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Review design of wind load analysis structures guyed tension in the Bogor repeater radio frequency antenna towers

机译:审查风力荷载分析结构设计在茂物中继器射频天线塔内的张力

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The purpose of this study is to analyze the RRF antenna tower under wind load action, the wind load is viewed from an angle of 0? to the towing cable to the largest angle on the two types of antenna towers, triangle and Square. Both types will produce different wind loads so that we can find out which load is the biggest from a combination of wind directions. The research method is by empirical analysis, calculating the wind load alone while other loads are not counted. As a result of wind loads, the tension cable and load direction correspond to each section and then the resultant values of force and direction will arise. And finally, the force is changed to lift and the anchor will hold the force. The results use of triangle antenna towers is more beneficial, because the wind load that occurs is smaller, thus the construction costs are also smaller. Due to the wind load that works horizontally and will be provided by the tower that stands vertically, the tower requires several retaining cables in a diagonal position, the force that propagates on the diagonal cable will cause a force in the vertical direction or lift, so the lift must be placed using anchors that are embedded in the soil, the large load from the soil that will hold the anchor is determined based on the value of the analysis, the criteria are too light so the anchor will be lifted and friendly, it will cause waste.
机译:本研究的目的是在风负荷动作下分析RRF天线塔,从0的角度观察风负荷?牵引电缆到两种类型的天线塔,三角形和正方形的最大角度。这两种类型都会产生不同的风力载荷,以便我们可以找到哪个负载是来自风向的组合中最大的负载。研究方法是通过经验分析,单独计算风负荷,而其他负载不计数。由于风载荷,张力电缆和负载方向对应于每个部分,然后将产生力和方向的所得值。最后,力改变以升力,并且锚将保持力。结果使用三角天线塔更有益,因为发生的风负荷较小,因此施工成本也更小。由于横向上工作的风力负荷,并且将由垂直竖立的塔提供,塔在对角线位置需要若干保持电缆,在对角线电缆上传播的力将导致垂直方向或升力的力。必须使用嵌入在土壤中的锚点放置升力,从将固定的土壤中的大负载基于分析的值确定,标准太亮,因此锚将被提升和友好会造成浪费。

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