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81.
SBS与沥青的相互作用性分析   总被引:22,自引:4,他引:22  
为了评价SBS在沥青中的相互作用性质以及提高SBS改性沥青的性能,采用粘度法研究了SBS在不同分散系中的分散性质。通过对所测得的系列数据进行系统分析和比较,发现SBS分子结构中的两个链段在不同性质的溶剂中溶解性质明显不同。在石油馏分组成的混合溶剂中,提高溶剂中芳香烃的数量,可以促进SBS聚苯乙烯段的分散,明显改善SBS的溶解分散性。这一结果在不同系列芳香烃含量的SBS改性沥青性能研究中也得到证实。  相似文献   
82.
文章从铜黄公路地质背景条件入手,通过对滑坡分布规律和发育特征的总结,分析了滑坡的成灾机理与变形破坏特征,对今后公路建设中的滑坡治理工作有一定的借鉴作用。  相似文献   
83.
赤泥做道路基层材料的试验研究   总被引:16,自引:1,他引:16  
在分析山东铝业赤泥理化性质的基础上,进行了赤泥做道路基层材料的配制和试验研究。试验研究表明:选用适当的配比,赤泥道路基层强度可满足高等级公路的要求,7d抗压强度可达到2 0MPa以上,28d强度3 0MPa以上,赤泥基层与传统的半刚性基层材料相比具有强度高、回弹值大等优点。这不仅可拓宽道路基层材料的应用范围,而且可使赤泥变废为宝。  相似文献   
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85.
The rapid growth in air traffic has resulted in increased emission and noise levels in terminal areas, which brings negative environmental impact to surrounding areas. This study aims to optimize terminal area operations by taking into account environmental constraints pertaining to emission and noise. A multi-objective terminal area resource allocation problem is formulated by employing the arrival fix allocation (AFA) problem, while minimizing aircraft holding time, emission, and noise. The NSGA-II algorithm is employed to find the optimal assignment of terminal fixes with given demand input and environmental considerations, by incorporating the continuous descent approach (CDA). A case study of the Shanghai terminal area yields the following results: (1) Compared with existing arrival fix locations and the first-come-first-serve (FCFS) strategy, the AFA reduces emissions by 19.6%, and the areas impacted by noise by 16.4%. AFA and CDA combined reduce the emissions by 28% and noise by 38.1%; (2) Flight delays caused by the imbalance of demand and supply can be reduced by 72% (AFA) and 81% (AFA and CDA) respectively, compared with the FCFS strategy. The study demonstrates the feasibility of the proposed optimization framework to reduce the environmental impact in terminal areas while improving the operational efficiency, as well as its potential to underpin sustainable air traffic management.  相似文献   
86.
孙铁锐  李成龙 《船舶工程》2020,42(S1):56-60
本文依托一种自浮式水下基床整平机,对该整平机上的重要的组成部分——升降系统进行了设计与分析,提出了一种结构简单、运行可靠的升降系统;对组成升降系统的升降机构提出了液压环梁插销式升降机构、齿轮齿条式升降机构和液压缸升降机构,对支撑机构考虑了十字转动支撑机构和万向球轴承支撑机构,对锁紧机构提出了楔块锁紧机构和棘爪锁紧机构,通过对各种方案进行分析论证,最终确定了升降系统由液压缸升降机构、十字转动支撑机构和棘爪锁紧机构组成;最后对棘爪锁紧机构进行了瞬态动力学计算,计算结果得出棘爪锁紧机构所受最大应力为154.52MPa小于其许用应力172.5MPa,验证了棘爪锁紧机构的强度满足要求。  相似文献   
87.
88.
Adjusting traffic signal timings is a practical way for agencies to manage urban traffic without the need for significant infrastructure investments. Signal timings are generally selected to minimize the total control delay vehicles experience at an intersection, particularly when the intersection is isolated or undersaturated. However, in practice, there are many other potential objectives that might be considered in signal timing design, including: total passenger delay, pedestrian delays, delay inequity among competing movements, total number of stopping maneuvers, among others. These objectives do not tend to share the same relationships with signal timing plans and some of these objectives may be in direct conflict. The research proposes the use of a new multi-objective optimization (MOO) visualization technique—the mosaic plot—to easily quantify and identify significant tradeoffs between competing objectives using the set of Pareto optimal solutions that are normally provided by MOO algorithms. Using this tool, methods are also proposed to identify and remove potentially redundant or unnecessary objectives that do not have any significant tradeoffs with others in an effort to reduce problem dimensionality. Since MOO procedures will still be needed if more than one objective remains and MOO algorithms generally provide a set of candidate solutions instead of a single final solution, two methods are proposed to rank the set of Pareto optimal solutions based on how well they balance between the competing objectives to provide a final recommendation. These methods rely on converting the objectives to dimensionless values based on the optimal value for each specific objectives, which allows for direct comparison between and weighting of each. The proposed methods are demonstrated using a simple numerical example of an undersaturated intersection where all objectives can be analytically obtained. However, they can be readily applied to other signal timing problems where objectives can be obtained using simulation outputs to help identify the signal timing plan that provides the most reasonable tradeoff between competing objectives.  相似文献   
89.
It is well recognized that the left-turning movement reduces the intersection capacity significantly, because exclusive left turn phases are needed to discharge left turn vehicles only. This paper proposes the concept of Left-Hand Traffic (LHT) arterial, on where vehicles follow left-hand traffic rules as in England and India. The unconventional intersection where a LHT arterial intersects with a Right-Hand Traffic (RHT) arterial is named as symmetric intersection. It is only need three basic signal phases to separate all conflicts at symmetric intersection, while it at least need four signal phases at a conventional intersection. So, compared with the conventional intersection, the symmetric intersection can provide longer green time for the left-turning and the through movement, which can increase the capacity significantly. Through-movement waiting areas (TWAs) can be set at the symmetric intersection effectively, which can increase the capacity and short the cycle length furthermore. And the symmetric intersection is Channelized to improve the safety of TWAs. The Binary-Mixed-Integer-Linear-Programming (BMILP) model is employed to formulate the capacity maximization problem and signal cycle length minimization problem of the symmetric intersection. The BMILP model can be solved by standard branch-and-bound algorithms efficiently and outputs the lane allocation, signal timing decisions, and other decisions. Experiments analysis shows that the symmetric intersection with TWAs can increase the capacity and short the signal cycle length.  相似文献   
90.
以跨径为30 m的城市轨道交通槽形梁为研究对象,采用精细化有限元方法研究槽形梁设计几何参数梁高、道床板厚度及角隅斜率对其力学性能的影响。分析结果表明:槽形梁主梁截面刚度随梁高的增加而增加,在给定跨径30 m的情况下存在最佳梁高1.8 m;道床板厚度与横向跨度有关,横向跨度为4 m时,适宜的道床板厚度是0.26 m;角隅斜率对槽形梁的影响主要表现在结合处的力学性能,推荐使用1:(2.5~3.0)。  相似文献   
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