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隧道火灾后衬砌结构力学特性与损伤机理研究 被引量:6
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作者 彭立敏 刘宝琛 《中国铁道科学》 EI CAS CSCD 北大核心 2002年第1期136-139,共4页
With the rapid development of transportation industry in China, fire accidents frequently happen in railway tunnels. Fire accidents that happened in railway tunnels can be roughly divided into three types: fire accide... With the rapid development of transportation industry in China, fire accidents frequently happen in railway tunnels. Fire accidents that happened in railway tunnels can be roughly divided into three types: fire accidents of passenger trains; those of freight trains; and those of oil tank trains. The most inflammable and dangerous among them is the fire accidents of oil tank trains, since oil has extremely great danger--it keeps burning long and extensively after it catches fire and the temperature rises fast with a highest temperature of the central flame over 1 000℃ and in some part the temperature goes as high as 1 200℃-1 600℃, which makes it rather difficult to extinguish fire, and thus leads to great damage to tunnel lining. From 1976 to 1998, there have been 8 serious tank train fires accident happened in railway tunnel in China, train traffic had been held up for 2 500 hours and more than 300 person injured (115 person died). As a result, the direct economic loss exceeded RMB30 million and the indirect economic loss was inestimable. Aimed at existing problems in research of fire accident in railway tunnel at present in China, in this paper, following contents have been focused on: 1 The Test and Study of Damage Degree of Tunnel Lining under Different Burning Temperature Grades Adopting the experimental means of really burning down for concrete material and members of tunnel lining under different fire temperature and different ablating time, the rule of change of mechanics behavior and damage degree of lining structure after withstanding high temperature is analyzed, and the empirical curves are obtained. The contents include: (1)The test method, measuring process, and instrument and equipment used. (2)The variety regulation of damage degree (thickness of burn, loosen, shelling) of lining concrete under different fire temperature and different ablating time. (3)The rule of change of compress strength of lining concrete under different fire temperature and different ablating time, as well as the different rules of change and relation of corresponding compress strength between surface burnt and surface borne. (4)The rule of change of tensile strength of lining concrete under different fire temperatures and different ablating time, as well as the corresponding relation between compress strength and tensile strength. (5)Based on the result of the above research, a divide standard of damage classification of lining structure under different burning temperature grade is presented and enduring fire critical time of the tunnel lining caused by fire accident is discussed. 2 Detection Test of Fire Damage Degree of Lining Members The relation between physical mechanical change and ultrasonic wave velocity after the tunnel lining structure damage due to high fire temperature are analyzed with the application of the ultrasonic detection technology. Also discussed is the tunnel fire damage. The relation includes the following: (1)The change of rule of ultrasonic wave velocity under different fire temperature field with different detection means. (2)The relation between remained compress strength and ultrasonic wave velocity of the damaged tunnel lining concrete after high temperature. (3)The relation between remained tensile strength and ultrasonic wave velocity of the damaged tunnel lining concrete after high temperature. (4)The relation between damage deepness and ultrasonic wave velocity of the damaged tunnel lining concrete after high temperature. (5)According to change of ultrasonic wave velocity, the calculation method of depth of the fire damage to lining structure and its practicality are also presented. 