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1.
A reliable estimation of sediment transport in gravel‐bed streams is important for various practical engineering and biological studies (e.g., channel stability design, bed degradation/aggradation, restoration of spawning habitat). In the present work, we report original laboratory experiments investigating the transport of gravel particles at low bed shear stresses. The laboratory tests were conducted under unsteady flow conditions inducing low bed shear stresses, with detailed monitoring of the bed topography using a laser scanner. Effects of bed surface arrangements were documented by testing loose and packed bed configurations. Effects of fine sediments were examined by testing beds with sand, artificial fine sand or cohesive silt infiltrated in the gravel matrix. Analysis of the experimental data revealed that the transport of gravel particles depends upon the bed arrangement, the bed material properties (e.g., size and shape, consolidation index, permeability) and the concentration of fine sediments within the surface layer of moving grains. This concentration is directly related to the distribution of fine particles within the gravel matrix (i.e., bottom‐up infiltration or bridging) and their transport mode (i.e., bedload or suspended load). Compared to loose beds, the mobility of gravel is reduced for packed beds and for beds clogged from the bottom up with cohesive fine sediments; in both cases, the bed shear stress for gravel entrainment increases by about 12%. On the other hand, the mobility of gravel increases significantly (bed shear stress for particle motion decreasing up to 40%) for beds clogged at the surface by non‐cohesive sand particles. Copyright © 2017 John Wiley & Sons, Ltd.  相似文献   
2.
Most source-to-sink studies typically focus on the dynamics of clastic sediments and consider erosion, transport and deposition of sediment particles as the sole contributors. Although often neglected, dissolved solids produced by weathering processes contribute significantly in the sedimentary dynamics of basins, supporting chemical and/or biological precipitation. Calcium ions are usually a major dissolved constituent of water drained through the watershed and may facilitate the precipitation of calcium carbonate when supersaturating conditions are reached. The high mobility of Ca2+ ions may cause outflow from an open system and consequently loss. In contrast, in closed basins, all dissolved (i.e. non-volatile) inputs converge at the lowest point of the basin. The endoreic Great Salt Lake basin constitutes an excellent natural laboratory to study the dynamics of calcium on a basin scale, from the erosion and transport through the watershed to the sink, including sedimentation in lake's waterbody. The current investigation focused on the Holocene epoch. Despite successive lake level fluctuations (amplitude around 10 m), the average water level seems to have not been affected by any significant long-term change (i.e. no increasing or decreasing trend, but fairly stable across the Holocene). Weathering of calcium-rich minerals in the watershed mobilizes Ca2+ ions that are transported by surface streams and subsurface flow to the Great Salt Lake (GSL). Monitoring data of these flows was corrected for recent anthropogenic activity (river management) and combined with direct precipitation (i.e. rain and snow) and atmospheric dust income into the lake, allowing estimating the amount of calcium delivered to the GSL. These values were then extrapolated through the Holocene period and compared to the estimated amount of calcium stored in GSL water column, porewater and sediments (using hydrochemical, mapping, coring and petrophysical estimates). The similar estimate of calcium delivered (4.88 Gt) and calcium stored (3.94 Gt) is consistent with the premise of the source-to-sink approach: a mass balance between eroded and transported compounds and the sinks. The amount of calcium deposited in the basin can therefore be predicted indirectly from the different inputs, which can be assessed with more confidence. When monitoring is unavailable (e.g. in the fossil record), the geodynamic context, the average lithology of the watershed and the bioclimatic classification of an endoreic basin are alternative properties that may be used to estimate the inputs. We show that this approach is sufficiently accurate to predict the amount of calcium captured in a basin and can be extended to the whole fossil record and inform on the storage of calcium.  相似文献   
3.
