Phased Array Ultrasonic Method for Robotic Preload Measurement in Offshore Wind Turbine Bolted Connections

Author:

Javadi Yashar12ORCID,Mills Brandon1,MacLeod Charles1,Lines David1ORCID,Abad Farhad3,Lotfian Saeid3ORCID,Mehmanparast Ali3ORCID,Pierce Gareth1,Brennan Feargal3,Gachagan Anthony1,Mineo Carmelo4ORCID

Affiliation:

1. Centre for Ultrasonic Engineering (CUE), Department of Electronic & Electrical Engineering (EEE), University of Strathclyde, Glasgow G1 1XQ, UK

2. Department of Design, Manufacturing & Engineering Management (DMEM), University of Strathclyde, Glasgow G1 1XQ, UK

3. Department of Naval Architecture, Ocean & Marine Engineering (NAOME), University of Strathclyde, Glasgow G1 1XQ, UK

4. Institute for High Performance Computing and Networking, National Research Council, Via Ugo La Malfa 153, 90146 Palermo, Italy

Abstract

This paper presents a novel approach for preload measurement of bolted connections, specifically tailored for offshore wind applications. The proposed method combines robotics, Phased Array Ultrasonic Testing (PAUT), nonlinear acoustoelasticity, and Finite Element Analysis (FEA). Acceptable defects, below a pre-defined size, are shown to have an impact on preload measurement, and therefore conducting simultaneous defect detection and preload measurement is discussed in this paper. The study demonstrates that even slight changes in the orientation of the ultrasonic transducer, the non-automated approach, can introduce a significant error of up to 140 MPa in bolt stress measurement and therefore a robotic approach is employed to achieve consistent and accurate measurements. Additionally, the study emphasises the significance of considering average preload for comparison with ultrasonic data, which is achieved through FEA simulations. The advantages of the proposed robotic PAUT method over single-element approaches are discussed, including the incorporation of nonlinearity, simultaneous defect detection and stress measurement, hardware and software adaptability, and notably, a substantial improvement in measurement accuracy. Based on the findings, the paper strongly recommends the adoption of the robotic PAUT approach for preload measurement, whilst acknowledging the required investment in hardware, software, and skilled personnel.

Funder

The University of Strathclyde’s Engineering and Physical Sciences Research Council

Sensor Enabled Automation Robotics & Control Hub

Centre for Ultrasonic Engineering

Department of Electronic & Electrical Engineering

Offshore Structural Integrity research group at the Department of Naval Architecture at the University of Strathclyde

Italian National Research Council

Publisher

MDPI AG

Reference32 articles.

1. (2015). High-Strength Structural Bolting Assemblies for Preloading—General Requirements (Standard No. BS EN 14399-1:2015).

2. (2022). Pressure Boundary Bolted Flange Joint Assembly (Standard No. ASME PCC-1).

3. Research Review of Principles and Methods for Ultrasonic Measurement of Axial Stress in Bolts;Pan;Chin. J. Mech. Eng.,2020

4. Structural dynamics of offshore Wind Turbines: A review;Jahani;Ocean Eng.,2022

5. Flanged foundation connection of the Offshore Wind Farm Amrumbank West—Concept, approval, design, tests and installation;Gollub;Stahlbau,2014

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