Advanced Chemical Engineer - Dynamics Simulation at Honeywell
Upper Macungie Township, Pennsylvania, United States -
Full Time


Start Date

Immediate

Expiry Date

18 Aug, 26

Salary

0.0

Posted On

20 May, 26

Experience

5 year(s) or above

Remote Job

Yes

Telecommute

Yes

Sponsor Visa

No

Skills

Dynamic Process Simulation, LNG Process Engineering, UniSim Design, Thermal Design, Cryogenic Processes, Process Control, HAZOP, P&ID Review, Compressor Dynamics, Anti-surge Control, Digital Twin, Relief and Depressuring Analysis, gPROMS, Chemical Engineering Principles, Process Optimization, Startup and Shutdown Sequences

Industry

Automation Machinery Manufacturing

Description
As an Advanced Chemical Engineer – Dynamic Simulations at Honeywell LNG, you will play a crucial role in Honeywell Process Technology supporting the LNG (Liquefied Natural Gas) Process Engineering team. This position will be reporting to our Senior Chemical Engineering Manager based in Allentown, Pennsylvania on a hybrid schedule.   In this role, you will impact the company's growth and competitiveness by driving technical excellence, project leadership, process optimization, collaboration, safety, and innovation in LNG (Liquefied Natural Gas) Process Technology, ultimately enhancing the quality of Honeywell LNG's offerings. (https://ess.honeywell.com/us/en/solutions/lng/liquefaction) A major component of this role will be using dynamic simulation for developing and deploying high-fidelity dynamic simulation models to support advanced control strategies, operator training systems, and digital twin initiatives for LNG facilities. This role bridges process engineering and automation, enabling safer, more efficient LNG plant operations through simulation-driven insights. KEY RESPONSIBILITIES * Apply engineering expertise to design and implement world-class natural gas liquefaction processes and equipment. * Perform advanced process cycle simulations for natural gas liquefaction and related systems. * Complete detailed thermal design of proprietary heat transfer equipment (coil wound heat exchanger) manufactured by Honeywell LNG. * Conduct relief and depressuring scenario analyses for proprietary equipment using established tools and methodologies. * Support plant operations through startup, performance testing, troubleshooting, control scheme implementation, and continuous improvement initiatives. * Collaborate closely with cross-functional teams—including commercial, project management, mechanical design, manufacturing, machinery, R&D, and start-up—to ensure seamless project execution, and drive product development and improvement. * Participate in P&ID reviews and HAZOPs at contractor offices to ensure safety, operability and design integrity. * Develop, configure, and validate dynamic simulation models using UniSim Design (steady-state and dynamics). * Perform dynamic studies including startup, shutdown, and cooldown sequences, compressor trip scenarios,  * Emergency shutdown (ESD) and blowdown analysis * Develop and validate control narratives, cause & effect matrices, and alarm management strategies * Troubleshoot plant operational issues using simulation and digital twin environments * Domestic and international travel to clients’ offices, contractors, and plant sites expected about 10-15 percent of the time. Honeywell helps organizations solve the world's most complex challenges in automation, the future of aviation and energy transition. As a trusted partner, we provide actionable solutions and innovation through our Aerospace Technologies, Building Automation, Energy and Sustainability Solutions, and Industrial Automation business segments – powered by our Honeywell Forge software – that help make the world smarter, safer and more sustainable.
Responsibilities
Develop and deploy high-fidelity dynamic simulation models to support advanced control strategies, operator training, and digital twin initiatives for LNG facilities. Design and optimize natural gas liquefaction processes, including thermal design of proprietary heat transfer equipment and safety analyses.
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