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1.
近年来广西地震发生频率明显提高,陆续发生了3次5级以上中强地震,包括2016年苍梧5.4级地震、2019年北流5.2级地震和2019年靖西5.2级地震,这可能意味着广西地区进入了地震活跃期。2019年靖西5.2级地震造成较重的房屋建筑物破坏,是分析广西房屋震害很好的样本。本文对各烈度区内不同结构类型房屋的震害现象进行了整理和统计,分析了不同结构类型房屋的震害特征与震害原因。结果显示:简易房屋除年久失修的之外基本完好;砌体结构房屋因结构不规则,缺乏抗震构造措施等,破坏较重,且破坏形式多样;框架结构房屋主体完好但填充墙会出现破坏。  相似文献   

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2020年5月18日巧家县发生5.0级地震,结合震区背景信息和现场调查,详细阐述此次地震烈度分布和房屋震害特征,并计算各类结构房屋的震害指数和破坏比。调查发现,本次地震的最高烈度为Ⅵ度,长轴呈NW向,与灾区地震地质构造背景、仪器烈度分布具有较好的一致性。对比分析本次地震与昭通地区、云南其他地区近年来大小相近的历史地震Ⅵ度区震害指数,结果表明,本次地震房屋震害指数相较于昭通其他地区明显偏低,但比云南其他地区偏高。分析认为,近年来巧家县各项房屋改造工程切实提高了当地房屋抗震水平,但仍需加强房屋改造建设,尤其是加快推进老旧房屋拆除及新房建设工作,进一步提升房屋抗震能力。  相似文献   

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云南鲁甸6.5级地震灾害特点浅析   总被引:5,自引:4,他引:1  
通过对2014年8月3日云南鲁甸6.5级地震震害开展实地调查,对灾区破坏情况进行总体介绍,并就各烈度区特征和建筑物震害、地震地质灾害、工程结构震害进行分析,初步得出本次地震的一些震害特点.一是灾区人口密度大,人员死亡较集中.人员死亡主要集中在Ⅷ和Ⅸ度区.二是地震振动强,灾区破坏严重.本次地震震源深度12km,极震区烈度高达Ⅸ度,震源破裂在11s内集中释放.三是抗震能力弱,房屋破坏严重.灾区属国家级贫困区,农村民居抗震能力弱,且多数民房坐落在河谷陡坡上,边坡效应加重房屋震害,重灾区砖木和土木房屋成片损毁、倒塌.四是灾区条件恶劣,救灾难度大.震区活动断裂密集发育、地质破碎疏松、地形崎岖不平,又恰值雨季,诱发极其严重次生地质灾害,导致人员伤亡,造成灾区大面积交通、通信、电力中断,救援物资与救援力量无法及时发挥作用.  相似文献   

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用抽样调查的方法,对大同SXDZ199103阳高1991年3月26日5.8级地震4~7度区的建筑物进行了调查。按倒塌、严重破坏、中等破坏、轻微破坏、基本完好,划分房屋的破坏程度,求出房屋的破坏比、户均房屋数、各烈度区总户数及总房间数。根据当地建筑材料的实际价格,工时费等确定了房屋的单价,又据国家地震局震害防御司颁布的震害评估细则,确定了建筑物破坏的损失比。利用破坏比、损失比、房屋单价、各烈度区房间总数对这次地震的经济损失进行了估算。  相似文献   

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新疆伽师-岳普湖5.8级地震宏观震中位于岳普湖县的铁热木乡和兵团农三师42团的北面,震中烈度为Ⅶ度。本次地震影响范围位于巴楚-伽师6.8级地震Ⅵ-Ⅶ度影响区域内,累计破坏效应造成了较为严重的房屋破坏。通过对大量震害资料和强震记录的分析,根据建筑物的破坏情况和场地峰值加速度衰减特征,在尽可能排除累计破坏效应的基础上确定了地震烈度分布,分析了不同烈度区中的建筑物结构破坏特点及其与地震动影响场的关系。  相似文献   

