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Diagnostic evaluation of quay wall using three-dimensional acoustic measurement systems

机译:使用三维声学测量系统对码头壁进行诊断评估

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We used two types of acoustic measurement systems to assess the state of quay wall. Collapse and subsidence of quay wall at a harbor are often reported and a diagnosis method to prevent the accident has become a significant concern. The collapse is mainly occurred by air hole inside the quay wall. Therefore, the more robust and accurate diagnosis system is required and we try to apply the new diagnosis system which enables to assess the both inside and outside states of the quay wall from the underwater site. In the present study, two types of acoustic measurement systems using dual frequency identification sonar (DIDSON), and narrow-beam parametric sub-bottom profiler (SES2000) are applied to assess the both inside and outside states of quay wall. The field experiment was performed at the Iwanai port in Hokkaido, Japan (42° 59' N, 140° 30' E). The DIDSON was used generation of image mosaic and tree-dimensional image of the surface of quay wall. The SES2000 was created acoustic profile of inside the quay wall. The outside and inside acoustic images of the damaged quay wall were reconstructed from the collected data of DIDSON and SES2000. We detected corrosion hole. In addition, we detected corrosion holes and aged deterioration at other survey points using these two- and three-dimensional images. The state of the quay wall was quantified and compared with the results of direct measurement by diver. We should take more data in various field conditions and the continuous work with the proposed methods is needed for the practical use of them.
机译:我们使用两种类型的声学测量系统来评估码头壁的状态。经常报道港口码头壁的倒塌和沉陷,防止事故的诊断方法已成为人们关注的重点。坍塌主要由码头壁内的空气孔引起。因此,需要更强大和准确的诊断系统,并且我们尝试应用新的诊断系统,该系统能够从水下场所评估码头墙的内部和外部状态。在本研究中,两种类型的使用双频识别声纳(DIDSON)和窄波束参数亚底部轮廓仪(SES2000)的声学测量系统被用于评估码头墙的内部和外部状态。在日本北海道的岩内港(北纬42°59',东经140°30')进行了现场试验。 DIDSON用于生成图像马赛克和码头墙表面的树维图像。 SES2000是在码头壁内部创建的声学轮廓。根据DIDSON和SES2000收集的数据重建受损码头壁的内外声像。我们检测到腐蚀孔。此外,我们使用这些二维和三维图像检测了其他测量点的腐蚀孔和老化情况。量化码头壁的状态,并将其与潜水员直接测量的结果进行比较。我们应该在各种现场条件下获取更多数据,并且为使它们的实际应用需要与所提出的方法进行连续的工作。

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