27 Sep
|
Virginia Transformer
|
Vadodara
27 Sep
Virginia Transformer
Vadodara
Role Summary The Electrical Development Engineer works within the central development and analysis group supporting power and autotransformer designs up to 345 kV / 315 MVA across multiple manufacturing plants. The position focuses on the engineering behind the design system itself: validating and enhancing design tools, harmonizing engineering manuals with the latest IEEE and IEC standards, performing advanced electromagnetic and dielectric analysis, resolving field and test-floor technical disputes, and qualifying new materials and components. The engineer works from first principles, benchmarks calculations against test data and legacy software, and converts findings into released standards, validated tools, and defensible technical reports.
Key Responsibilities
- Develop, validate, and enhance transformer electrical design programs; benchmark outputs against factory test results and reference designs.
- Author and harmonize engineering design manuals against current IEEE C57 and IEC 60076 series; identify and resolve conflicts between internal and industry standards.
- Perform dielectric design and verification: internal insulation structures, external air clearances, BIL/BSL coordination, and impulse test configurations for wye and delta windings.
- Conduct FEM-based electrostatic, magnetic, and thermal analysis for gradients, stray loss, GIC, overexcitation, and short-circuit electrodynamic stability.
- Support test floor and customer technical disputes with root-cause analysis and formal engineering reports;
- Lead vendor and material qualification with gap analyses, TCR documentation, and type-test review against IEEE/IEC/UL requirements.
- Automate engineering workflows: calculation tools, solvers,
and validation workbooks documented for team-wide release.
Key Skills — Shortlisting Criteria
Design & Analysis
- Power transformer electrical design (core, winding, loss, impedance, cooling) up to 345 kV class
- Dielectric stress analysis — oil/pressboard insulation structures, creep and strike distances
- Insulation coordination — BIL / BSL / DIL, air clearance design per IEEE C57.12.00 & IEC 60076-3
- Electrostatic field plotting and gradient analysis (winding-to-winding, lead systems, DETC regions)
- ANSYS Maxwell (2D/3D electrostatic, magnetostatic, eddy current / stray loss)
- Impulse voltage distribution / transient analysis — lightning, chopped wave, switching impulse (VLN / ladder-network winding models; ATP-EMTP exposure)
- Short-circuit force and electrodynamic stability analysis (Andersen FLD12, ELDINST or equivalent)
- Thermal / hot-spot analysis, GIC thermal effects, overexcitation (V/Hz) capability per IEEE C57.107
- Sound level (load noise) prediction and R&D;
Standards & Compliance
- IEEE C57.12.00, C57.12.90 working knowledge; IEC 60076 series (Parts 1–5)
Tools & Automation
- Python and/or VBA for engineering calculation tools; advanced Excel (validation workbooks, design calculators)
- Legacy design software validation / benchmarking (Fortran/Pascal-era code a plus)
Materials & Components
- Vendor qualification — bushings, OLTC/DETC, pressboard, insulated conductors; type-test review, TCR documentation, gap analysis
Qualifications
Bachelor's degree in Electrical Engineering (Master's preferred) with 5–10 years in power/distribution transformer design or development engineering. Publications, standards-committee participation, or advanced analysis portfolio are solid differentiators.
📌 Development Engineer (Vadodara)
🏢 Virginia Transformer
📍 Vadodara