Engineering Excellence, Delivered with Speed and Reliability.
Founded in 2020, ULUDAS Consultancy LTD was born from a clear vision: to address the growing need for highly skilled, versatile, and reliable engineering expertise in the industry. Based in the UK and serving a global clientele, we are a modern consultancy dedicated to providing exceptional design and analysis solutions with a direct, client-focused approach.
Our mission is simple: to provide our clients with fast, reliable, and precise engineering services that bring their projects to life. We understand that success lies in the details, and we are committed to delivering excellence in every drawing, calculation, and document we produce.
We offer a comprehensive suite of advanced engineering services designed to meet the demands of residential, industrial, and healthcare sectors. From initial concept to final documentation, we are your trusted partner in:
3D Design & Building Information Modelling (BIM)
2D and GD&T Drawings
P&ID, BFD, and PFD Schematics
Complex Engineering Calculations & Analysis
Heat and Mass Balance Generation
Detailed Technical Documentation
In a competitive market, ULUDAS Consultancy stands out. Our strength lies in a unique combination of versatility, technical mastery, and a personal commitment to our clients.
Vast Experience: Our expertise spans a wide range of critical disciplines, including HVAC, plumbing, fire sprinkler systems, and natural gas installations, ensuring a holistic and integrated approach to every project.
Advanced Software Proficiency: We leverage the full power of industry-leading software like Revit, AutoCAD, Solidworks, Matlab, and DWSIM to deliver innovative, accurate, and efficient designs.
Direct Collaboration: When you work with us, you work directly with the expert. We believe in clear, continuous communication, ensuring your vision is understood and executed with precision from start to finish.
Uludas Consultancy LTD is led by our founder, Murat ULUDAS, a highly accomplished Mechanical Engineer with a passion for solving complex challenges. A graduate of Kocaeli University (Bachelor's '16, Master's '22), his career began in 2016 and has spanned diverse sectors across Turkey and the United Kingdom.
His commitment to advancing the field is demonstrated through published research in the prestigious "Journal of Building Engineering" and presentations at international conferences. With nearly a decade of hands-on experience, he brings a powerful blend of academic rigour and practical, real-world knowledge to every client partnership.
Engineered a 40 ton/hour, 20-bar industrial steam plant, designing the complete mechanical systems and producing the full drawing package (P&ID, 3D models, layouts drawings).
Engineered a 17 ton/h dual-pressure steam plant (20 bar and 5 bar), designing the complete mechanical systems and producing the full drawing package (P&ID, 3D models, layout drawings)
Engineered a 12 ton/hour industrial steam boiler plant, designing the mechanical systems and producing the complete drawing package (P&ID, 3D models, layout drawings).
Engineered the design and integration of a new 6 MW boiler plant with existing facility systems, delivering a complete drawing package (P&IDs, 3D models, layout drawings) for the expansion project.
Engineered a 6 MW superheated water boiler plant, designing the complete mechanical system and delivering a full drawing package including 3D models and P&IDs.
As the Process P&ID Lead on a landmark mega-project, I was responsible for authoring and managing the entire suite of Piping & Instrumentation Diagrams from inception. My role extended beyond P&IDs to include critical engineering tasks, where I performed detailed pipe sizing calculations and vital asphyxiation safety analyses. Furthermore, I was deeply involved in the procurement process, creating equipment datasheets and conducting in-depth Technical Bid Analyses to ensure the selection of optimal technology and vendors for the facility.
As an MEP Design & Coordination Specialist, I leverage my expertise in Autodesk Navisworks for advanced clash detection, lead multidisciplinary reviews, and validate engineering calculations.
As the lead mechanical designer, I engineered a massive 9 MW central cooling plant built around six 1500 kW water-cooled chillers. My responsibilities covered the entire system, including the central plant equipment layout, the hydraulic design of the chilled water pipelines, and the complete air-side system design for the ducts and fan coils. I delivered a full set of construction drawings for the project, including P&IDs, schematics, and detailed layout plans.
Pioneered the mechanical design for a landmark project involving the first-ever installation of 60 kW micro-cogeneration (CHP) units in Kocaeli. I engineered the complete boiler room, integrating the two CHP units with two high-capacity 2035 kW hot water boilers. My responsibilities included designing all process piping and developing the full set of engineering drawings, which featured detailed P&IDs, 3D models for clash detection, and final equipment layout plans.
Led the mechanical design for a new 624 kW HVAC chilled water system. Key responsibilities included engineering the layout of the central chiller plant housing two 312 kW units, performing detailed heat load calculations to select and place all office fan coils, and executing the hydraulic design of the entire chilled water piping network to ensure proper flow and temperature distribution.
Engineered the complete process water piping system for a large-scale facility with 75 battery cooling pools. My responsibilities included performing all hydraulic calculations to determine flow rates, pressure drops, and optimal pipe sizing. I then used SolidWorks to develop the 3D model in critical places to avoid clashes with other systems, while specifying all pumps, valves, and instrumentation to meet the system's thermal management requirements.
Engineered the complete high-temperature exhaust ducting for a new afterburner system using SolidWorks and AutoCAD. Additionally, I performed a full thermal analysis of the existing afterburner to identify inefficiencies, leading to a complete redesign of its insulation system. The project focused on optimising thermal performance and enhancing personnel safety by specifying modern materials to reduce heat loss and lower external surface temperatures.
Developed comprehensive 3D models for a new industrial steam boiler installation using SolidWorks. The models included the boiler, all associated high-pressure steam and condensate piping, pumps, and structural supports. From these models, I generated accurate general arrangement and isometric fabrication drawings, which were critical for performing clash detection and ensuring a precise, efficient installation with minimal on-site modifications.
Engineered the full heating and plumbing systems, including all calculations, equipment specifications, and construction drawings, for a 256-flat apartment complex.