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41.
王丽  叶青  周康雅  丁烨 《地震工程学报》2020,42(1):143-149,214
江苏南京台北南测道2013—2016年年初出现了与邻近的南京江宁台同步的地电阻率长趋势上升变化,2016年的年中出现了与江宁台和稍远距离的江苏高邮、新沂台同步的趋势下降变化。本文用年变形态、消除年变等数据处理方法并联系该区降雨量分析了南京台等地电阻率长程观测数据,基于视电阻率变化与地下介质内部骨架电阻率ρ°、裂隙水电阻率ρf、裂隙率ν之间的本构关系讨论了地电阻率趋势变化的原因,得到:该台南北向测道地电阻率趋势上升变化起因于台站及周边区域性地下介质的应力调整过程,动力来源可能是本区域地壳局部构造运动。  相似文献   
42.
为解决矿井水灾事故应急快速反应、高效决策的现场需求,针对矿井水灾事故的不确定性、复杂性和紧迫性等特点,运用多案例分析法,解析了11起典型矿井水灾事故,提出了判别“情景”和事故“情景”两个关键概念,定义了集合{突水水源,突水通道,采掘方式,出水量,淹没范围,生存空间}为矿井水灾事故的情景,并运用AHP分析法计算了6个情景要素各自的权重。确立了“情景-应对”应用在矿井水灾应急决策领域的实现途径,详细阐述了构建情景库、案例库、对策库的方法以及“情景-应对”型矿井水灾应急决策方案的生成过程,并提出了以“黄金72小时” “8天8夜”为时间节点的多阶段矿井水灾事故应急决策机制,案例推演应用表明,该应急决策机制不仅规范了事故应急流程,而且实现了精准、快速、高效的目标。   相似文献   
43.
刺胞动物是华南寒武纪早期海洋生态系统的重要组成部分,针对这类化石的研究有助于深入了解寒武纪多幕式爆发事件。本文主要根据寒武纪早期扬子板块陕南宽川铺生物群、湖北岩家河生物群以及澄江生物群产出的刺胞动物,探讨刺胞动物在寒武纪早期的演化框架,取得了以下初步认识。截至目前,所发现的寒武纪早期刺胞动物绝大多数都属于水母超纲,珊瑚纲的化石记录在寒武系幸运阶、第二阶保存较为罕见。其中寒武系幸运阶刺胞动物的化石记录全部属于底栖类型,体型小,且具有多种类型的身体辐射对称形式,绝大多数类型可以确定属于直接发育。第二阶刺胞动物仍以底栖固着类型为主,体形增大,仅见两、四辐射对称形式;而寒武系第三阶刺胞动物仍有底栖固着类型,但游泳的水母开始出现,体型增大明显,代表水母冠群的出现,以及世代交替的复杂生命周期的正式建立。从幸运阶到第三阶刺胞动物体型明显增大,可能与海水氧气含量增加有关。在寒武纪大爆发的背景下,刺胞动物的分异度和丰度在寒武系幸运阶就已经达到顶峰,然后在第二阶、第三阶开始衰减,这种变化可能与两侧对称动物辐射演化有关。华南刺胞动物的化石记录表明,寒武纪大爆发并非纯粹的一幕式爆发,其中充斥着一系列生物群的替代甚至灭绝事件。  相似文献   
44.
长江口扁担沙动力地貌变化过程研究   总被引:1,自引:0,他引:1  
河口浅滩不仅为人类提供宝贵湿地资源,而且是调控河势演变的重要因素。研究河口浅滩动力地貌演变规律对航道整治、湿地生态开发及岸堤防护等具有重要价值。本文利用最近150多年的长江口历史海图资料、实测水深与水文泥沙数据,分析长江口南支最大的浅滩—扁担沙动力地貌演变格局及其变化机制。结果表明:(1) 1860?2016年期间,扁担沙反复历经淤积?冲刷?淤积,浅滩由最初水下阴滩发育出露而形成纺锤状沙体,随后演变为细长扁担状,沙尾切滩成爪状沙体,下扁担沙则伴随爪状缝隙被不断填充而淤长;(2)自1954年洪水到目前,扁担沙?2 m、?5 m等深线包络的面积与体积整体上均呈现增长态势,其中面积年均增长率分别为0.88 km2/a和0.81 km2/a,体积年均增长率分别为1.3×106 m3/a和5×106 m3/a;扁担沙浅滩在不同时期冲淤变化不同,其中1998年出现大幅度冲刷,平均冲刷厚度达到1.4 m;(3)扁担沙体积变化和长江入海泥沙的增减无直接联系,但与入海径流量的变化密切相关;(4)白茆沙“南强北弱”的河势、南北港分流工程以及东风西沙水库的建立导致扁担沙向北推移。  相似文献   
45.
