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基于多尺度均匀化的钢筋混凝土柱偏心受压性能模拟研究
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作者 李维康 王江 许斌 《应用力学学报》 北大核心 2025年第5期1119-1128,共10页
基于等效均匀化理论,通过建立细观数值模型和细观均匀化数值模型,多尺度模拟研究混凝土骨料的细观因素对钢筋混凝土柱偏心受压力学行为的影响。结果表明:模拟结果与参考试验结果吻合良好,从构件层次验证了细观均匀化数值模型的有效性;... 基于等效均匀化理论,通过建立细观数值模型和细观均匀化数值模型,多尺度模拟研究混凝土骨料的细观因素对钢筋混凝土柱偏心受压力学行为的影响。结果表明:模拟结果与参考试验结果吻合良好,从构件层次验证了细观均匀化数值模型的有效性;细观数值模型和细观均匀化数值模型均能有效反映骨料的随机分布对钢筋混凝土偏心受压力学性能和损伤分布的影响;与细观数值模型相比,细观均匀化数值模型对骨料不同形状的敏感性较差;细观均匀化数值模型可以节省计算空间,提高计算效率。 展开更多
关键词 钢筋混凝土柱偏心受压 细观数值模型 细观均匀数值模型 骨料的细观因素
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非周期信号LC与RC滤波的数值分析研究 被引量:3
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作者 周靖 周建斌 +3 位作者 洪旭 马英杰 王敏 周伟 《系统仿真学报》 CAS CSCD 北大核心 2016年第12期2939-2945,共7页
用数值方法将LC与RC滤波电路用于直流电源输出电压中非周期信号的滤波分析。采用微分方程数值解方法求解电路微分方程数值递推解,从而建立电路的数值模型,该模型可用于对非周期信号滤波的定量分析中。发现了LC与RC滤波电路在对直流电源... 用数值方法将LC与RC滤波电路用于直流电源输出电压中非周期信号的滤波分析。采用微分方程数值解方法求解电路微分方程数值递推解,从而建立电路的数值模型,该模型可用于对非周期信号滤波的定量分析中。发现了LC与RC滤波电路在对直流电源输出电压进行滤波时的不足,通过引入LRC滤波电路,数值仿真结果表明,该电路能克服单独使用LC或RC滤波电路时的不足,能够同时对纹波和噪声都能很好地滤除。提出了在实际应用中对直流电源输出电压中非周期信号进行滤波时,应采用LRC滤波电路取代LC、RC滤波电路。 展开更多
关键词 LC滤波电路 LRC滤波电路 非周期信号 数值化模型 数值分析
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基于截面配筋率的钢筋混凝土统一本构关系研究
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作者 黄康 《水电能源科学》 北大核心 2024年第4期99-102,共4页
为避免数值化分析中直接处理钢筋与混凝土之间的复杂关系,推导出钢筋混凝土构件轴心受压统一理论公式,做了不同配筋率与不同混凝土强度等级下的钢混棱柱体轴心受压试验,利用试验量测的荷载位移数据,结合Matlab曲线拟合工具的线性回归与... 为避免数值化分析中直接处理钢筋与混凝土之间的复杂关系,推导出钢筋混凝土构件轴心受压统一理论公式,做了不同配筋率与不同混凝土强度等级下的钢混棱柱体轴心受压试验,利用试验量测的荷载位移数据,结合Matlab曲线拟合工具的线性回归与拟合功能,建立了一种基于截面配筋率的能够描述钢筋混凝土材料力学性能的统一本构关系。对试验梁进行数值化分析表明,所建立的数值化模型应力应变特征与试验结果吻合较好,证明了该模型在钢筋混凝土实际运用过程中的可行性与适用性。 展开更多
关键词 钢筋混凝土 配筋率 强度等级 统一本构关系 数值化模型
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Operation optimization of prefabricated light modular radiant heating system:Thermal resistance analysis and numerical study
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作者 LI Yao HU Ru-kun +4 位作者 XIN Li XUE Jie HUANG Fei XIA Jian-wei YANG Xiao-hu 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第6期1983-1997,共15页
The utilization of prefabricated light modular radiant heating system has demonstrated significant increases in heat transfer efficiency and energy conservation capabilities.Within prefabricated building construction,... The utilization of prefabricated light modular radiant heating system has demonstrated significant increases in heat transfer efficiency and energy conservation capabilities.Within prefabricated building construction,this new heating method presents an opportunity for the development of comprehensive facilities.The parameters for evaluating the effectiveness of such a system are the upper surface layer’s heat flux and temperature.In this paper,thermal resistance analysis calculation based on a simplified model for this unique radiant heating system analysis is presented with the heat transfer mechanism’s evaluation.The results obtained from thermal resistance analysis calculation and numerical simulation indicate that the thermal resistance analysis method is highly accurate with temperature discrepancies ranging from 0.44℃ to−0.44℃ and a heat flux discrepancy of less than 7.54%,which can meet the requirements of practical engineering applications,suggesting a foundation for the prefabricated radiant heating system. 展开更多
关键词 radiant heating system thermal resistance analysis simplified model numerical simulation heat flux temperatur
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Theoretical and numerical study on reinforcing effect of rock-bolt through composite soft rock-mass 被引量:7
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作者 ZHAO Zeng-hui GAO Xiao-jie +1 位作者 TAN Yun-liang MA Qing 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第10期2512-2522,共11页
