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沥青路面表面纹理三维评价方法及其计算边界条件分析 被引量:4
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作者 董仕豪 韩森 +2 位作者 宿金菲 陈德 苏会锋 《材料导报》 EI CAS CSCD 北大核心 2024年第18期84-92,共9页
为了综合评价沥青路面表面纹理的三维特征,推广表面纹理三维评价方法的应用,提出了一套适用性强、计算边界条件明晰的沥青路面表面纹理三维评价指标。首先,利用激光纹理扫描仪采集了不同沥青路面表面纹理的三维点云数据,并分别基于灰度... 为了综合评价沥青路面表面纹理的三维特征,推广表面纹理三维评价方法的应用,提出了一套适用性强、计算边界条件明晰的沥青路面表面纹理三维评价指标。首先,利用激光纹理扫描仪采集了不同沥青路面表面纹理的三维点云数据,并分别基于灰度共生矩阵理论和表面纹理偏离基准面的均匀程度,构建了表面纹理水平三维评价指标f_(8mac)、f_(9mac)、f_(8mic)、f_(9mic)和表面纹理分布均匀性三维评价指标σ;然后,以铺砂法、步行式摩擦系数仪和组合表面纹理分布均匀性的测试结果为基准,通过对比三维评价指标和现有二维评价指标与基准指标的相关性,验证了三维评价指标的有效性和优越性;最后,基于表面纹理三维评价指标的计算过程,明确了表面纹理三维评价指标的计算边界条件。研究结果表明:f_(8mac)和f_(8mic)与基准指标的相关系数R分别为0.934 8和0.803 0,优选f_(8mac)和f_(8mic)为表面纹理水平三维评价指标;现有的二维评价指标难以准确表征表面纹理的三维分布状态,指标σ可以有效地评价沥青路面表面纹理的三维分布均匀性;只有在相同的计算边界条件下,表面纹理三维评价指标才具有可比性。研究成果有望为沥青路面表面纹理三维评价方法的推广应用提供理论借鉴。 展开更多
关键词 道路工程 三维评价指标 点云数据处理 表面纹理 计算边界条件 沥青路面
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Solution of pavement temperature field in“Environment-Surface”system through Green's function 被引量:2
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作者 陈嘉祺 李亮 +2 位作者 赵炼恒 但汉成 姚辉 《Journal of Central South University》 SCIE EI CAS 2014年第5期2108-2116,共9页
In order to simplify the boundary conditions of pavement temperature field,the "Environment-Surface" system which considered the natural environment and pavement surface was established.Based on this system,... In order to simplify the boundary conditions of pavement temperature field,the "Environment-Surface" system which considered the natural environment and pavement surface was established.Based on this system,the partial differential equations of the one-dimensional heat conduction in the pavement were established on the basis of the heat transfer theory.Furthermore,the function forms of the initial and boundary conditions of the equations were created through the field experiments.The general solution of the pavement one-dimensional heat conduction partial differential equations was acquired by using Green's function,and the explicit expression of pavement temperature field under specific constraint conditions was derived.For the purpose of analysis,the pavement temperatures in different seasons were calculated using the explicit expression of pavement temperature field,and the calculation accuracy was analyzed through the comparison between measured and calculated values.Then,the relationship between fitting accuracy and calculation accuracy of pavement temperatures was analyzed.The analysis results show that: the usage of "Environment-Surface" system simplifies the calculation of pavement temperature field; the relative error between calculated and measured values is generally less than 7% and is seldom influenced by seasons; there is a positive correlation between the calculation accuracy and the fitting accuracy of pavement surface temperature; high fitting accuracy would result in less error of pavement temperature prediction. 展开更多
关键词 road engineering pavement temperature field "Environment-Surface" system heat transfer theory Green's function
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Comparisons between unsteady sediment-transport modeling 被引量:2
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作者 Lahouari Benayada Mahmoud Hasbaia 《Journal of Central South University》 SCIE EI CAS 2013年第2期536-540,共5页
The comparative study between unsteady flow models in alluvial streams shows a chaotic residue as for the choices of a forecasting model. The difficulty resides in the choice of the expressions of friction resistance ... The comparative study between unsteady flow models in alluvial streams shows a chaotic residue as for the choices of a forecasting model. The difficulty resides in the choice of the expressions of friction resistance and sediment transport. Three types of mathematical models were selected. Models of type one and two are fairly general, but require a considerable number of boundary conditions, which related to each size range of sediments. It can be a handicap during rivers studies which are not very well followed in terms of experimental measurements. Also, the use of complex models is not always founded. But then, the model of type three requires a limited number of boundary conditions and solves only a system of three equations at each time step. It allows a considerable saving in calculating times. 展开更多
关键词 friction resistance bed load suspended load mobile-bed modeling
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Consolidation analysis of composite foundation with partially penetrated cement fly-ash gravel(CFG) piles under changing permeable boundary conditions 被引量:3
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作者 邹新军 赵增明 徐洞斌 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第10期4019-4026,共8页
Based on the double-layered foundation theory, the composite ground with partially penetrated cement fly-ash gravel(CFG) piles was regarded as a double-layered foundation including the surface reinforced area and the ... Based on the double-layered foundation theory, the composite ground with partially penetrated cement fly-ash gravel(CFG) piles was regarded as a double-layered foundation including the surface reinforced area and the underlying untreated stratum. Due to the changing permeability property of CFG piles, the whole consolidation process of the composite ground with CFG piles was divided into two stages, i.e., the early stage(permeable CFG pile bodies) and the later stage(impermeable pile bodies). Then, the consolidation equation of the composite foundation with CFG piles was established by using the Terzaghi one-dimensional consolidation theory. Consequently, the unified formula to calculate the excess pore water pressure was derived with the specific solutions for the consolidation degree of composite ground, reinforced area and underlying stratum under instant load obtained respectively. Finally, combined with a numerical example, influencing rules by main factors(including the replacement rate m, the treatment depth h1, the permeability coefficient Ks1, Kv2 and compression modulus Es1, Es2 of reinforced area and underlying stratum) on the consolidation property of composite ground with CFG piles were discussed in detail. The result shows that the consolidation velocity of underlying stratum is slower than that of the reinforced area. However, the consolidation velocity of underlying stratum is slow at first then fast as a result of the transferring of effective stress to the underlying stratum during the dissipating process of excess pore water pressure. 展开更多
关键词 composite ground CFG piles permeability double-layered foundation consolidation degree
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