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在历次地震中,地形、地貌及场地条件复杂的山区容易出现房屋建筑震害异常情况。分析震害异常的原因,对于进行建筑抗震设防以减少地震灾害损失具有重要意义。本文主要对2014年盈江524、530两次地震后Ⅷ度区的卡场镇麻竹岭岗房屋破坏及场地条件情况进行调查,根据麻竹岭岗的地形条件由高到低分为3个区,对3个区内的建筑破坏情况进行分析比较,表明震害程度呈现出明显的从山底至山顶逐渐加大的趋势,揭示出显著的山体影响作用。重点对山顶的穿斗木结构破坏情况进行了分析,找出了造成建筑结构破坏的几个不利因素,包括山丘地形顶部放大效应、覆盖土层放大效应以及多次地震震害累积效应。  相似文献   

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2014年云南鲁甸6.5级地震烈度分布与房屋震害特征   总被引:1,自引:0,他引:1  
阐述了云南鲁甸6.5级地震烈度分布情况,并给出了各地震烈度区的房屋建筑震害特征,探讨了不同结构房屋分烈度的破坏比、震害指数,与中国地震烈度表进行了对比,认为调查点数据较为合理,支持各烈度区划定.  相似文献   

8.
2014年云南鲁甸M_S6.5地震人员震害研究   总被引:1,自引:0,他引:1  
2014年云南鲁甸MS6.5地震造成1993年以来云南地区同等级地震人员死亡、失踪数量最大震害。以灾区政府部门统计得到的人员震害资料为基础,对鲁甸地震产生的人员震害特点及其引发原因进行了详细分析,同时对地震人员死亡、失踪数量巨大的影响因素进行了分析讨论。结果表明:人员死亡、失踪震害主要发生在Ⅷ度区附近及以上区域,发生地点以活动断裂和河流两侧及其附近尤为明显,分布呈现NW和NE两个较为明显的优势方向,但总体以NW向分布为主;造成人员死亡最主要的原因为房屋倒塌严重,其次为山体滑坡、崩塌滚石等地震地质灾害;造成人员失踪的原因有房屋倒塌和山体滑坡;影响地震人员死亡、失踪数量巨大的直接因素有房屋建筑抗震能力、地震地质灾害破坏程度和人为因素等,间接因素有人口密度、自然地理环境、地质构造条件、气候条件和生态环境等。在上述分析的基础上还提出了一些减少震害的建议和措施。  相似文献   

9.
云南地区简易房屋的震害指数研究   总被引:3,自引:1,他引:2  
周光全 《地震研究》2011,34(1):88-95
1992~2005年,云南地区共发生56次破坏性地震,积累了丰富的震害资料.2005年10月,<地震现场工作第4部分:灾害直接损失评估>(GB/T 18208.4-2005)发布实施,提出简易房屋的概念,并将原有5个破坏等级归并为3个破坏等级.针对这种变化,统计了云南56次地震不同烈度区简易房屋的破坏比,按破坏比对原规...  相似文献   

10.
不同烈度区农村自建砖砌体房屋震害特征研究   总被引:2,自引:0,他引:2  
农村自建砖砌体房屋通常没有正规的设计和施工导致该类房屋抗震性能较差。文中以汶川8.0级地震为例,在不同烈度区选择具有代表性地区的农村自建砖砌体房屋为研究对象,分析了该类型房屋不同烈度区的震害特征。通过使用数量化术语的震害描述,对在不同烈度区的农村自建砖砌体房屋的墙体、楼板屋盖、附属结构的破坏进行了震害分析,得到了地震作用下仅考虑结构振动破坏时该类型房屋的破坏特征。最后也给出了降低农村自建砖砌体房屋震害的一些建议。  相似文献   

