The Global Coil Winding And Electrical Manufacturing Event

Vishal Vaghasiya

R&D Project Manager SGB-SMIT GmbH

Vishal Vaghasiya is an experienced professional with a strong background in computational engineering, having completed his master's degree at FAU Erlangen in Germany. Since May 2020, Vishal Vaghasiya has been contributing his expertise as an R&D project manager at the SGB SMIT Group and has specialized in transformative tasks in the field of vibration analysis and structural simulations. Its focus is on a wide range of transformers including oil distribution, dry-type and power transformers. Vishal Vaghasiya's career reflects a unique blend of academic excellence and industry knowledge. His diverse contributions in the areas of computational engineering, research and development underline his position as a key player in driving innovation and technological advances in changing industries.


2024 Agenda Sessions

Vibration Analysis of Dry-Type Transformer for Offshore Wind Applications

The presentation focuses on conducting a comprehensive vibration analysis of dry-type transformers for offshore wind energy. By investigating the dynamic behaviour and structural integrity of these transformers, the study aims to improve their reliability, performance and longevity in the demanding offshore environment, thereby increasing the efficiency of offshore wind applications.

  • Improving structural integrity
  • Optimizing performance
  • Predictive maintenance strategies
  • Safety aspects

Tuesday 14 May 14:45 - 15:10 Central Stage

Transformers Market Trends & Innovations

Add to calendar 05/14/2024 14:45 05/14/2024 15:10 Vibration Analysis of Dry-Type Transformer for Offshore Wind Applications

The presentation focuses on conducting a comprehensive vibration analysis of dry-type transformers for offshore wind energy. By investigating the dynamic behaviour and structural integrity of these transformers, the study aims to improve their reliability, performance and longevity in the demanding offshore environment, thereby increasing the efficiency of offshore wind applications.

  • Improving structural integrity
  • Optimizing performance
  • Predictive maintenance strategies
  • Safety aspects
Central Stage Europe/London