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Feasibility study on sinkhole monitoring with fiber optic strain sensing nerves
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作者 Yuxin Gao Honghu Zhu +3 位作者 Liang Qiao xifeng liu Chao Wei Wei Zhang 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2023年第11期3059-3070,共12页
Anthropogenic activity-induced sinkholes pose a serious threat to building safety and human life nowadays.Real-time detection and early warning of sinkhole formation are a key and urgent problem in urban areas.This pa... Anthropogenic activity-induced sinkholes pose a serious threat to building safety and human life nowadays.Real-time detection and early warning of sinkhole formation are a key and urgent problem in urban areas.This paper presents an experimental study to evaluate the feasibility of fiber optic strain sensing nerves in sinkhole monitoring.Combining the artificial neural network(ANN)and particle image velocimetry(PIV)techniques,a series of model tests have been performed to explore the relationship between strain measurements and sinkhole development and to establish a conversion model from strain data to ground settlements.It is demonstrated that the failure mechanism of the soil above the sinkhole developed from a triangle failure plane to a vertical failure plane with increasing collapse volume.Meanwhile,the soil-embedded fiber optic strain sensing nerves allowed deformation monitoring of the ground soil in real time.Furthermore,the characteristics of the measured strain profiles indicate the locations of sinkholes and the associated shear bands.Based on the strain data,the ANN model predicts the ground settlement well.Additionally,micro-anchored fiber optic cables have been proven to increase the soil-to-fiber strain transfer efficiency for large deformation monitoring of ground collapse. 展开更多
关键词 SINKHOLE Geotechnical monitoring Distributed fiber optic sensing(DFOS) Artificial neural network(ANN) Ground settlement Soil arching Micro-anchor
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角质型珊瑚的鉴定特征研究
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作者 温诗娜 刘喜锋 刘嘉钧 《超硬材料工程》 CAS 2018年第5期63-68,共6页
角质型珊瑚分为黑珊瑚和金珊瑚,文章对市场上常见的角质型珊瑚品种进行样品收集,并通过常规宝石学、红外光谱、扫描电镜等测试分析,总结其鉴定特征。结果表明:黑珊瑚结构致密,无明显的小刺特征,金珊瑚表面为金属光泽,有纵纹,无小刺结构... 角质型珊瑚分为黑珊瑚和金珊瑚,文章对市场上常见的角质型珊瑚品种进行样品收集,并通过常规宝石学、红外光谱、扫描电镜等测试分析,总结其鉴定特征。结果表明:黑珊瑚结构致密,无明显的小刺特征,金珊瑚表面为金属光泽,有纵纹,无小刺结构;红外光谱测试发现黑珊瑚绝大部分为有机质,不含或极少含碳酸盐成分,而金珊瑚中不仅含有有机质,也含有碳酸盐等矿物成分,如1413cm-1、875cm-1的峰值分别是方解石和文石的特征谱峰;扫描电镜下可以从微生长结构方面对角质型珊瑚进行鉴别,黑珊瑚生长层之间非常紧密,仅在表面有小刺;金珊瑚表面有纵纹,放大可见类似鳞片状的结构。 展开更多
关键词 黑珊瑚 金珊瑚 鉴定特征
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3D-printed scaffolds with 2D hetero-nanostructures and immunomodulatory cytokines provide pro-healing microenvironment for enhanced bone regeneration
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作者 xifeng liu Bipin Gaihre +6 位作者 Sungjo Park Linli Li Babak Dashtdar Maria D.Astudillo Potes Andre Terzic Benjamin D.Elder Lichun Lu 《Bioactive Materials》 SCIE CSCD 2023年第9期216-230,共15页
Three-dimensional (3D) printing technology is driving forward the progresses of various engineering fields, including tissue engineering. However, the pristine 3D-printed scaffolds usually lack robust functions in sti... Three-dimensional (3D) printing technology is driving forward the progresses of various engineering fields, including tissue engineering. However, the pristine 3D-printed scaffolds usually lack robust functions in stimulating desired activity for varied regeneration applications. In this study, we combined the two-dimensional (2D) hetero-nanostructures and immuno-regulative interleukin-4 (IL-4) cytokines for the functionalization of 3D-printed scaffolds to achieve a pro-healing immuno-microenvironment for optimized bone injury repair. The 2D hetero-nanostructure consists of graphene oxide (GO) layers, for improved cell adhesion, and black phosphorous (BP) nanosheets, for the continuous release of phosphate ions to stimulate cell growth and osteogenesis. In addition, the 2D hetero-nanolayers facilitated the adsorption of large content of immuno-regulative IL-4 cytokines, which modulated the polarization of macrophages into M2 phenotype. After in vivo implantation in rat, the immuno-functioned 3D-scaffolds achieved in vivo osteo-immunomodulation by building a pro-healing immunological microenvironment for better angiogenesis and osteogenesis in the defect area and thus facilitated bone regeneration. These results demonstrated that the immuno-functionalization of 3D-scaffolds with 2D hetero-nanostructures with secondary loading of immuno-regulative cytokines is an encouraging strategy for improving bone regeneration. 展开更多
关键词 3D-printing 2D materials Bone repair Osteo-immunomodulation CYTOKINES
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