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《国际泥沙研究》2014,(4):F0003-F0003
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《国际泥沙研究》2014,(2):F0003-F0003
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《国际泥沙研究》2014,(3):F0003-F0003
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A procedure for short-term rainfall forecasting in real-time is developed and a study of the role of sampling on forecast ability is conducted. Ground level rainfall fields are forecasted using a stochastic space-time rainfall model in state-space form. Updating of the rainfall field in real-time is accomplished using a distributed parameter Kalman filter to optimally combine measurement information and forecast model estimates. The influence of sampling density on forecast accuracy is evaluated using a series of a simulated rainfall events generated with the same stochastic rainfall model. Sampling was conducted at five different network spatial densities. The results quantify the influence of sampling network density on real-time rainfall field forecasting. Statistical analyses of the rainfall field residuals illustrate improvement in one hour lead time forecasts at higher measurement densities.  相似文献   

18.
The partitioning of rain water into throughfall, stemflow and interception loss when passing through plant canopies depends on properties of the respective plant species, such as leaf area and branch angles. In heterogeneous vegetation, such as tropical forest or polycultural systems, the presence of different plant species may consequently result in a mosaic of situations with respect to quantity and quality of water inputs into the soil. As these processes influence not only the water availability for the plants, but also water infiltration and nutrient leaching, the understanding of plant effects on the repartitioning of rain water may help in the optimization of land use systems and management practices. We measured throughfall and stemflow in a perennial polyculture (multi‐strata agroforestry), monocultures of peach palm (Bactris gasipaes) for fruit and for palmito, a monoculture of cupuaçu (Theobroma grandiflorum), spontaneous fallow and primary forest during one year in central Amazonia, Brazil. The effect on rain water partitioning was measured separately for four useful tree species in the polyculture and for two tree species in the primary forest. Throughfall at two stem distances, and stemflow, differed significantly between tree species, resulting in pronounced spatial patterns of water input into the soil in the polyculture system. For two tree species, peach palm for fruit (Bactris gasipaes) and Brazil nut trees (Bertholletia excelsa), the water input into the soil near the stem was significantly higher than the open‐area rainfall. This could lead to increased nutrient leaching when fertilizer is applied close to the stem of these trees. In the primary forest, such spatial patterns could also be detected, with significantly higher water input near a palm (Oenocarpus bacaba) than near a dicotyledonous tree species (Eschweilera sp.). Interception losses were 6·4% in the polyculture, 13·9 and 12·3% in the peach palm monocultures for fruit and for palmito, respectively, 0·5% in the cupuaçu monoculture and 3·1% in the fallow. With more than 20% of the open‐area rainfall, the highest stemflow contributions to the water input into the soil were measured in the palm monocultures and in the fallow. Copyright © 1999 John Wiley & Sons, Ltd.  相似文献   

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Red tide, a recurrent phenomenon has become conspicuous in several Kashmir lake ecosystems since 1991. The responsible organism (Euglena pedunculata), a rare flagellate rediscovered in the Kashmir Himalaya (Khan 1993) caused first and unprecedented red tide outbreak, constituting a maximum of 96% of resident numerical phytoplankton density in Dal Lake. At present, conflicting hypotheses exist on the generation of causal assemblage(s) imparting redness to waters: Jeeji Bai (1991) linked its origin to acid precipitation – a fallout of burning oil‐fields during the Gulf War – whilst Khan (1993) holds local factor(s) responsible. Field/experimental studies support the latter contention that the influx of untreated sewage, in unison with warm temperatures, high levels of PhAR, iron and interruption to hydrological flow‐pattern together with absence/or reduction in grazing activity created conducive environmental milieu for red tide outbreak. Dal Lake “red tide” drifted the bloom‐inoculum to other waters, including Lake Wular, where additional ecological niches were carved out, threatening the aesthetic value and biological diversity of Kashmir lakes. Ecological monitoring indicates frequent seasonal red tide occurrence in Dal Lake (including summer‐autumn event of 1998) which testifies its unabated eutrophication status. Further studies are needed on ecological adaptability and biogeographic distribution of this rare and unique red tide‐causing flagellate.  相似文献   

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