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41.
2020年7月12日,河北唐山发生MS5.1地震,河北省地震预警系统成功地处理并产出了这次地震预警各种结果数据,本文借助此次地震对河北地震预警网内震中距200km范围内台站产出质量以及地震预警前5次处理结果进行详细分析。此次地震发生在河北地震预警网内,平均台间距为10km,首台触发后3s、震后6s发布首次处理结果,与编目结果相比,震级偏差为-1.3,震中位置偏差为2.6km,盲区半径为18km。随着参与定位台站数量增多,震级与位置偏差越来越小,但震级仍整体偏小。河北地震预警网台站产出质量整体较高,其中烈度台作为地震预警最重要的组成部分,是决定预警效果的关键因素。本次地震震中距200km范围内,烈度台平均信噪比为48,震中距50km范围内平均信噪比为112,符合预警系统对信噪比的要求。本次地震预警结果表明,河北地震预警网内台站布局基本合理,波形质量较高,地震预警系统处理软件在本次地震中预警产出效果较好,已经具备了一定的地震预警能力。  相似文献   
42.
严畅达  徐亚 《地球物理学报》2019,62(6):2115-2127
利用GRACE卫星重力可对地震引起的大范围重力变化进行观测,并从重力数据中发现主要的变化特征.发生于2010年的MW8.8智利地震震级较高,可观测到震中附近广泛的同震和震后长期重力变化.本文基于GRACE RL05Level-2时变重力场数据,对2010年智利地震的同震和震后长期变化进行了计算.对同震变化的计算发现,智利地震引起的同震变化极值达-5μGal,而本文为减小水文信号的干扰而采用的3年平均的方法可以获得良好的效果.在对震后重力变化的计算中发现,智利地震震后在2011—2016年间的重力变化存在先增大后逐渐衰减的过程.对震后变化的拟合表明,智利地震震中附近有约1μGal的震后重力变化,震后变化的特征时间约1.1年.同时,在智利地震中未出现较明显的两个震后变化阶段(短期、长期).  相似文献   
43.
The network technology has provided impetus and channels for the development of sci-tech periodicals and promoted the transformation of the publication mode of Journal of Palaeogeography(Chinese Edition). Through the independent website construction,providing readers with diversified access to articles,diversified communication methods,personalized accurate article push,joining the OSID open science program,etc.,a three-dimensional publication mode adapted to the development of periodicals has been gradually formed.  相似文献   
44.
Scientists’ ideas, beliefs, and discourses form the frames that shape their choices about which research to pursue, their approaches to collaboration and communicating results, and how they evaluate research outputs and outcomes. To achieve ocean sustainability, there are increasing calls for new levels of engagement and collaboration between scientists and policy-makers; scientists’ willingness to engage depends on their current and evolving frames. Here, I present results about how scientists involved in diverse fields of ocean research perceived their role as scientists working at or near the ocean science–policy interface and how this related to their perceptions regarding ocean research priorities. The survey of 2187 physical, ecological and social scientists from 94 countries showed that scientists held different perspectives about their appropriate level of engagement at the ocean science–policy interface and the relative primacy of science versus politics in formulating ocean policy. Six clusters of scientists varied in their frames; three clusters accounted for 94% of the sample. Of 67 research questions identified from 22 research prioritization and horizon scanning exercises, the top eight were shared among all three clusters, showing consistency in research priorities across scientists with different framings of their role at the science–policy interface. Five focused on the mechanisms and effects of global change on oceans, two focused on data collection and management for long-term ocean monitoring, and one focused on the links between biodiversity and ecological function at different scales. The results from this survey demonstrated that scientists’ framings of the role of ocean science at the science–policy interface can be quantified in surveys, that framing varies among scientists, and that research priorities vary according to the framings.  相似文献   
45.
Adaptive governance focuses our attention on the relationships between science and management, whereby the so-called ‘gaps’ between these groups are seen to hinder effective adaptive responses to biophysical change. Yet the relationships between science and governance, knowledge and action, remain under theorized in discussions of adaptive governance, which largely focuses on abstract design principles or preferred institutional arrangements. In contrast, the metaphor of co-production highlights the social and political processes through which science, policy, and practice co-evolve. Co-production is invoked as a normative goal (Mitchell et al., 2004) and analytical lens (Jasanoff, 2004a, Jasanoff, 2004b), both of which provide useful insight into the processes underpinning adaptive governance. This paper builds on and integrates these disparate views to reconceptualize adaptive governance as a process of co-production. I outline an alternative conceptual framing, ‘co-productive governance’, that articulates the context, knowledge, process, and vision of governance. I explore these ideas through two cases of connectivity conservation, which draws on conservation science to promote collaborative cross-scale governance. This analysis highlights the ways in which the different contexts of these cases produced very different framings and responses to the same propositions of science and governance. Drawing on theoretical and empirical material, co-productive governance moves beyond long standing debates that institutions can be rationally crafted or must emerge from context resituate adaptive governance in a more critical and contextualized space. This reframing focuses on the process of governance through an explicit consideration of how normative considerations shape the interactions between knowledge and power, science and governance.  相似文献   
46.
