Luo Wei, Rose Joseph L
Department of Engineering Science and Mechanics, The Pennsylvania State University, University Park 16802, USA.
J Acoust Soc Am. 2007 Apr;121(4):1945-55. doi: 10.1121/1.2711145.
Guided wave phased array focusing has shown many advantages in long-range pipeline inspection, such as, longer inspection distance, greater wave penetration power and higher detection resolution. Viscoelastic coatings applied to a large percentage of pipes for protection purposes created some challenges in terms of focusing feasibility and inspection ability. Previous studies were all based on bare pipe models. In this work, guided wave phased array focusing in viscoelastic coated pipes is studied for the first time. Work was carried out with both numerical and experimental methods. A three-dimensional finite element model was developed for quantitatively and systematically modeling guided waves in pipes with different viscoelastic materials. A method of transforming measured coating properties to finite element method inputs was created in order to create a physically based model of guided waves in coated pipes. Guided wave focusing possibilities in viscoelastic coated pipes and the effects from coatings were comprehensively studied afterwards. A comparison of focusing and nonfocusing inspections was also studied quantitatively in coated pipe showing that focusing increased the wave energy and consequently the inspection ability tremendously. This study provides an important base line and guidance for guided wave propagation and focusing in a real field pipeline under various coating and environmental conditions.
导波相控阵聚焦在长距离管道检测中已展现出诸多优势,例如检测距离更长、波穿透能力更强以及检测分辨率更高。为保护目的而应用于大部分管道的粘弹性涂层,在聚焦可行性和检测能力方面带来了一些挑战。以往的研究均基于裸管模型。在这项工作中,首次对粘弹性涂层管道中的导波相控阵聚焦进行了研究。采用数值和实验方法开展工作。建立了一个三维有限元模型,用于对具有不同粘弹性材料的管道中的导波进行定量和系统的建模。创建了一种将测量的涂层特性转换为有限元方法输入的方法,以便建立基于物理的涂层管道中导波模型。随后全面研究了粘弹性涂层管道中的导波聚焦可能性以及涂层的影响。还对涂层管道中的聚焦检测和非聚焦检测进行了定量比较,结果表明聚焦极大地增加了波能量,从而显著提高了检测能力。本研究为各种涂层和环境条件下实际现场管道中的导波传播和聚焦提供了重要的基线和指导。