Projects
Design, Fabrication Drawings and Supply of a 1.2 GPM Water Treatment Plant
This project involved the development of detailed engineering for a Potable Water Treatment Plant (PWTP) in the Oil & Gas sector. The scope included P&ID development, equipment layout design, 3D plant modeling, hydraulic interconnection design using PVC SCH 80 piping, pipe support engineering, and the preparation of fabrication drawings for tanks, piping systems, and related infrastructure.
Engineering and 3D Design for the Construction of a Compact Wastewater Treatment Plant for the Fishing Industry
This project was executed to enhance the performance and quality of industrial wastewater treatment for a leading seafood processing company. The scope included detailed engineering, 3D plant modeling, structural steel design, reactor engineering, selection and positioning of pumping equipment, hydraulic and electrical interconnections to the control system, process P&ID development, and the preparation of detailed fabrication and construction drawings for the Industrial Wastewater Treatment Plant (IWTP).
Design, Fabrication Drawings and Commissioning of an Automated Industrial Pipe Processing Plant
The scope of this project included the design, detailed engineering, fabrication drawings, installation, and commissioning of a pipe-cutting machine. The project also involved engineering simulations, 3D modeling, renderings, hydraulic and pneumatic piping design, operation and preventive maintenance manuals, construction documentation dossiers, and the preparation of As-Built drawings.
Design and Detailed Engineering Drawings for a Potable Water Treatment Plant for the Brewing Industry
Development of basic and detailed engineering for a potable water treatment plant providing utility and process water services for the brewing industry. The scope included the preparation of engineering drawings, process flow diagrams (PFDs), P&IDs, cost estimation engineering, ASME-based tank sizing and design, structural engineering, pipe rack design, and related engineering deliverables.
Engineering, Design and Commissioning Drawings for the Modernization and Expansion of a Pharmaceutical Manufacturing Facility
This project involved the analysis, design, and implementation of multiple areas within an industrial manufacturing facility to support new production processes and capacity expansion initiatives for several corporate product lines, including lipsticks, nail polishes, powders, creams, and other cosmetic products.
The project included the modification and adaptation of existing equipment originally acquired for different operational purposes, ensuring compliance with hygiene, product quality, and industrial safety requirements. The scope also covered the development of fabrication drawings for structural steel, access platforms, equipment supports, and associated facilities required for the upgraded production areas.
Design and Fabrication Drawings for a Pharmaceutical Water Purification System
ngineering, design, construction, installation, and commissioning of a reverse osmosis system for the pharmaceutical industry, developed to produce high-purity water with up to 99% rejection of dissolved salts and contaminants. The system was designed and fabricated using AISI 316 stainless steel to meet the stringent quality requirements of pharmaceutical processes. The project also included the design and installation of BPE stainless steel piping systems with on-site orbital welding, preparation of As-Built drawings, finite element analysis (FEA) of critical components, operation and maintenance manual development, project dossier preparation, and complete equipment assembly and commissioning.
Design, Fabrication Drawings and Commissioning of a Dairy Processing Plant
This project focused on the expansion and upgrade of an existing production facility dedicated to yogurt and dessert manufacturing. The scope included detailed engineering, design, fabrication drawings, and installation drawings for the yogurt mixing system, homogenization equipment, load cell support structures, pasteurizers, mixers, and access platforms for personnel around electromechanical equipment. The project also included the design of steam, water, and compressed air piping systems, along with the development of process P&IDs, detailed construction drawings, and As-Built documentation. The engineering solutions were developed to improve production capacity, operational efficiency, maintainability, and compliance with industry standards.
Design and Construction Drawings for a DAF Skimmer System in an Industrial Wastewater Treatment Plant
This project involved the development of detailed engineering, design, 3D modeling, equipment selection, and detailed fabrication drawings for a Dissolved Air Flotation (DAF) skimmer system used in an Oil & Gas wastewater treatment facility. The scope included the design and specification of welded assemblies, rotating and moving components, as well as the evaluation and selection of lubricants for critical mechanical elements such as bearings, sprockets, and chains operating under demanding conditions. The analysis considered high-viscosity lubricants with inorganic thickeners and advanced rust and oxidation inhibitors to ensure reliable operation and extended equipment life. Additionally, operation and preventive maintenance manuals were developed to maximize equipment performance, reliability, and long-term operational efficiency.