清岭沟位于四川省青川县碾子村五社,该区工程地质条件复杂。"5.12"地震后沟内出现大量崩塌落石和松散堆积物,为泥石流的爆发提供了充足的物源,2008年8月清岭沟地区发生连续强降雨,8月25日清岭沟爆发了泥石流。目前沟源及沟道两侧发育一处规模较大的潜在不稳定斜坡、三处规模较大的危岩体、一处形成于"5.12"地震期间的崩塌堆积物,一旦遭遇暴雨等不良地质作用这些潜在物源极易失稳,成为清岭沟泥石流的物源,使清岭沟再次发生泥石流灾害,威胁清岭沟下游村落及公路。通过野外对清岭沟进行地质调查、室内试验和动力学特征分析提出了UX—150型泥石流栅栏、拦砂坝、排导槽和桥涵改造的综合治理措施。  相似文献   
47.
2008年5月12日14时28分,四川阿坝藏族羌族自治州境内的汶川县(31°N,103.4°E)发生了里氏8.0级浅源地震。震区范围长240km,宽30km,等震线呈长椭圆形,长轴为北东向,震中烈度约为10度,深度为12~19km。震区涉及四川绵阳市北川,德阳、汶川,成都、都江堰、广元、重庆以及甘肃、云南、陕西、河南等地区。除了吉林、黑龙江和新疆地区外,全国都有震感。在北川、汶川等多地区出现次生灾害。地震的发震构造是龙门山构遣带中央断裂带。  相似文献   
48.
The theoretical background of the wave-current interactions, including the transformation of the wave spectrum and breaking waves due to currents, are first presented in this work. In the next part of the work, experimental data resulted from studies performed in an offshore wave basin of the Danish Hydraulic Institute concerning the wave-current interactions were presented in parallel with some wave model simulations performed in similar conditions. SWAN, which is presently the state-of-the-art spectral model for the wave transformations, was adopted for performing numerical simulations. In general, a good agreement was encountered between the experimental data and the simulation results.  相似文献   
49.
In a series of attempts to research and document relevant sloshing type phenomena, a series of experiments have been conducted. The aim of this paper is to describe the setup and data processing of such experiments. A sloshing tank is subjected to angular motion. As a result pressure registers are obtained at several locations, together with the motion data, torque and a collection of image and video information. The experimental rig and the data acquisition systems are described. Useful information for experimental sloshing research practitioners is provided. This information is related to the liquids used in the experiments, the dying techniques, tank building processes, synchronization of acquisition systems, etc. A new procedure for reconstructing experimental data, that takes into account experimental uncertainties, is presented. This procedure is based on a least squares spline approximation of the data. Based on a deterministic approach to the first sloshing wave impact event in a sloshing experiment, an uncertainty analysis procedure of the associated first pressure peak value is described.  相似文献   
50.
汶川地震后四川省都江堰市龙池镇群发泥石流灾害   总被引:3,自引:0,他引:3  
在2008 -05 - 12汶川地震后的极震区暴发了多处群发性泥石流灾害,龙溪河流域的龙池“8·13”群发泥石流灾害就是其中之一.龙溪河流域在2010 -08 -13遭遇强降雨过程,流域内共有45处暴发泥石流,其中34处沟谷泥石流,11处坡面泥石流,泥石流冲出总量共334×104m3,造成大量泥沙淤积在龙溪河下游河道内,该段河床平均淤高5 m.诱发“8·13”群发泥石流的最大1h降雨量达75 mm,相当于20 a一遇的1h降雨量.“8·13”群发泥石流中88.9%的泥石流活动集中在汶川地震发震断裂带附近3 km范围内,仅有11.1%的泥石流分布在距汶川地震发震断裂带3~5 km范围.除受汶川地震发震断裂带影响外,泥石流分布还受地层岩性和地形的影响.龙池群发泥石流以粘性泥石流为主,占总数的88.9%,而稀性泥石流很少,仅占总数的11.1%.小规模泥石流占多数,达到总数的60.0%;大规模泥石流很少,仅占总数的11.1%,其他为中等规模泥石流.泥石流流域主要为小流域,<1 km2的泥石流流域占多数,达到总数的68.9%;而>3 km2的泥石流流域很少,仅占总数的6.7%.龙溪河河道内的泥沙淤积受泥石流活动、主河道坡度和宽度的控制,河道上半段没有泥沙淤积,而下半段有大量泥沙淤积.龙溪河河道内淤积的泥沙颗粒粒径受沿岸泥石流流域岩性的影响,粒径从龙溪河上游到下游呈明显的从大到小的变化规律.龙溪河流域在遭遇较强降雨时还会暴发泥石流灾害;在汶川地震发震断裂带附近的山区,在暴雨激发下还有可能暴发群发性泥石流灾害.在雨季到来时需要提高警惕,预防地震次生泥石流灾害,特别要提防不易被发现的小流域泥石流灾害,做好防灾预案和预警报工作,最大程度地减轻泥石流灾害.  相似文献   
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