Anchoring mechanism and failure characteristics of composite soft rock with weak interface usually exhibit remarkable difference from those in single rock mass.In order to fully understand the reinforcement mechanism ... Anchoring mechanism and failure characteristics of composite soft rock with weak interface usually exhibit remarkable difference from those in single rock mass.In order to fully understand the reinforcement mechanism of composite soft roof in western mining area of China,a mechanical model of composite soft rock with weak interface and rock bolt which considering the transverse shear sliding between different rock layers was established firstly.The anchoring effect was quantified by a factor defined as anchoring effect coefficient and its evolution equation was further deduced based on the deformation relationship and homogenized distribution assumption of stress acting on composite structure.Meanwhile,the numerical simulation model of composite soft rock with shear joint was prompted by finite element method.Then detailed analysis were carried out for the deformation features,stress distribution and failure behavior of rock mass and rock bolt near the joint under transverse load.The theoretical result indicates that the anchoring effect of rock-bolt through weak joint changes with the working status of rock mass and closely relates with the physical and geometric parameters of rock mass and rock bolt.From the numerical results,the bending deformation of rock bolt accurately characterized by Doseresp model is mainly concentrated between two plastic hinges near the shear joint.The maximum tensile and compression stresses distribute in the plastic hinge.However,the maximum shear stress appears at the positions of joint surface.The failure zones of composite rock are produced firstly at the joint surface due to the reaction of rock bolt.The above results laid a theoretical and computational foundation for further study of anchorage failure in composite soft rock. 展开更多
关键词 composite soft rock ANCHORAGE evolution equation numerical model plastic hinge
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Numerical modeling airflow in soil with impact of groundwater
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作者 张晓悦 王栋 +1 位作者 张晓乐 陈晓东 《Journal of Central South University》 SCIE EI CAS 2013年第5期1405-1411,共7页
In order to simulate the airflow in anhydrous case and the water-air flow in groundwater case, a numerical model of airflow in soil was developed. For the nonlinearity of the governing partial differential equation, t... In order to simulate the airflow in anhydrous case and the water-air flow in groundwater case, a numerical model of airflow in soil was developed. For the nonlinearity of the governing partial differential equation, the corresponding discretization and linearization methods were given. Due to the mass transfer between air-phase and water-phase, phase states of the model elements were constantly changing. Thus, parameters of the model were divided into primary ones and secondary ones, and the primary variables changing with phase states and the secondary variables can be obtained by their functional relationship with the primary variables. Additionally, the special definite condition of this numerical model was illustrated. Two examples were given to simulate the airflow in soil whether there was groundwater or not, and the effectiveness of the numerical model is verified by comparing the results of simulation with that of exoeriment. 展开更多
关键词 GROUNDWATER water-air flow capillary pressure finite difference method compressed air
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