Natural slopes usually display complicated exposed rock surfaces that are characterized by complex and substantial terrain undulation and ubiquitous undesirable phenomena such as vegetation cover and rockfalls.This st...Natural slopes usually display complicated exposed rock surfaces that are characterized by complex and substantial terrain undulation and ubiquitous undesirable phenomena such as vegetation cover and rockfalls.This study presents a systematic outcrop research of fracture pattern variations in a complicated rock slope,and the qualitative and quantitative study of the complex phenomena impact on threedimensional(3D)discrete fracture network(DFN)modeling.As the studies of the outcrop fracture pattern have been so far focused on local variations,thus,we put forward a statistical analysis of global variations.The entire outcrop is partitioned into several subzones,and the subzone-scale variability of fracture geometric properties is analyzed(including the orientation,the density,and the trace length).The results reveal significant variations in fracture characteristics(such as the concentrative degree,the average orientation,the density,and the trace length)among different subzones.Moreover,the density of fracture sets,which is approximately parallel to the slope surface,exhibits a notably higher value compared to other fracture sets across all subzones.To improve the accuracy of the DFN modeling,the effects of three common phenomena resulting from vegetation and rockfalls are qualitatively analyzed and the corresponding quantitative data processing solutions are proposed.Subsequently,the 3D fracture geometric parameters are determined for different areas of the high-steep rock slope in terms of the subzone dimensions.The results show significant variations in the same set of 3D fracture parameters across different regions with density differing by up to tenfold and mean trace length exhibiting differences of 3e4 times.The study results present precise geological structural information,improve modeling accuracy,and provide practical solutions for addressing complex outcrop issues.展开更多
The heterogeneous variational nodal method(HVNM)has emerged as a potential approach for solving high-fidelity neutron transport problems.However,achieving accurate results with HVNM in large-scale problems using high-...The heterogeneous variational nodal method(HVNM)has emerged as a potential approach for solving high-fidelity neutron transport problems.However,achieving accurate results with HVNM in large-scale problems using high-fidelity models has been challenging due to the prohibitive computational costs.This paper presents an efficient parallel algorithm tailored for HVNM based on the Message Passing Interface standard.The algorithm evenly distributes the response matrix sets among processors during the matrix formation process,thus enabling independent construction without communication.Once the formation tasks are completed,a collective operation merges and shares the matrix sets among the processors.For the solution process,the problem domain is decomposed into subdomains assigned to specific processors,and the red-black Gauss-Seidel iteration is employed within each subdomain to solve the response matrix equation.Point-to-point communication is conducted between adjacent subdomains to exchange data along the boundaries.The accuracy and efficiency of the parallel algorithm are verified using the KAIST and JRR-3 test cases.Numerical results obtained with multiple processors agree well with those obtained from Monte Carlo calculations.The parallelization of HVNM results in eigenvalue errors of 31 pcm/-90 pcm and fission rate RMS errors of 1.22%/0.66%,respectively,for the 3D KAIST problem and the 3D JRR-3 problem.In addition,the parallel algorithm significantly reduces computation time,with an efficiency of 68.51% using 36 processors in the KAIST problem and 77.14% using 144 processors in the JRR-3 problem.展开更多
目的探讨老年自身免疫性肝炎(AIH)患者的临床特征及自身抗体水平。方法回顾性分析2013年1月至2018年1月期间首都医科大学附属北京佑安医院肝病免疫科收治的112例AIH患者的临床资料,按年龄分为老年组(≥60岁,33例)和中青年组(<60岁,79...目的探讨老年自身免疫性肝炎(AIH)患者的临床特征及自身抗体水平。方法回顾性分析2013年1月至2018年1月期间首都医科大学附属北京佑安医院肝病免疫科收治的112例AIH患者的临床资料,按年龄分为老年组(≥60岁,33例)和中青年组(<60岁,79例)。统计分析2组患者临床资料、生化指标和自身抗体指标。采用SPSS 16.0软件进行数据处理,根据数据类型,组间比较分别采用t检验、Mann-Whitney检验或χ~2检验。结果老年组患者乏力(54.5%vs78.5%)和恶心呕吐(18.2%vs 39.2%)症状患者显著少于中青年组,肝硬化(36.4%vs 17.7%)及合并肝外自身免疫病(33.3%vs 16.5%)患者显著多于中青年组,老年患者血小板计数[(155.2±76.1)×109/L vs (186.2±77.2)×109/L]显著低于中青年组,血尿素氮[(5.1±1.6) vs (4.4±1.3)mmol/L]及血肌酐[(62.1±16.2) vs (57.5±15.1)μmol/L]浓度显著高于中青年组,差异均有统计学意义(P<0.05)。老年组抗核抗体阳性率高于中青年组(87.9%vs 79.7%),但差异无统计学意义(P>0.05)。结论老年组AIH患者合并肝硬化、肝外免疫病的比例高,肾功能降低,年龄相关的免疫功能紊乱可能影响患者的临床表现。展开更多
基金supported by the National Key Research and Development Program of China(Grant No.2022YFC3080200)the National Natural Science Foundation of China(Grant No.42022053)the China Postdoctoral Science Foundation(Grant No.2023M731264).