Based on the observations of a squall line on 11 May 2020 and stratiform precipitation on 6 June 2020 from two X-band dual-polarization phased array weather radars (DP-PAWRs) and an S-band dual-polarization Doppler weather radar (CINRAD/SA-D), the data reliability of DP-PAWR and its ability to detect the fine structures of mesoscale weather systems were assessed. After location matching, the observations of DP-PAWR and CINRAD / SA-D were compared in terms of reflectivity (ZH), radial velocity (V), differential reflectivity (ZDR), and specific differential phase (KDP). The results showed that: (1) DP-PAWR has better ability to detect mesoscale weather systems than CINRAD/SA-D; the multi-elevation-angles scanning of the RHI mode enables DP-PAWR to obtain a wider detection range in the vertical direction. (2) DP-PAWR’s ZH and V structures are acceptable, while its sensitivity is worse than that of CINRAD/SA-D. The ZH suffers from attenuation and the ZH area distribution is distorted around strong rainfall regions. (3) DP-PAWR’s ZDR is close to a normal distribution but slightly smaller than that of CINRAD/SA-D. The KDP products of DP-PAWR have much higher sensitivity, showing a better indication of precipitation. (4) DP-PAWR is capable of revealing a detailed and complete structure of the evolution of the whole storm and the characteristics of particle phase variations during the process of triggering and enhancement of a small cell in the front of a squall line, as well as the merging of the cell with the squall line, which cannot be observed by CINRAD/SA-D. With its fast volume scan feature and dual-polarization detection capability, DP-PAWR shows great potential in further understanding the development and evolution mechanisms of meso-γ-scale and microscale weather systems.  相似文献   
4.
利用无人机摄影测量技术航测天景山断裂孟家湾的地表地形地貌数据,以获取的数字高程模型为基础,通过构造地貌精细解译进一步提取地震断层的水平位移量及垂直位错量,计算断层的平均水平滑动速率,并分析判识了古地震事件。结果表明:①研究区发育3期河流阶地T3、T2、T1,且均被断错,最新的冲沟T0未见错动;②在T1阶地面上提取水平位移量为(7.77±0.98)m,计算得到全新世中期以来的平均水平滑动速率为0.86~0.91 mm/a;③在T1阶地面上跨陡坎提取垂直位错量为(0.61±0.11)m,其坡度存在2个明显拐点,代表2次地表破裂型地震事件,推测在12000 a前,即晚更新世末期或全新世初期以来至少发生过2次地表破裂型地震。  相似文献   
5.
碳酸盐矿物作为地壳中沉积作用与流体活动的直接产物,记录了沉积、热事件的全过程,是进行同位素年代学研究的理想矿物。碳酸盐矿物传统的U系列定年法、同位素稀释法定年体系成功率低,耗时长,导致定年难度大,限制了碳酸盐矿物地质年代学的发展。近年来,碳酸盐矿物激光原位U-Pb定年技术取得重要进展,使低U碳酸盐矿物地质年代的精确测定成为了可能。碳酸盐矿物LA-ICP-MS U-Pb年代学具有空间分辨率高、耗时短等显著优势,被广泛应用于地学研究中。文章归纳总结了碳酸盐矿物同位素定年体系的基本原理及分析方法,回顾了近5年碳酸盐矿物LA-ICP-MS U-Pb年代学应用的研究进展,重点论述该方法在确定脆性变形时代、岩石破裂以及盆地流体流动时限、碳酸盐地层的成岩时代和成矿热液活动时限4个方面的应用,并梳理了该方法尝试解决的科学问题和取得的新认识。碳酸盐矿物定年方法的发展和应用,增强了人们对地壳变形和演化的理解,解决了部分迄今为止难以确定的地质体历史演化问题,为未来地质年代学的研究提供了新思路,在地球科学研究中具有重要潜力。  相似文献   
6.
干旱戈壁荒漠区地处我国西北部地区,天山、北山、祁连山三大多金属成矿带横贯其中,成矿条件优越,找矿尤其是找隐伏矿的潜力巨大,但受风成砂土的影响,很难获知覆盖层下方的矿化信息.穿透性地球化学已被证实是有效寻找隐伏矿的方法,其被定义为能探测深部隐伏矿体发出的直接信息的勘查地球化学理论与方法技术.笔者在花牛山铅锌矿开展土壤微细粒全量测量、金属活动态测量(水溶态测量、黏土吸附态测量、铁锰氧化物态测量)和地电化学测量多种穿透性地球化学勘查方法实测工作,结果表明,5种测量方法分析数据主成矿元素(铅、锌)异常衬度高,变异系数大,富集成矿可能性大,地球化学异常与深部隐伏矿体位置吻合,相比较而言,土壤微细粒全量测量效果最好,黏土吸附态测量、铁锰氧化物态测量和地电化学测量效果较好,水溶态测量效果稍差;所选方法技术针对干旱戈壁荒漠区寻找隐伏铅锌矿是有效的.气固介质中内生条件下的纳米金属微粒的发现为利用土壤作为采样介质的穿透性地球化学方法技术(土壤微细粒测量、金属活动态测量)提供了理论基础.电提取泡塑载体中大量的微米级的黏土矿物颗粒发现,以及微量元素异常与铁、铝等常量元素异常高度一致,初步推断地电化学测量提取过程是对黏土矿物颗粒选择性吸附过程.  相似文献   
7.
