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小场区高精度控制网维护方法
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作者 齐菲 孟宪磊 +2 位作者 李海鹏 池明智 刘晨 《建筑技术》 2021年第5期620-621,共2页
小场区可利用空间较小,在地面上的控制点常会被建筑材料堆压或被损坏,导致场区内测量工作无法正常进行。国家会议中心二期工程施工中采用小场区高精度控制网的引进引出方法,并将GNSS静态测量与四等导线测量相结合,保证了场区内级控制网... 小场区可利用空间较小,在地面上的控制点常会被建筑材料堆压或被损坏,导致场区内测量工作无法正常进行。国家会议中心二期工程施工中采用小场区高精度控制网的引进引出方法,并将GNSS静态测量与四等导线测量相结合,保证了场区内级控制网的相对精度。 展开更多
关键词 小场区 静态测量 控制网 高程
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Optimal design of vegetation in residential district with numerical simulation and field experiment 被引量:5
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作者 洪波 林波荣 +1 位作者 王冰 李树华 《Journal of Central South University》 SCIE EI CAS 2012年第3期688-695,共8页
Vegetation plays a key role in improving wind environment of residential districts,and is helpful for creating a comfortable and beautiful living environment.The optimal design of vegetation for wind environment impro... Vegetation plays a key role in improving wind environment of residential districts,and is helpful for creating a comfortable and beautiful living environment.The optimal design of vegetation for wind environment improvement in winter was investigated by carrying out field experiments in Heqingyuan residential area in Beijing,and after that,numerical simulation with SPOTE(simulation platform for outdoor thermal environment) experiments for outdoor thermal environment of vegetation was adopted for comparison.The conclusions were summarized as follows:1) By comparing the experimental data with simulation results,it could be concluded that the wind field simulated was consistent with the actual wind field,and the flow distribution impacted by vegetation could be accurately reflected;2) The wind velocity with vegetation was lower than that without vegetation,and the wind velocity was reduced by 46%;3) By adjusting arrangement and types of vegetation in the regions with excessively large wind velocity,the pedestrian-level wind velocity could be obviously improved through the simulation and comparison. 展开更多
关键词 wind environment simulation platform for outdoor thermal environment (SPOTE) field experiment optimal design of vegetation SIMULATION
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Inversion of Stress Fields in the Middle Section of the Xiaojiang Fault and Its Adjacent Area 被引量:2
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作者 Lin Xiangdong Xu Ping +2 位作者 Wu Minjie Gao Ling Wu Anxu 《Earthquake Research in China》 2011年第1期82-91,共10页
With waveform data of 613 earthquakes with ML ≥ 2. 5 in the middle section of the Xiaojiang fault and its adjacent area which occurred during January,1998 to September 2007,focal mechanisms were calculated by the dir... With waveform data of 613 earthquakes with ML ≥ 2. 5 in the middle section of the Xiaojiang fault and its adjacent area which occurred during January,1998 to September 2007,focal mechanisms were calculated by the direct wave amplitude ratio of S /P in the vertical component and their characteristics were analyzed. According to regional tectonic features of the middle section of the Xiaojiang fault and its adjacent area,the study region was partitioned into two zones with the Xiaojiang fault as the boundary,e. g. zone A and zone B (including the Xiaojiang fault). In order to research the faults stress in detail,the Xiaojiang fault zone was picked out for independent analysis. The study region was also partitioned into 1°× 1° cells with a 0. 5° step. The stress fields of zone A,B and the fault zone were inverted with the FMSI method (Gephart,1990). The results show that first, the faults are mainly of strike-slip in the middle section and its adjacent area,amounting to 81. 28%,69. 23% and 72. 97% in the A,B and fault zones,respectively. Secondly,the stress inversion also indicates that the directions of maximum principal stress σ1 in the A, B,and fault zones are approximately NNW,NWW and NWW,the stress action is mainly horizontal,and strike-slip faulting is dominant in the study area. On the other hand,the direction of the principal stress field in the central Yunnan block changed from NNW to NWW,however,in the region between the Yuanmou and Pudu River faults,the azimuth of the main compressive stress shows that the north-south slip is obvious. While the direction of the main compressive stress of the Xiaojiang fault zone is nearly NW; in the east of the Xiaojiang fault,the direction of principal compressive stress is NW to NNW in the eastern Yunnan block. 展开更多
关键词 Middle section of the Xiaojiang fault Focal mechanism Stress field inversion
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Discrete Wavelet Multi-scale Decomposition of the Temporal Gravity Variations in North China
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作者 Liu Fang Zhu Yiqing Chen Shi 《Earthquake Research in China》 2014年第3期360-369,共10页
On the basis of the absolute and relative gravity observations in North China,spatial dynamic variation of regional gravity fields is obtained. A multi-scale decomposition technique is used to separate anomalies at di... On the basis of the absolute and relative gravity observations in North China,spatial dynamic variation of regional gravity fields is obtained. A multi-scale decomposition technique is used to separate anomalies at different depths,and give some explanation to gravity variation at different time space scales. Gravity variation trends in North China are improved. Based on this result and the analysis of wavelet power spectrum,the images of the depth of wavelet approximation and detail are obtained. The results obtained are of scientific significance for the deep understanding of potential seismic risk in North China from gravity variations in different time space scales. 展开更多
关键词 Wavelet decomposition MULTI-SCALE Gravity variation field POWERSPECTRUM North China
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