峨汉高速隧道排水系统结晶规律室内模拟试验
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1.四川乐汉高速公路有限责任公司;2.重庆交通大学 土木工程学院

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峨眉至汉源高速公路工程科研项目(LH-HT-45);国家重点研发计划子课题(2021YFB2600103-01);在渝本科高校与中科院所属院所合作项目(HZ2021009)。


Indoor simulation test on crystallization law of drainage system in Ehan high-speed tunnel
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    摘要:

    为探索隧道排水系统在地下水渗流作用下排水管道内结晶堵塞分布规律,依托峨汉高速廖山隧道工程,建立1:5隧道排水系统室内模拟试验,同时结合现场取样地下水分析结果配置相同离子成分的试验溶液开展室内试验。研究表明:(1)结晶堆垛方式主要是大量堆垛,晶体结构类型为不规则形和正方形,属于同分异构晶体类型,主要成分为方解石型碳酸钙;(2)随着水流量的增加,结晶量提高,结晶速率越快,其中横向排水出口的266.8mL/s水流量工况下的累积结晶总量最高,达到了106.4g;(3)缓和的排水管坡度有利于隧道排水管道内结晶物的生成;(4)排水管接头处结晶总量(30%)>横向排水出口处结晶总量(27%)>横向排水管结晶总量(19%)>纵向排水管结晶总量(15.2%)>环向排水管结晶总量(8.3%),隧道排水系统中结晶堵塞的关键位置是排水系统接口处和横向排水管出口处。研究成果有助于隧道排水系统的优化设计和施工质量控制,对保障隧道排水系统通畅有效运行具有重要意义。

    Abstract:

    In order to explore the distribution law of crystal blockage in the drainage pipeline of the tunnel drainage system under the effect of groundwater seepage, the 1:5 tunnel drainage system indoor simulation test was established based on the Liaoshan Tunnel Project of the Ehan Expressway, and the same ionic composition test solution was prepared based on the analysis results of the on-site sampling groundwater to carry out the indoor test. The results show that: (1) The crystal stacking mode is mainly mass stacking, and the crystal structure type is irregular and square, belonging to isomerism crystal type, and the main component is calcite calcium carbonate; (2) With the increase of water flow, the crystallization amount increases and the crystallization rate becomes faster. The cumulative total crystallization reaches 106.4g under the condition of 266.8mL/s water flow at the lateral drainage outlet; (3) the gentle slope of the drainage pipe is conducive to the formation of crystals in the drainage pipe of the tunnel; (4) The total amount of crystallization at the joint of the drainage pipe (30%)>the total amount of crystallization at the horizontal drainage outlet (27%)>the total amount of crystallization at the horizontal drainage pipe (19%)>the total amount of crystallization at the longitudinal drainage pipe (15.2%)>the total amount of crystallization at the circumferential drainage pipe (8.3%). The key positions of crystal blockage in the tunnel drainage system are the interface of the drainage system and the outlet of the horizontal drainage pipe. The research results are helpful to the optimal design and construction quality control of the tunnel drainage system, and are of great significance to ensure the smooth and effective operation of the tunnel drainage system.

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  • 收稿日期:2023-03-08
  • 最后修改日期:2023-05-19
  • 录用日期:2023-05-30
  • 在线发布日期: 2023-06-21
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