首页> 外文期刊>Undersea and Hyperbaric Medicine: Journal of the Undersea and Hyperbaric Medical Society >Doppler ultrasound surveillance in deep tunneling compressed-air work with Trimix breathing: bounce dive technique compared to saturation-excursion technique.
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Doppler ultrasound surveillance in deep tunneling compressed-air work with Trimix breathing: bounce dive technique compared to saturation-excursion technique.

机译:使用Trimix呼吸在深隧道压缩空气工作中进行多普勒超声监视:与饱和漂移技术相比,弹跳潜水技术。

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The Western Scheldt Tunneling Project in The Netherlands provided a unique opportunity to evaluate two deep-diving techniques with Doppler ultrasound surveillance. Divers used the bounce diving techniques for repair and maintenance of the TBM. The tunnel boring machine jammed at its deepest depth. As a result the work time was not sufficient. The saturation diving technique was developed and permitted longer work time at great depth. Thirty-one divers were involved in this project. Twenty-three divers were examined using Doppler ultrasound. Data analysis addressed 52 exposures to Trimix at 4.6-4.8 bar gauge using the bounce technique and 354 exposures to Trimix at 4.0-6.9 bar gauge on saturation excursions. No decompression incidents occurred with either technique during the described phase of the project. Doppler ultrasound revealed that the bubble loads assessed in both techniques were generally low. We find out, that despite longer working hours, shorter decompression times and larger physical workloads, the saturation-excursion technique was associated with significant lower bubble grades than in the bounce technique using Doppler Ultrasound. We conclude that the saturation-excursion technique with Trimix is a good option for deep and long exposures in caisson work. The Doppler technique proved valuable, and it should be incorporated in future compressed-air work.
机译:荷兰的Western Scheldt隧道项目为利用多普勒超声监测评估两种深层潜水技术提供了独特的机会。潜水员使用弹跳潜水技术来修理和维护TBM。隧道掘进机卡在最深处。结果,工作时间不足。饱和潜水技术得到了发展,并允许更长的深度工作时间。 31名潜水员参与了该项目。使用多普勒超声检查了二十三个潜水员。数据分析使用反弹技术解决了在4.6-4.8 bar表压下对Trimix的52次曝光和在饱和偏移下4.0-6.9 bar表压下对Trimix的354次曝光。在项目描述的阶段中,任何一种技术都没有发生减压事件。多普勒超声显示,两种技术中评估的气泡负荷通常较低。我们发现,尽管工作时间更长,减压时间更短且身体工作量更大,但是与使用多普勒超声的弹跳技术相比,饱和漂移技术的气泡等级明显更低。我们得出的结论是,对于沉箱作业中的长时间和长时间曝光,使用Trimix进行饱和偏移技术是不错的选择。事实证明,多普勒技术很有价值,应将其纳入未来的压缩空气工作中。

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