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Approximate method of calculating reinforced-concrete slabs of slope protection for wave loads

机译:计算波浪荷载下钢筋混凝土板的边坡保护的近似方法

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1.The proposed method of calculating reinforced-concrete slabs of slope protection for wave loads is simple and sufficiently accurate.2.With consideration of the combined work of slabs interconnected by reinforcement and absorbing the wave uplife pressure the thickness of the slabs is less than in the calculation for the one most loaded slab (36 and 45 cm), i.e., a 20–25 saving of concrete is obtained.3.For the investigated conditions the reinforcement should be placed in the lower section of the slab: in this case the amount of reinforcement per 1 m3of concrete will be 20 kg. When it is placed in the middle of the section its amount will be 30 kg/m3of concrete, i.e., 1.5 times more. It is also seen from the calculation that the reinforcement is principal in both directions (it is usually considered mounting reinforcement in the direction parallel to the water's edge and is placed for construction purposes, which is not true, especially for square slabs).4.In the case of alternating loads, for example, from the effect of an ice cover with consideration of a change in the water level in the reservoir, it can be advisable to place the reinforcement in the middle of the section. In this case some saving of reinforcement is obtained (as opposed to double reinforcement) and construction is simplified.5.The value of flexibility determined by Eq. (13) is considerably greater than 100, which means that it does not affect the final results of the calculation
机译:1.所提出的波浪荷载钢筋混凝土板边坡保护的计算方法简单且足够准确.2.考虑到钢筋相互连接的板的综合作用并吸收波浪上寿命压力,板的厚度小于计算中对一个最大荷载板(36和45厘米)的计算, 即,节省20-25%的混凝土.3.对于所研究的条件,钢筋应放置在板的下部:在这种情况下,每1 m3混凝土的钢筋量为20 kg。当它放置在截面的中间时,其量将为 30 kg/m3 的混凝土,即 1.5 倍以上。从计算中也可以看出,钢筋在两个方向上都是主要的(通常认为在平行于水边的方向上安装钢筋,并且是为了建筑目的而放置的,这是不正确的,特别是对于方形板).4.在交替荷载的情况下,例如,考虑到水库水位变化的冰盖效应, 建议将钢筋放置在截面的中间。在这种情况下,可以节省一些钢筋(而不是双钢筋)并简化施工.5.方程(13)确定的柔韧性值远大于100,这意味着它不会影响计算的最终结果

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