首页> 外文期刊>Hydrotechnical construction >Determination of the additional earth pressure on the chamber walls of twin locks
【24h】

Determination of the additional earth pressure on the chamber walls of twin locks

机译:测定双锁腔壁上的额外土压力

获取原文

摘要

1.Until recently there were no investigations of the conditions of the static work of chambers of twin locks. Therefore, in the design of these locks total transmission of the reaction pressure occurring behind the inner wall of the chamber being filled to the inner wall of the adjacent chamber was assumed. Such design practice led to an overestimation of the calculated loads and to an increase of weight of the chambers.2.The instructions of SNiP II-55-79 for determining the additional earth pressure (Appendix 3, Paragraphs 8 and 9) give overestimated values of this pressure, which do not agree with the data of on-site observations. The soil reaction pressure behind the outer walls of the chamber being filled from their bending by the water determined for the case of unconfined backfill by formula (23) is underestimated and does not coincide with the data of on-site observations either in magnitude or in the form of the pressure diagram.3.When calculating chambers of twin locks for hydrostatic loads we recommend determining the soil reaction pressure behind both walls of the chamber being filled by means of the calculation schemes used for single-lane locks. The additional earth pressure being transmitted through the backfill of the interlock space to the adjacent chamber should be determined in fractions of this reaction pressure by relations (1)–(8).4.In calculations of the strength of lock chambers it is suggested to take into account the shear stresses (frictional forces) on the contact of the soil with the backs of the walls, which will make it possible to reduce the calculated area of reinforcement. Furthermore, consideration of frictional forces in calculations for the hydrostatic load will permit using lower levels of backfill behind the chamber walls, which will ease their work and permit designing more economical structure
机译:1.直到最近,还没有对双锁室的静态工作条件进行调查。因此,在这些锁的设计中,假设在被填充的腔室内壁后面发生的反应压力完全传递到相邻腔室的内壁。2.SNiP II-55-79关于确定额外土压的说明(附录3,第8段和第9段)高估了该压力的值,这与现场观测数据不一致。根据公式(23)确定的无侧限回填情况,被水弯曲填充的腔室外壁后面的土壤反作用压被低估了,并且与现场观测数据不一致,无论是在大小上还是在压力图的形式上.3.在计算静水载荷的双锁室时,我们建议确定被填充室两壁后面的土壤反作用力通过用于单车道锁的计算方案。通过联锁空间的回填传递到相邻腔室的额外土压应通过关系 (1)–(8).4 确定该反应压力的分数。在计算锁室的强度时,建议考虑土壤与墙背接触时的剪切应力(摩擦力),这将可以减少计算的钢筋面积。此外,在计算静水载荷时考虑摩擦力将允许在腔室壁后使用较低水平的回填,这将简化他们的工作并允许设计更经济的结构

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号