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玻璃钢作地面沉降监测标体的可行性研究 总被引:7,自引:2,他引:7
玻璃钢具有质量轻、强度高、耐腐蚀等特性,可作为达到特定工程目的的成型材料。本文通过论证,认为在地面沉降监测工程中为了更准确灵敏地反映地下岩土的变形,选用轻质高强度的玻璃钢作引测标体是可行的。此外,由于玻璃钢成本低,因此,还可使中小城市开展地面沉降监测时减少基础性投入。 相似文献
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SS-Y���������ͱ궨װ�õ����� 总被引:2,自引:1,他引:1
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SSY-Ⅱ石英伸缩仪与SS-Y伸缩仪的对比分析 总被引:1,自引:0,他引:1
兰州十里店地震台于1985年安装了1台SSY-Ⅱ石英伸缩仪,于2006年又安装了1台SS-Y伸缩仪。对这两套仪器的主要构造部件——基线、换能系统、标定系统进行了对比分析,并从产出资料的趋势变化、调和分析、干扰、地震事件等方面进行了对比分析,总结了这两套仪器各自的优缺点。 相似文献
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基于数字散斑相关方法(DSCM)发展了一种虚拟引伸计测量方法。该方法通过DSCM测量的应变场识别和定位裂纹,然后“事后”在裂纹处虚拟地安装引伸计,再通过DSCM测量的位移场计算裂纹的张开量和错动量。给出了虚拟引伸计的原理和实现方法,并用实验验证了虚拟引伸计的可靠性,同时分析并标定出虚拟引伸计在实测中可达到0.1像素的分辨率。将虚拟引伸计应用于含未穿透预制裂纹(三维裂纹)的花岗岩试件的破坏实验中,根据虚拟引伸计测得的裂纹张开、错动情况,对试件破坏过程中不同裂纹的出现顺序以及裂纹类型进行了判断,同时对试件破坏的机制进行了简单分析。 相似文献
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The study aims at investigating the structural behavior of the Fatih Sultan Mehmet Suspension Bridge, i.e. the second Bosphorus Bridge in Turkey, under multi-point earthquake excitations, and determining the earthquake performance of the bridge based on the results obtained from this analysis. For this objective, spatially varying ground motions in triple direction were produced for each support of the bridge considering the Mw=7.4 scenario earthquakes on the main Marmara Fault. In order to simulate the ground motions, modified stochastic finite-fault technique was utilized. Taking the ground motions into account, non-linear time-history analysis was carried out, and the results obtained from the analysis were compared to those from uniform support earthquake excitation to identify the effects of multi-point earthquake excitations on the seismic performance of the bridge. From the analysis, it was determined that modal response of the towers and the deck was mostly effective on dynamic response of the entire bridge rather than other structural elements, such as cable and approach viaduct. Compared to the results obtained from simple-point earthquake excitation, noticeable axial force increase in the cable elements was obtained under multi-point earthquake excitation. The changes at the main cable and the side span cable were determined as 21% and 18%, respectively. This much increase in the cable elements led to increase in axial force at the towers and in shear force at the base section of the tower column. These changes in the structural elements were closely related to response of the deck and the towers since they had considerable contribution to response of the entire bridge. Based on the findings from the study, spatially varying ground motions has to be considered for long span suspension bridges, and the multi-support earthquake analysis should be carried out for better understanding and obtaining reliable results necessary for retrofitting and performance evaluation. 相似文献
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