森林建筑群木桥设计的特点

IF 0.2 Q4 FORESTRY
V. Utkin, S. Matveev
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引用次数: 1

摘要

森林资源对国民经济的供给直接关系到森林富庶地区的交通可达性、路网的状况和发展。全年新建林道2.1公里/年,季节性新建林道9.3公里/年。由于运输设施转移到新的更重的活荷载上,情况变得更加复杂。以前使用的运输结构的设计形状已经过时,需要新的工程解决方案。这对木桥结构尤其重要,因为木桥结构对森林道路建设者至关重要。研究对象为跨度为12 ~ 18 m的木桥主梁上部结构,其承受的道路荷载较以往有所增加。研究的目的是在原木、板-杆-销钉砌块和工厂制造的层压砌块组合梁的基础上,发展现代木梁上部结构的设计。研究内容包括:原木组合梁与组合缝的上部结构、组合梁上部结构的计算方法、15米原木组合梁与巷道钢筋混凝土板联合作业的试验上部结构设计;15- 21米活载板杆钉块A11和NK-80的上部结构新设计,砌块制造的设计程序和技术,15米上部结构设计和建造的桥梁实例;多肋上部结构的设计,由预制可移动的整块层压截面组成,包含层压梁和多层层压木板。建议设计的原木(梁)和板钉块组合梁可以在伐木组织的现场和场地上使用常用设备、当地合格的工作人员和材料制造。使用这些设计在鄂木斯克地区建造的永久性桥梁的成本参数比钢筋混凝土类似物低1.5-2倍。这些设计在林业发展的试点方法中是有效的。层压上层建筑的使用与森林基础设施发展的现代阶段有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Features of Designing Wooden Bridges of the Forest Complex
The supply of the national economy with forest resources is directly related to transport accessibility, the condition and development of the road network of forest-rich territories. Construction requirements for year-round and seasonal new forest roads are 2.1 and 9.3 ths km per year, respectively. The situation is complicated by the transfer of transport facilities to new heavier live loads. The previously used design shapes of transport structures are outdated and require new engineering solutions. This is especially relevant for wooden bridge structures, which are of primary importance to forest road builders. The research subject is the wooden bridge girder superstructures with spans of 12–18 m undergoing increased road loads compared to the previous ones. The research aims is the development of modern designs of wooden beam superstructures based on the composite girders made of logs, board-bar-dowel-nail blocks and factory-made laminated blocks. The research includes: superstructures with composite girders of logs combined by combdowel joints, a method for calculating superstructures with composite girders, design of a 15-meter experimental superstructure containing composite log girders in joint operation with roadway reinforced concrete slab; new designs of 15–21-meter superstructures with board-bar-dowel-nail blocks A11 and NK-80 for live loads, design procedure and technology of block manufacturing, examples of designed and built bridges with the 15-meter superstructures; designs of multi-ribbed superstructures made of prefabricated transportable one-piece laminated sections containing laminated beams and a multilayer laminated timber slab. The proposed designes with composite girders of logs (beams) and board-nail blocks can be manufactured on the sites and yards of logging organizations using commonly used equipment, local qualified staff and materials. The cost parameters of permanent bridges built in the Omsk region with the use of these designs are 1.5–2 times lower than those of reinforced concrete analogues. The use of these designs will be effective in the pilot method of forestry development. The use of laminated superstructures is related to the modern phase of forest infrastructure development.
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