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We deliver multi-discipline cryogenic design and engineering services for LNG, industrial gas, hydrogen, CCUS, and low-temperature process infrastructure using advanced engineering tools and global design standards to support next-generation energy and industrial projects.
Rishabh Pro Engineering Services provides integrated cryogenic engineering services supporting ultra-low temperature process systems across energy, gas processing, hydrogen, and industrial manufacturing sectors. As an experienced organization, we support operators, EPCs, EPCMs, OEMs, and technology licensors with reliable, safe, and scalable low-temperature system engineering solutions. Our multidisciplinary teams deliver specialized cryogenic engineering and design services aligned with global codes, safety requirements, and performance optimization goals. We support global projects from concept design through detailed engineering and execution-ready deliverables.
Our teams deliver advanced cryogenic system design services for storage, transfer, processing, and handling of cryogenic fluids.
As specialist cryogenic engineering consultants, we play a critical role in hydrogen, LNG, and carbon capture.
Our cryogenic design services support safe and efficient storage and transportation of liquefied gases.
Extreme low-temperature material behavior and thermal stress management
Boil-off gas management and insulation system optimization
Cryogenic fluid leak prevention and safety compliance
Integration with high-pressure and hazardous process systems
Brownfield integration of cryogenic systems into operating plants
Compliance with global cryogenic and pressure vessel standards
A leading industrial gas company required specialized cryogenic engineering expertise to perform detailed stress analysis for vacuum jacketed liquid nitrogen (LN₂) piping systems to ensure structural integrity and operational safety under extreme low-temperature conditions. Rishabh Pro Engineering delivered advanced piping engineering support including detailed pipe stress analysis, flexibility evaluation, support optimization, and compliance verification in accordance with applicable codes and standards. The team developed analytical models to assess thermal contraction, pressure loads, and support reactions, ensuring safe performance of the vacuum jacketed cryogenic piping network.
The result was a fully validated, code-compliant piping system design ensuring safe, stable, and reliable LN₂ transfer under cryogenic operating conditions.
20%
Improvement in Stress Optimization Accuracy
100%
ASME Code Compliance
25%
Faster Engineering Turnaround
Cryogenic process design basis and philosophy
Boil-off gas handling and recovery system design
Low-temperature PFDs and P&IDs
Process safety and HAZOP design support
Cryogenic process simulation and thermal balance studies
Cryogenic piping layout and 3D modeling
Cryogenic material selection support
Vacuum insulated and jacketed piping design support
Isometrics, MTOs, and fabrication deliverables
Thermal stress and flexibility analysis
Cryogenic vessel and tank engineering support
Skid and modular cryogenic package engineering
Heat exchanger and cold box integration support
Rotating equipment low-temperature design considerations
Cryogenic tank and equipment foundation design
Blast and thermal protection structural engineering
Pipe rack engineering for cryogenic piping
Modular cryogenic plant structural design
Cryogenic instrumentation and control system design
Cable routing, hook-up, and plant integration engineering
Temperature monitoring and safety shutdown systems
SCADA and plant monitoring integration
Hazardous area classification for cryogenic gas zones
Design and engineering of cryogenic systems are developed in accordance with international standards including ASME, API, ISO, CGA, and NFPA, leveraging advanced 3D modeling, thermal stress analysis, and digital engineering tools to support safe and efficient cryogenic operations.
Specialized Cryogenic Expertise
Supporting LNG, hydrogen, industrial gas, and CCUS cryogenic infrastructure
Design for Constructability
Modular, fabrication-ready engineering deliverables
Global Delivery Capability
Supporting projects across geographies and standards
Safety & Compliance Focus
Alignment with global cryogenic and pressure vessel standards
Partner with us for reliable, high-performance cryogenic design and engineering services supporting next-generation energy and industrial infrastructure.
Structural Stress Analysis of Cold Box
Stress Analysis of Cold Box Piping
Designing of Cold Turbine Aftercooler for a Cryogenic Plant
Thermal Design of Dry Expansion Type Heat Exchanger
Designing of Flooded-Type Evaporator for Chilling Plant
Stress Analysis Of Vacuum Jacketed Liquid Nitrogen Pipes Using CAESAR II
Liquid Nitrogen Storage & Vaporization Package – 3D Modeling on SmartPlant 3D
Piping Stress Analysis For Glycol Processing System
LIN Storage & Vaporization – 3D Modeling Using PDMS
We’re ready to collaborate. Get in touch to discuss how Rishabh Pro Engineering can support your next project.