。研究表明,无论污染源在山脉的背风侧还是迎风侧,都很容易导致高浓度污染;尤其在冬季,山脉地形还会加重逆温影响,使污染程度加重。通过相关性研究发现,冬季、春季和秋季,PM2.5质量浓度与相对湿度和平均总云量均呈正相关,与日照时数及其距平呈负相关;冬季,PM2.5质量浓度与平均气温及其距平以及最高、最低气温均呈正相关,与平均、最高、最低气压均呈负相关;春季和秋季,PM2.5质量浓度与气温距平值呈正相关;夏季和秋季,PM2.5质量浓度与日降水量呈负相关,而且随着雨强的增大,对PM2.5的洗消作用越显著。上述变量间相关性均通过了P≤0.01显著性检验。  相似文献   
10.
机器学习结合遥感等其他数据反演土壤盐分含量(Soil Salt Content, SSC)较少关注对模型精度影响较大的建模特征变量和模型参数的优选。本文基于自适应遗传算法(Adaptive Genetic Algorithm, AGA)同步优选建模特征变量和模型参数的支持向量回归(Support Vector Regression, SVR)算法反演三工河流域2016年SSC,并分析其在不同土地利用类型的分布特征。建模特征变量和模型参数的同步优选及实验设计如下:首先基于Landsat 8 OLI和SRTM高程数据提取7类共40个盐渍化相关因子,经相关分析初步筛选出候选特征变量,分别代入AGA、遗传算法(Genetic Algorithm, GA)和格网搜索算法(Grid Search, GS)同步优选SVR的建模特征变量和模型参数,并建立盐渍化监测模型(AGA-SVR、GA-SVR、GS-SVR)。结果表明:① AGA-SVR精度最优,GA-SVR次之,GS-SVR最差,相较于GS-SVR,AGA-SVR的R2/RMSE提高了44.65%;② 三工河流域非、轻度、中度、重度盐渍地和盐土的面积占比分别为42.83%、11.02%、15.88%、9.22%、21.05%;③ 草地和未利用地主要以非盐渍地和盐土为主,耕地和林地中非盐渍地分布比例均为最大;不同土地利用类型的SSC均值和标准差均呈现未利用地>草地>耕地>林地的规律。本研究的建模特征变量和模型参数的优选方法可在一定程度上提高盐渍化监测的精度。关键词:盐渍化;遗传算法;机器学习;特征优选;参数优化;土壤盐分含量;土地利用;相关分析  相似文献   
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