3 Damage Mechanism of Tunnel Lining after the Action of High Temperature On the basis of electron scanning microscope observation for lining material before and after being burnt down, the rule of change of microstructure of tunnel lining concrete effected by high temperature is analyzed, and damage mechanism of lining structure under different fire temperatures is discussed. Furthermore, 展开更多
关键词 火灾 衬砌结构 损伤机理 模糊评判 可靠度评估 铁路隧道 力学特性 损伤等级
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在用房屋折旧的估算方法 被引量:3
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作者 邱洪兴 曹双寅 《东南大学学报(自然科学版)》 EI CAS CSCD 1999年第2期59-62,共4页
导致房地产价值下降的损耗可分为3类:环境因素、无形损耗和有形损耗.有形损耗,称之为折旧,由结构功能状态函数来估算,而结构功能状态函数根据结构可靠性的综合模糊评判得出.采用本文提出的折旧计算方法,评估在用房屋的价值能较... 导致房地产价值下降的损耗可分为3类:环境因素、无形损耗和有形损耗.有形损耗,称之为折旧,由结构功能状态函数来估算,而结构功能状态函数根据结构可靠性的综合模糊评判得出.采用本文提出的折旧计算方法,评估在用房屋的价值能较好地反映其实际价值. 展开更多
关键词 折旧 模糊综合评判 房地产 估算 房屋
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建筑物鉴定等级隶属函数与模糊权重的确定 被引量:1
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作者 胡伟 宗传书 蒋云钟 《南水北调与水利科技》 CAS CSCD 2008年第2期39-41,共3页
建筑物可靠性等级隶属度与评价因素权重的合理确定,是模糊综合评判的前提与基础。在现行建筑物鉴定标准的基础上,提出了等级隶属函数概念及模糊权重确定方法,使建筑物可靠性等级的评定更合理和实用。
关键词 建筑结构 可靠性鉴定 模糊方法论
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建筑物可靠性鉴定的模糊综合评判法模型研究 被引量:2
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作者 贾明晓 石北啸 《东北水利水电》 2005年第4期3-4,26,共3页
研究了多级模糊综合评判决策方法在建筑物可靠性鉴定中的应用,建立了新的多因素、多层次的模糊综合评判的模型,利用此模型可实现对建筑物可靠性的全面合理的鉴定,进而为建筑物的加固、改造提供决策的技术依据。
关键词 建筑物 可靠性鉴定 模糊综合评判
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基于Internet/Intranet的既有建(构)筑物可靠性分析与评判系统研究
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作者 孙增寿 韩建刚 董建华 《福州大学学报(自然科学版)》 CAS CSCD 北大核心 2005年第6期776-781,共6页
以模糊综合评判基本理论和评判技术为基础,将互联网技术和建(构)筑物可靠性分析评定理论有机结合起来,提出了基于Internet/Intranet的建(构)筑物可靠性评判系统,实现了既有建(构)筑物可靠性的日常管理及远程分析、诊断与管理.并通过在... 以模糊综合评判基本理论和评判技术为基础,将互联网技术和建(构)筑物可靠性分析评定理论有机结合起来,提出了基于Internet/Intranet的建(构)筑物可靠性评判系统,实现了既有建(构)筑物可靠性的日常管理及远程分析、诊断与管理.并通过在电力系统变电站建(构)筑物可靠性评定中的应用,详细介绍了该系统的主要评判过程和步骤,验证了评判系统的实用性. 展开更多
关键词 既有建筑物 结构可靠性 Internet INTRANET 模糊综合评判 评判系统
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基于FAHP的高层既有结构可靠性评定研究 被引量:1
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作者 康九斯 张凯 +5 位作者 陈兆荣 李波 蔡志立 廖飞 杨春 罗兆津 《施工技术(中英文)》 CAS 2023年第15期35-40,66,共7页
为准确评估烂尾楼的整体可靠性,提出采用三角模糊层次分析法(FAHP)对高层烂尾楼工程进行安全评估,可全面考虑地基基础、上部承重结构、围护系统等因素对结构可靠性的影响,且三角模糊数的引入使专家决策具有更大的余度和容错性,从而有效... 为准确评估烂尾楼的整体可靠性,提出采用三角模糊层次分析法(FAHP)对高层烂尾楼工程进行安全评估,可全面考虑地基基础、上部承重结构、围护系统等因素对结构可靠性的影响,且三角模糊数的引入使专家决策具有更大的余度和容错性,从而有效减少判断的主观性。首先建立高层烂尾住宅楼的递阶层次结构模型,构造各层次元素的模糊判断矩阵,从而计算得到各构件的可靠性等级,根据模糊判断矩阵加权计算得到各层次元素的可靠性等级,最终得出结构的可靠性等级。采用所提出的方法,分析深圳某改造项目的可靠性等级,并建议随楼层数的增加,楼层权重系数的取值线性减小,以突出底层构件对整体结构的控制作用。 展开更多
关键词 高层建筑 安全评估 结构可靠性 模糊层次分析法
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基于模糊综合评判的钢结构厂房可靠性鉴定研究
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作者 王欣怡 刘洪滨 吴国栋 《辽宁科技大学学报》 CAS 2019年第3期222-229,共8页
针对钢结构厂房可靠性问题的复杂性与模糊性,本文尝试采用模糊综合评判法对钢结构单层工业厂房进行可靠性鉴定评级。结合厂房受力特点,建立符合现行规范的评判模型与评判模型中各项指标的隶属函数,运用层次分析法确定各项指标的权重,从... 针对钢结构厂房可靠性问题的复杂性与模糊性,本文尝试采用模糊综合评判法对钢结构单层工业厂房进行可靠性鉴定评级。结合厂房受力特点,建立符合现行规范的评判模型与评判模型中各项指标的隶属函数,运用层次分析法确定各项指标的权重,从而建立完整的钢结构厂房可靠性评估体系,并由此对钢结构单层工业厂房进行多级模糊综合评判。最后,通过某工程实例验证了模糊综合评判方法的可行性,为类似工程的可靠性评估提供参考。 展开更多
关键词 钢结构厂房 可靠性鉴定 模糊综合评判 隶属函数 权重
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