对2016年全年颗粒物监测浓度数据进行统计分析,得到了安徽省颗粒物污染的空间分布、浓度和粒径,以及污染传输特征。结果表明,淮河以北、沿江和江淮之间、长江以南和皖南山区城市颗粒物污染随地理位置不同表现出明显的区域化特征,污染程度由北向南减轻,污染过程明显表现出由北向南逐步扩散传输的规律,污染程度越重,污染深入南方的范围越广,持续时间也越长。冬季污染较重的城市,上午出现明显的高浓度时段,全天变化为“双峰双谷”型。夏、秋季节夜间细颗粒物(PM2.5)浓度贡献比增加。PM2.5与PM10(可吸入颗粒物)质量浓度比值冬季最高,春季较低。污染重的城市冬季PM2.5占比高。  相似文献   
8.
黑色细粒沉积岩系沉积学和孔隙结构研究对于沉积环境恢复、页岩气储层评价和有利储层预测具有重要意义.利用下扬子地区最新完钻的XYZ-1钻井资料,综合钻井岩心、岩石薄片、XRD分析、氩离子-场扫描电镜等手段,开展幕府山组细粒沉积岩系的沉积学和孔隙结构研究.结果表明,幕府山组岩性组成以块状、纹层状深色(碳质)泥岩、浅灰色纹层状泥质灰岩、泥晶灰岩为主,夹泥灰岩、云灰岩、陆屑灰岩和白云岩、安山岩、角砾岩等,以含硅质粘土质混合页岩相和含硅质粘土质页岩相为主,属于下扬子海盆的陆架浅海碳酸盐岩台地-深水海湾-潮坪环境.幕府山组黑色细粒沉积岩孔隙类型多样,有机孔为2~200 nm,面孔率为2.86%~15.90%,孔隙分布较均匀,但总体连通性较差,部分与脆性矿物或粘土矿物共生的有机孔分布不均匀.无机孔以粒内孔、粒间孔、溶蚀孔为主,部分为晶间孔和矿物层间孔.除黄铁矿晶间孔外,大部分无机孔均大于2 μm,最大可达50 μm.细粒沉积岩中的微裂缝广泛发育,构造微裂缝形态复杂,缝宽一般20~500 μm,常常被方解石和石英充填.成岩微裂缝长度一般大10μm,缝宽50~200 nm.幕府山组顶部深水海湾相和底部泥坪-蒸发台地相黑色细粒沉积岩TOC含量为2.66%~21.27%,平均值为6.30%,有机孔、无机孔和微裂缝发育,粘土矿物和脆性矿物含量较高,具备优质页岩气储层发育的有利条件.   相似文献   
9.
储层预测的精度直接制约着油气开发的经济性与有效性,而低频信息的补偿是改善储层反演效果的有利途径之一。常规的测井曲线内插低通滤波建模方法难以精细表征复杂地质背景下的低频模型。为降低研究区特殊地质体对储层反演带来的影响,采用迭代法建立低频模型,建模中分步考虑压实作用、特殊岩性等因素影响,并通过反演效果不断迭代更新低频模型,最终准确建立反映不同岩性(包含火山岩)的反演低频模型。研究表明: 该方法能够保证储层反演结果的可靠性,为储层精细描述提供了资料; 同时基于反演结果,对东海西湖凹陷W气田主力层(P1)有利储层进行重新刻画,优化了开发井水平段的位置,该井实施结果证实钻遇了优质储层。用迭代法建立的低频模型为复杂地质背景地区储层预测提供了一种更有效的建模方法。  相似文献   
10.
杨微 《地震工程学报》2019,41(6):1407-1418
断裂带首波是沿着存在物性差异界面传播的一种地震折射波,在传播过程中携带了断裂带的重要信息,对分析和研究断裂带以及附近区域的精细结构提供了一种新的分析方法。本文主要阐述断裂带首波的产生原理、波形特征、识别及分析方法等,介绍目前国际上识别及利用断裂带首波开展断裂带特征方面的研究现状,并针对地震危险区域存在物性差异的断裂带,提出可结合密集台阵观测技术,利用断裂带首波进行断裂带精细结构探测及其变化监测研究,提高潜在孕震环境及发生机理的认识水平。  相似文献   
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