Process Engineering
From front‑end studies (concept, feasibility, options, BoD) and detailed process design (PFDs, HMEBs, P&IDs, control philosophies, specifications) to manufacture, commissioning and ongoing operations support, Swift TG Solutions can support projects the whole way.
We combine deep process knowhow with in-house mechanical engineering to turn concepts into drawings and specifications, and, together with trusted fabricators, deliver complete packages. Our experience ranges from rapid interventions to multi million pound modular projects. Where it adds value, we apply rigorous modelling and analysis: process simulation, hydraulic network studies, and targeted CFD and FEA; this validates designs, reduces risk in decision making, and assures integrity, safety, and compliance.
Industry Sectors and Expertise
Oil & Gas (upstream, topsides and onshore processing)
Waste‑to‑Energy and Energy Recovery
Hydrogen and Emerging Energy Systems
Core Capabilities
Front‑End and Studies
Conceptual and feasibility studies
Debottlenecking and optimisation studies
Technology screening and options evaluation
Basis of Design (BoD) development and project definition
Modelling and
Analysis
Simulations
Hydraulic network studies (single, two‑phase, compressible and incompressible)
Process vessel internals selection and design (predominantly phase separation)
Computational Fluid Dynamics (CFD) for non‑standard and bespoke applications
Finite Element Analysis (FEA) for equipment, skids and support structures (stress, fatigue, vibration)
Detailed Process Design & Documentation
Preparation of Process Design Packages
Equipment specifications
Process Flow Diagrams (PFDs)
Heat, Mass and Energy Balances (HMEBs)
Piping and Instrumentation Diagrams (P&IDs)
Line sizing and hydraulic schematics
Operating and control philosophy and functional specifications
Datasheets, duty summaries, and detailed design calculations
Specialist Capabilities (from our track record)
Multiphase separation design: 2, 3 and 4 phase systems; compact cyclonic devices (both within vessels and in-line); hydrocyclones and conventional methods.
Pyrolysis and thermal decomposition process development and scale‑up
Combustion and species transport modelling; pollution dispersion and emissions studies
Rotating equipment design and analysis
Subsea and topsides separation technology R&D and internals optimisation