为进一步了解冲绳海槽浮岩的物理性质和地球化学特征差异,对冲绳海槽中部岩心沉积物S9中的浮岩进行了微观结构和地球化学组成分析。结果显示,冲绳海槽中部存在白色、灰白色及棕色3种浮岩,其中灰白色浮岩又可以根据构造特征分为气孔构造和流动构造浮岩两个亚类。浮岩的地球化学组成表明白色、灰白色及棕色浮岩都是由玄武质岩浆经过充分的分离结晶作用形成的流纹质或流纹英安质火山岩。玄武质岩浆在演化的过程中发生了斜长石、角闪石、辉石、Fe-Ti氧化物、磷灰石等矿物的结晶分离。结合有孔虫14C年龄,认为浮岩是冲绳海槽中部距今13.1 ka左右的长英质火山活动的产物。演化程度相对较低的棕色浮岩具有比白色浮岩高的TiO2, Al2O3, Fe2O3, MgO, CaO含量,且棕色浮岩具有相对低的稀土总量和轻稀土总量。根据浮岩的物理性质及地球化学组成差异推测,岩浆的黏度和压力是影响浮岩构造特征的主要因素。黏度大、连续减压的岩浆易于形成具有流动构造和密集气孔的浮岩,黏度小、阶段性减压的岩浆易于形成气孔大而疏松的浮岩。  相似文献   
46.
47.
Considerable debate revolves around the relative importance of rock type, tectonics, and climate in creating the architecture of the critical zone. We demonstrate the importance of climate and in particular the rate of water recharge to the subsurface, using numerical models that incorporate hydrologic flowpaths, chemical weathering, and geomorphic rules for soil production and transport. We track alterations in both solid phase (plagioclase to clay) and water chemistry along hydrologic flowpaths that include lateral flow beneath the water table. To isolate the role of recharge, we simulate dry and wet cases and prescribe identical landscape evolution rules. The weathering patterns that develop differ dramatically beneath the resulting parabolic interfluves. In the dry case, incomplete weathering is shallow and surface parallel, whereas in the wet case, intense weathering occurs to depths approximating the base of the bounding channels, well below the water table. Exploration of intermediate cases reveals that the weathering state of the subsurface is strongly governed by the ratio of the rate of advance of the weathering front itself controlled by the water input rate, and the rate of erosion of the landscape. The system transitions between these end‐member behaviours rather abruptly at a weathering front speed ‐ erosion rate ratio of approximately 1. Although there are undoubtedly direct roles for tectonics and rock type in critical zone architecture, and yet more likely feedbacks between these and climate, we show here that differences in hillslope‐scale weathering patterns can be strongly controlled by climate.  相似文献   
48.
Climate change has fundamentally altered the water cycle in tropical islands, which is a critical driver of freshwater ecosystems. To examine how changes in streamflow regime have impacted habitat quality for native migratory aquatic species, we present a 50‐year (1967–2016) analysis of hydrologic records in 23 unregulated streams across the five largest Hawaiian Islands. For each stream, flow was separated into direct run‐off and baseflow and high‐ and low‐flow statistics (i.e., Q10 and Q90) with ecologically important hydrologic indices (e.g., frequency of flooding and low flow duration) derived. Using Mann–Kendall tests with a running trend analysis, we determined the persistence of streamflow trends through time. We analysed native stream fauna from ~400 sites, sampled from 1992 to 2007, to assess species richness among islands and streams. Declines in streamflow metrics indicated a general drying across the islands. In particular, significant declines in low flow conditions (baseflows), were experienced in 57% of streams, compared with a significant decline in storm flow conditions for 22% of streams. The running trend analysis indicated that many of the significant downward trends were not persistent through time but were only significant if recent decades (1987–2016) were included, with an average decline in baseflow and run‐off of 10.90% and 8.28% per decade, respectively. Streams that supported higher native species diversity were associated with moderate discharge and baseflow index, short duration of low flows, and negligible downward trends in flow. A significant decline in dry season flows (May–October) has led to an increase in the number of no‐flow days in drier areas, indicating that more streams may become intermittent, which has important implications for mauka to makai (mountain to ocean) hydrological connectivity and management of Hawai'i's native migratory freshwater fauna.  相似文献   
49.
The run‐off volume altered by the construction of hydropower plants affects ecohydrological processes in catchments. Although the impacts of large hydropower plants have been well documented in the literature, few studies have been conducted on the impacts of small cascaded hydropower plants (SCHPs). To evaluate the impacts of SCHPs on river flow, we chose a representative basin affected by hydropower projects and, to a lesser degree, by other human activities, that is, the Qiuxiang River basin in Southern China. The observed river discharge and climate data during the period of 1958–2016 were investigated. The datasets were divided into a low‐impact period and a high‐impact period based on the number of SCHPs and the capacities of the reservoirs. The daily river discharge alteration was assessed by applying the Indicators of Hydrologic Alteration. To separate the impact of the SCHPs on the local river discharge from that of climate‐related precipitation, the back‐propagation neural network was used to simulate the monthly average river discharge process. An abnormal result was found: Unlike large reservoirs in large watersheds, the SCHPs regulated the flows during the flood season but were not able to mitigate the droughts during the dry season due to their limited storage and the commonly occurring inappropriate interregulations of the SCHPs. The SCHPs also reduced the annual average river discharge in the research basin. The contribution of the SCHPs to the river discharge changes was 85.37%, much higher than the contributions of climate change (13.43%) and other human activities (1.20%). The results demonstrated that the impacts of the SCHPs were different from those of large dams and reservoirs that regulate floods and relieve droughts. It is necessary to raise the awareness of the impacts of these river barriers.  相似文献   
50.
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