土工基础 ›› 2026, Vol. 40 ›› Issue (1): 135-139.

• 测试技术 • 上一篇    下一篇

采用跨孔法波速对厚覆盖层地区基岩完整性分析

刘文超   

  1. (江苏省水文地质工程地质调查大队,江苏淮安 223001)
  • 收稿日期:2023-11-13 修回日期:2023-11-22 出版日期:2026-02-28 发布日期:2026-04-22
  • 作者简介:刘文超(1984-),高级工程师,研究方向为水文地质、工程地质勘察及评价。

Evaluation of Bedrock Integrity in Thick Overburden Soils Using Cross Hole Wave Velocity Test

LIU Wenchao   

  • Received:2023-11-13 Revised:2023-11-22 Online:2026-02-28 Published:2026-04-22

摘要: 在深厚覆盖层地区,由于钻孔深度大、基岩成分、颗粒复杂,当采用常规钻探手段往往无法准确判断基岩的完整性时,可采用跨孔法波速等原位测试手段对基岩完整性进行定性或定量判断分析,为基础设计及施工提供准确的地质依据。以南京地铁4号线二期江心洲中间风井岩土工程详细勘察为例,详细介绍了在长江漫滩深厚覆盖层地区的基岩勘察过程中,通过采用中间孔激发、两侧孔接收的跨孔法波速测试手段,在深基坑两端头针对复杂基岩地层合理布置跨孔波速测试孔,采用电火花震源激发纵波进行岩石纵波测试,结合室内试验、地质钻孔资料等综合分析,计算取得岩体完整性系数,进一步细化了基岩地层的完整性,为优化地连墙插入深度和控制工程总造价提供了地质依据。

关键词: 厚覆盖层, 跨孔法波速测试, 深基坑, 地连墙

Abstract: In areas with thick overburden soils, due to the large depth of drilling, complex composition and particles of the bedrock, single hole wave velocity test method often cannot accurately determine the integrity of the bedrock. In situ testing methods such as cross hole wave velocity test method can be used to qualitatively or quantitatively evaluate and analyze the integrity of the bedrock, to provide accurate geological basis for preliminary design. This article presents the detailed geotechnical investigation of the Jiangxinzhou middle ventilation shaft in the second phase of Nanjing Metro Line No. 4. The process of bedrock exploration in the thick overburden area of the Yangtze River floodplain is introduced by using the cross hole wave velocity test method, which is excited by the middle borehole and received by both side of the boreholes. Boreholes are reasonably arranged at both ends of a deep excavation for complex bedrock strata. The longitudinal wave test is carried out using electric spark source to excite longitudinal waves. Based on comprehensive analysis of laboratory test results and geological boreholes data, the bedrock integrity coefficient was evaluated and obtained.  The integrity of the bedrock strata information is further refined. This information provides a reliable geological basis for optimizing the insertion depth of the diaphragm wall and controlling the total construction cost of the project.

Key words: Thick Overburden, Cross Hole Wave Velocity Test Method, Deep Excavation, Diaphragm Wall

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