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Influence of Fine Sediment on the Fluidity of Debris Flows 被引量:2
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作者 Norifumi HOTTA takahiro kaneko +1 位作者 Tomoyuki IWATA Haruo NISHIMOTO 《Journal of Mountain Science》 SCIE CSCD 2013年第2期233-238,共6页
Debris flows include a great diversity of grain sizes with inherent features such as inverse grading, particle size segregation, and liquefaction of fine sediment. The liquefaction of fine sediment affects the fluidit... Debris flows include a great diversity of grain sizes with inherent features such as inverse grading, particle size segregation, and liquefaction of fine sediment. The liquefaction of fine sediment affects the fluidity of debris flows, although the behavior and influence of fine sediment in debris flows have not been examined sufficiently. This study used flume tests to detect the effect of fine sediment on the fluidity of laboratory debris flows consisting of particles with various diameters. From the experiments, the greatest sediment concentration and flow depth were observed in the debris flows mixed with fine sediment indicating increased flow resistance. The experimental friction coefficient was then compared with the theoretical friction coefficient derived by substituting the experimental values into the constitutive equations for debris flow. The theoretical friction coefficient was obtained from two models with different fine-sediment treatments: assuming that all of the fine sediments were solid particles or that the particles consisted of a fluid phase involving pore water liquefaction. From the comparison of the friction coefficients, a fully liquefaction state was detected for the fine particle mixture. When the mixing ratio and particle size of the fine sediment were different, some other eases were considered to be in a partially liquefied transition state. These results imply that the liquefaction of fine sediment in debris flows was induced not only by the geometric conditions such as particle sizes, but also by the flow conditions. 展开更多
关键词 Debris flow Fine sediment Friction coefficient LIQUEFACTION Open channel Reynolds stress
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制作无牙颌种植即刻负载临时修复体的新型开窗式印模技术
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作者 takahiro kaneko Kiyoshi Yamagishi +3 位作者 Norio Horie Tetsuo Shimoyama 华泽乾 汤春波 《中国口腔医学继续教育杂志》 2015年第5期258-263,共6页
目的:评估一种用于无牙颌患者种植即刻负载临时修复体制作的新型开窗式印模技术的临床疗效。材料与方法:在本回顾性研究中评估一种新型的开窗式印模技术.选择2006年3月到2009年10月之间接受治疗的患者。术前使用诊断义齿.并在该修... 目的:评估一种用于无牙颌患者种植即刻负载临时修复体制作的新型开窗式印模技术的临床疗效。材料与方法:在本回顾性研究中评估一种新型的开窗式印模技术.选择2006年3月到2009年10月之间接受治疗的患者。术前使用诊断义齿.并在该修复体上制作新型开窗式托盘.种植体植入后,使用该托盘同时进行印模和咬合记录,手术当天戴入由技工室制作的螺丝固位的丙烯酸树脂临时修复体.自种植术后到最终修复体戴八期间对该临时修复体进行评估。结果:本研究中21位患者(平均年龄645岁),总共植入125颗种植体.其中104颗种植体即刻负载.所有患者的临时修复体适合性良好,修复体最少由4颗种植体支持。一例患者在术后30d发生临时修复体第一磨牙位置的牙尖断裂.但是.修复体支架无大的断裂或修复体功能不良.术后随访无种植体失败。结论:该治疗方法由于在正中咬合下制取印模.而且能够重建出与诊断性修复体相同的咬合,故而能够制作出适合性良好的种植体即刻负载的丙烯酸树脂临时修复体。 展开更多
关键词 口腔种植 无牙颌 即刻负载 临时修复体
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