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一类4-流形的Donaldson不变量
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作者 刘西民 陈小柱 《宁夏大学学报(自然科学版)》 CAS 2001年第3期251-253,共3页
运用T3 的SO(3)示性簇的有限孤立正则表示 ,得到了计算一类光滑 4 流形X =X1∪ T3 X2 的度为 1的Don aldson不变量的计算公式 .
关键词 Donaldson不变量 4-流形 模空间 3-环面 拓扑 微分结构 光滑流形
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Analytical Method for 3-D Stopping Sight Distance Adequacy Investigation
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作者 Fotis S. Mertzanis Antonis Boutsakis +2 位作者 Ikaros-Georgios Kaparakis Stergios Mavromatis Basil Psarianos 《Journal of Civil Engineering and Architecture》 2015年第2期232-243,共12页
The adopted 2-D SSD (stopping sight distance) adequacy investigation in current design practice may lead to design deficiencies due to inaccurate calculation of the available sight distance. Although this concern ha... The adopted 2-D SSD (stopping sight distance) adequacy investigation in current design practice may lead to design deficiencies due to inaccurate calculation of the available sight distance. Although this concern has been identified by many research studies in the past, none of them suggested a comprehensive methodology to simulate from a 3-D perspective concurrently both the cross-section design and the vehicle dynamics in space during emergency braking conditions. The proposed methodology can accurately perform SSD adequacy investigation in any 3-D road environment where the ground, road and roadside elements are inserted by identifying areas of interrupted vision lines between driver and obstacle being less than the required distance necessary to bring the vehicle to a stop condition. The present approach provides flexibility among every road design and/or vehicle dynamic parameter inserted, as well as direct overview regarding design elements that restrict the driver's vision and create SSD inadequacies. As a result, precious guidance is provided to the designer for further alignment improvement but mostly an accurate aid to implement geometric design control criteria with respect to both existing as well as new road sections is delivered. The efficiency of the suggested methodology is demonstrated through a case study. 展开更多
关键词 SSD 3-D road alignment design consistency road safety.
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