紧邻海底管道的水下爆破施工技术*
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国家自然科学基金面上项目(52071060)


Technologies for underwater blasting construction adjacent to submarine pipelines
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    摘要:

    针对海洋工程中水下爆破施工对已建海底管道的破坏风险等问题,以紧邻海底管道的码头港池疏浚炸礁为例,围绕水下爆破过程中对海底管道的保护,系统阐述和分析紧邻海底管道的水下爆破施工关键思路和技术应用。结果表明,相比水下裸露爆破方法,水下钻孔爆破是更兼顾爆破效率、耗材和保护周边结构物的施工方法;在爆破施工中,炸药量是控制管道振动速度的核心,需要根据管道安全允许振动速度计算出炸药量和安全距离的关系,并结合施工设备和材料,设计不同爆破距离的安全起爆网络;通过设置减振孔和减振沟,可以进一步减弱水下爆破引起的振动传递,降低管道的振动破坏风险;振动监测可以及时观察和收集管道在水下爆破过程中的振动状态,为调整施工方法或分析管道安全提供参考,施工后的管内完整性检测则是确保管道在后续生产中安全使用的重要方法。

    Abstract:

    For the risk of damage to built submarine pipelines caused by underwater blasting construction in marine engineering, taking the reef blasting in harbor dredging engineering adjacent to submarine pipelines as an example, this paper systematically describes and analyzes key thinking and technical applications of underwater blasting construction, and it mainly focus on the protection of the submarine pipelines during construction.The conclusion indicates that compared with underwater exposed blasting methods, underwater drilling blasting is a better method in blasting efficiency, consumables, and protection of surrounding structures.In blasting construction, the explosive quantity is the core of controlling the vibration speed of pipelines.It is necessary to calculate the relationship between explosive quantity and safety distance based on the allowable vibration speed of pipeline before construction, and design a safe detonation network for different blasting distances combined with equipment and materials.By setting weakened vibration holes and groove, the vibration transmission caused by underwater blasting can be further reduced, and the risk of vibration damage to pipelines can be lowered.Vibration monitoring can timely observe and collect the vibration status of pipelines during underwater blasting, providing a reference for adjusting construction methods or analyzing pipelines safety, and the pipeline integrity testing after construction is an important method to ensure the safety use of pipelines in production.

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许建武,卢玉敏.紧邻海底管道的水下爆破施工技术*[J].水运工程,2025(10):217-223.

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  • 在线发布日期: 2025-10-20
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