Constructive and technological substantiation of constructive solutions for mountain bridge structures

M. Magomedov, I. Ovchinnikov
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Abstract

In this article structural concepts peculiarities of bridge structures for mountain conditions were analyzed. It is noted that the mountainous terrain is characterized not only by a complex broken rock but also by the course of earthquakes and their genetic varieties: landslides, avalanches, rockfalls, etc. It is also noted that the interaction of the plain bridge and the environment is one-sided, while mountainous bridges themselves are negatively influenced by the mountainous environment. The Republic of Dagestan territory is considered an example of mountainous terrain. The linking bridge structures problem to various mountainous terrain regions is investigated here. The peculiarity of the mountain rivers and bridge crossings interaction is noted in this paper, as well as the influence of rivers on the constructive justification of the mountain bridges solutions. The possibility of using cascade systems for regulating the mountain rivers water regime for the rational bridge crossings design with several holes is considered. Various options for the bridge crossings placement relative to mountain rivers are given as well as described their peculiarities. Current support parts and expansion joints are considered and analyzed from the mountain bridge use on structures suitability point of view. The necessity of using seismic-insulating expansion joints and their influence on the conditions of vehicles passing through the bridge structure during an earthquake is substantiated here. The problem of using road pavements on mountain bridge structures is noted, the most common road pavements designs are described and analyzed. The concepts of the «ideal» bridge and their applied significance in relation to mountainous terrain are presented. The constructive and technological solutions considered within the framework of this article will improve the bridge structure’s efficiency in mountainous conditions.
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山桥结构施工方案的施工与技术论证
本文分析了山地桥梁结构的结构概念和特点。值得注意的是,山区地形不仅具有复杂的破碎岩石,而且具有地震过程及其遗传多样性:山体滑坡、雪崩、落石等。平原桥与环境的相互作用是单向的,而山地桥本身受到山地环境的负面影响。达吉斯坦共和国的领土被认为是山地地形的一个例子。本文研究了不同山地地形的连接桥梁结构问题。本文指出了山区河流与桥梁相互作用的特殊性,以及河流对山区桥梁解决方案的建设性论证的影响。考虑了利用梯级系统调节山河水势的可能性,对合理设计多孔桥梁进行了探讨。相对于山间河流,给出了不同的桥面布置方案,并描述了它们的特点。从结构适用性的角度出发,对目前山桥使用的支承部件和伸缩缝进行了考虑和分析。本文论证了采用隔震伸缩缝的必要性,以及隔震伸缩缝对桥梁结构中车辆在地震中通行状况的影响。指出了在山桥结构上使用道路路面的问题,对最常见的道路路面设计进行了描述和分析。提出了“理想”桥的概念及其在山地地形中的应用意义。本文框架内考虑的建设性和技术解决方案将提高桥梁结构在山区条件下的效率。
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