文摘Natural slopes usually display complicated exposed rock surfaces that are characterized by complex and substantial terrain undulation and ubiquitous undesirable phenomena such as vegetation cover and rockfalls.This study presents a systematic outcrop research of fracture pattern variations in a complicated rock slope,and the qualitative and quantitative study of the complex phenomena impact on threedimensional(3D)discrete fracture network(DFN)modeling.As the studies of the outcrop fracture pattern have been so far focused on local variations,thus,we put forward a statistical analysis of global variations.The entire outcrop is partitioned into several subzones,and the subzone-scale variability of fracture geometric properties is analyzed(including the orientation,the density,and the trace length).The results reveal significant variations in fracture characteristics(such as the concentrative degree,the average orientation,the density,and the trace length)among different subzones.Moreover,the density of fracture sets,which is approximately parallel to the slope surface,exhibits a notably higher value compared to other fracture sets across all subzones.To improve the accuracy of the DFN modeling,the effects of three common phenomena resulting from vegetation and rockfalls are qualitatively analyzed and the corresponding quantitative data processing solutions are proposed.Subsequently,the 3D fracture geometric parameters are determined for different areas of the high-steep rock slope in terms of the subzone dimensions.The results show significant variations in the same set of 3D fracture parameters across different regions with density differing by up to tenfold and mean trace length exhibiting differences of 3e4 times.The study results present precise geological structural information,improve modeling accuracy,and provide practical solutions for addressing complex outcrop issues.
基金supported by the National Key Research and Development Program of China(No.2020YFB1901900)the National Natural Science Foundation of China(Nos.U20B2011,12175138)the Shanghai Rising-Star Program。
文摘The heterogeneous variational nodal method(HVNM)has emerged as a potential approach for solving high-fidelity neutron transport problems.However,achieving accurate results with HVNM in large-scale problems using high-fidelity models has been challenging due to the prohibitive computational costs.This paper presents an efficient parallel algorithm tailored for HVNM based on the Message Passing Interface standard.The algorithm evenly distributes the response matrix sets among processors during the matrix formation process,thus enabling independent construction without communication.Once the formation tasks are completed,a collective operation merges and shares the matrix sets among the processors.For the solution process,the problem domain is decomposed into subdomains assigned to specific processors,and the red-black Gauss-Seidel iteration is employed within each subdomain to solve the response matrix equation.Point-to-point communication is conducted between adjacent subdomains to exchange data along the boundaries.The accuracy and efficiency of the parallel algorithm are verified using the KAIST and JRR-3 test cases.Numerical results obtained with multiple processors agree well with those obtained from Monte Carlo calculations.The parallelization of HVNM results in eigenvalue errors of 31 pcm/-90 pcm and fission rate RMS errors of 1.22%/0.66%,respectively,for the 3D KAIST problem and the 3D JRR-3 problem.In addition,the parallel algorithm significantly reduces computation time,with an efficiency of 68.51% using 36 processors in the KAIST problem and 77.14% using 144 processors in the JRR-3 problem.
文摘目的探讨老年自身免疫性肝炎(AIH)患者的临床特征及自身抗体水平。方法回顾性分析2013年1月至2018年1月期间首都医科大学附属北京佑安医院肝病免疫科收治的112例AIH患者的临床资料,按年龄分为老年组(≥60岁,33例)和中青年组(<60岁,79例)。统计分析2组患者临床资料、生化指标和自身抗体指标。采用SPSS 16.0软件进行数据处理,根据数据类型,组间比较分别采用t检验、Mann-Whitney检验或χ~2检验。结果老年组患者乏力(54.5%vs78.5%)和恶心呕吐(18.2%vs 39.2%)症状患者显著少于中青年组,肝硬化(36.4%vs 17.7%)及合并肝外自身免疫病(33.3%vs 16.5%)患者显著多于中青年组,老年患者血小板计数[(155.2±76.1)×109/L vs (186.2±77.2)×109/L]显著低于中青年组,血尿素氮[(5.1±1.6) vs (4.4±1.3)mmol/L]及血肌酐[(62.1±16.2) vs (57.5±15.1)μmol/L]浓度显著高于中青年组,差异均有统计学意义(P<0.05)。老年组抗核抗体阳性率高于中青年组(87.9%vs 79.7%),但差异无统计学意义(P>0.05)。结论老年组AIH患者合并肝硬化、肝外免疫病的比例高,肾功能降低,年龄相关的免疫功能紊乱可能影响患者的临床表现。