I offer advanced heat transfer analysis and design for heat transfer systems
About this service
I deliver expert heat transfer analysis, rating, and design optimization for a wide range of heat exchanger systems and heat transfer applications. The work encompasses detailed heat transfer calculations, thermal performance modeling, two-phase flow analysis, fouling assessment, and design optimization under both steady-state and transient conditions. Clients in nuclear, oil & gas, industrial processing, and energy systems rely on these studies for new equipment design, performance validation, debottlenecking, and troubleshooting to improve efficiency, reliability, and safety margins.
I deliver expert heat transfer analysis, rating, and design optimization for a wide range of heat exchanger systems and heat transfer applications. The work encompasses detailed heat transfer calculations, thermal performance modeling, two-phase flow analysis, fouling assessment, and design optimization under both steady-state and transient conditions. Clients in nuclear, oil & gas, industrial processing, and energy systems rely on these studies for new equipment design, performance validation, debottlenecking, and troubleshooting to improve efficiency, reliability, and safety margins.
I deliver expert heat transfer analysis, rating, and design optimization for a wide range of heat exchanger systems and heat transfer applications. The work encompasses detailed heat transfer calculations, thermal performance modeling, two-phase flow analysis, fouling assessment, and design optimization under both steady-state and transient conditions. Clients in nuclear, oil & gas, industrial pro...
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I deliver expert heat transfer analysis, rating, and design optimization for a wide range of heat exchanger systems and heat transfer applications. The work encompasses detailed heat transfer calculations, thermal performance modeling, two-phase flow analysis, fouling assessment, and design optimization under both steady-state and transient conditions. Clients in nuclear, oil & gas, industrial processing, and energy systems rely on these studies for new equipment design, performance validation, debottlenecking, and troubleshooting to improve efficiency, reliability, and safety margins.
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Service offer categories
Oil & Gas
Mechanical Engineering
3D Modeling
Software & skills
Design Optimization
Efficiency Improvement
Energy Systems
Equipment Design
Fluid Dynamics
Heat Exchanger Design
Heat Transfer Analysis
Oil & Gas
Thermodynamics
Troubleshooting
+7 more
Member since
May 2026
Languages
English
Avg. response time
1 hour
Thermal-Hydraulic and Reliability Specialist | Advanced Energy Systems
I am a licensed Professional Mechanical Engineer and the founder of Solvify LLC, an independent mechanical engineering consulting firm based in Covington, Washington. I hold a B.S. in Mechanical Engineering from the University of Washington, where I graduated with a 3.89 GPA, and an A.S. in Pre-Engineering from Green River College with a 3.90 GPA.
Since founding Solvify in 2025, I have specialize... read more
Since founding Solvify in 2025, I have specialize... read more
Questions and answers
I work with simple, shell-and-tube, air-cooled, unusual-fluid (such as liquid metals), compact, and custom or specialized heat exchangers handling single-phase, condensing, evaporating, or two-phase fluids. My experience spans nuclear, oil & gas, combustion, and industrial energy applications.
Yes. For new designs I optimize thermal performance, size equipment, and support specification development. For existing systems I perform rating calculations, diagnose underperformance or fouling issues, and recommend modifications or operational changes to restore or improve capacity and efficiency.
I apply fundamental heat transfer principles using LMTD and effectiveness-NTU methods, detailed thermal modeling, two-phase flow analysis, and system-level performance simulations in Excel. All work is performed in accordance with applicable ASME, TEMA, API, and other relevant codes and standards.
Deliverables typically include a detailed technical report with heat transfer calculations, performance curves, design recommendations, and supporting documentation. Most heat transfer and heat exchanger analysis projects are completed within 1–4 weeks, depending on scope and data availability.
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