Lead steam turbine system definition, sizing, and trade studies for steam turbine islands and adjacent cycles, including sCO₂ and Brayton cycles where applicable. Balance thermal performance, capital cost, operability, execution schedule, and long-term reliability.
Influence plant-level decisions related to cycle conditions, heat rejection architecture, extraction and regeneration strategy, startup and transient behavior, and cycling versus baseload operation in thermal energy storage applications.
Drive cross-discipline integration across thermal, mechanical, process, electrical, and controls scope, from heat source interface through generator terminals and balance-of-plant tie-ins.
Third-Party Interfaces
Serve as the technical lead for turbine OEM and EPC engagement, including RFP development, bid evaluation, technical clarifications, design reviews, and contract negotiation support.
Ensure technical decisions support project economics and customer commitments.
AI-Enabled Engineering Workflows
Identify and implement AI tools and workflows that improve engineering productivity, technical rigor, and team execution. Examples may include accelerating trade study development, improving requirements traceability, summarizing technical documentation, supporting bid evaluations, and streamlining recurring analysis and reporting.
Support commissioning, performance testing, troubleshooting, and early operations for first-of-a-kind plant startups. Translate field learnings into design improvements for future projects and fleet deployment.