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动水条件下单裂隙注浆浆液扩散规律研究 被引量:3
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作者 王天琦 张昌锁 +1 位作者 王子琦 曾发镔 《矿业安全与环保》 北大核心 2022年第6期39-45,51,共8页
动水条件下注浆是防治水害的有效手段。为掌握动水条件下浆液在裂隙中的扩散规律,采用多相流相场法数值计算方法,解算了动水注浆过程中动水对浆液的冲刷作用,以及浆液—水相界面、速度场分布特征,研究了裂隙倾角与动水流速对浆液扩散规... 动水条件下注浆是防治水害的有效手段。为掌握动水条件下浆液在裂隙中的扩散规律,采用多相流相场法数值计算方法,解算了动水注浆过程中动水对浆液的冲刷作用,以及浆液—水相界面、速度场分布特征,研究了裂隙倾角与动水流速对浆液扩散规律的影响。研究结果表明:动水主要沿着扩散主体两侧对浆液冲刷,使部分浆液与主体分离而造成浆液流失;浆液—水相界面受浆液自身黏度时变性的影响亦存在明显的时变性;受动水冲刷的影响,扩散主体两侧及下侧的顺水流区均存在速度突变现象;裂隙倾角与动水流速增大会增强动水对浆液的冲刷作用,进而影响浆液的扩散。研究结果可为动水注浆理论和工程实践提供技术参考。 展开更多
关键词 动水 注浆 裂隙 对流冲刷 扩散规律
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Scour and Scour Countermeasures at Bridge Sites
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作者 CHIEW Yee-Meng 《Transactions of Tianjin University》 EI CAS 2008年第4期289-295,共7页
This paper examines scour and scour countermeasures at bridge piers and abutments. Abutment scour is by far more complex than its counterpart associated with piers because of the possibility of the presence of a flood... This paper examines scour and scour countermeasures at bridge piers and abutments. Abutment scour is by far more complex than its counterpart associated with piers because of the possibility of the presence of a floodplain. Notwithstanding this, the mechanism of scour at both piers and abutments is very similar; moreover, the failure mechanisms associated with both armoring and flow-altering countermeasures are not very different. In rivers with a floodplain, abutment scour becomes much more complex. In cases where the abutment ends at or near to the floodplain, it can initiate bank erosion, which clearly is an important erosion problem that is quite distinct from the customary scour at either an abutment in rivers without a floodplain or a pier. For this reason, abutment scour can be very site-specific while pier-scour is more generic in nature. To this end, the ability to identify the type of abutment scour that may form in a particular channel is closely related to an engineer's ability to propose devices for effective scour countermeasure.By summarizing research efforts on using riprap as a pier or abutment countermeasure over the past few decades, this paper highlights the deficiencies of riprap in arresting pier scour. To this end, different failure mechanisms are identified. They are shear failure, winnowing failure, edge failure, bedform-induced failure and bed-degradation induced failure. Each failure mechanism can singly or, more likely, combine to cause the eventual breakdown of the riprap layer. The study shows that a riprap layer is vulnerable to other failure mechanisms even though it is adequately designed against shear failure, rendering it ineffective in arresting scour. 展开更多
关键词 abutment scour pier scour river engineering scour countermeasure riprap protection sediment transport
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