Design and Fabrication Drawings for a Wastewater Treatment Plant for an Oil Degumming Process
Design, detailed fabrication drawings, and installation documentation for the commissioning of an Industrial Wastewater Treatment Plant (IWTP) with a treatment capacity of 2 m³3/h, designed to process wastewater generated during the enzymatic degumming process of edible oil production.
The sludge handling system was designed to transfer sludge using pneumatic pumps to two filter presses, where suspended solids were retained in the form of filter cakes while the filtrate was recovered and returned to the treatment process. Once the filtration cycle was completed, the filter cakes were discharged into collection carts positioned beneath the filter presses for subsequent handling and disposal by the client. The project scope included detailed engineering, process design, equipment layout development, piping design, fabrication drawings, installation drawings, and commissioning documentation to ensure reliable and efficient plant operation.
Design, Fabrication Drawings and Commissioning of Vertical Transportation Equipment – El Dorado International Airport
Development of detailed engineering, dimensional calculations, and structural design of primary and secondary support beams for elevator systems. The project included cost estimation engineering, conversion of technical drawings from European standards to international standards, preparation of fabrication and installation drawings, and the development of As-Built documentation. The scope covered freight elevators, passenger elevators, passenger boarding bridges, and escalator systems, ensuring compliance with applicable engineering standards, structural integrity requirements, and operational performance criteria. Engineering activities also included structural support verification, load analysis, construction documentation, and coordination with multidisciplinary teams to facilitate fabrication, installation, and commissioning activities at El Dorado International Airport.
Engineering, Design and Construction Drawings for a New Food Production Line
Development of detailed engineering for the relocation of an existing production line and the installation of a new high-capacity production line. The project included the design and development of a comprehensive 3D model of the industrial facility, incorporating the routing and integration of multiple process systems and utilities. The scope covered cooling water systems, lubricating oil lines, compressed air systems, packaging vacuum systems, fire protection networks, steam condensate recovery systems, process water distribution, dust extraction systems, pipe racks, and both internal and external pipe support structures. Engineering deliverables included plot plans, general arrangement drawings, piping isometrics, fabrication material take-offs (MTOs), technical documentation, piping specifications and classes, construction dossiers, and multidisciplinary coordination to support fabrication, construction, and commissioning activities. The project was developed to increase production capacity, optimize plant layout, improve operational efficiency, and ensure the safe integration of new process equipment and utility systems within the existing facility.
Engineering and Hybrid Structural Design of an Elevated Tank with Supports Embedded in Concrete Beams
The project involved the evaluation of the existing structural system and the reinforced concrete beams used as anchoring elements for a pressurized oil vessel weighing approximately 5 metric tons. A comprehensive structural assessment, analysis, and redesign were performed to reinforce the supporting structure and ensure its ability to safely withstand operational and static loads. The structural evaluation of the reinforced concrete beams yielded favorable results, confirming that the existing reinforcement configuration was adequate to support the reaction loads transferred by the embedded supports of the structural system. The engineering scope also included detailed structural analysis and calculation reports covering tensile strength, compressive strength, slenderness limitations, flexural capacity, shear resistance, and combined stress evaluations. The final design ensured compliance with applicable engineering standards, structural integrity requirements, and long-term operational reliability.
Design, Structural Analysis and Simulation of a Pipe Rack
Finite Element Method (FEM) analysis and structural simulation of steel profiles for a piping rack within an oilfield facility. The project included structural modeling, load evaluation, stress analysis, displacement verification, and structural integrity assessment under operational, dead, live, wind, and piping loads. The engineering scope involved the design and verification of structural members, connections, and support systems to ensure compliance with applicable codes and standards, while guaranteeing safe operation, structural stability, and long-term reliability of the piping rack system. Detailed calculation reports, structural analysis results, and engineering documentation were developed to support fabrication, construction, and installation activities within the oil & gas facility.
Engineering, Design and Construction Drawings for a Natural Gas Station in the Petrochemical Industry
Development of detailed engineering, construction drawings, and installation documentation for a natural gas station with a propane backup system serving a petrochemical facility. The project included engineering calculations and pressure vessel design in accordance with the ASME Boiler and Pressure Vessel Code for a 30,000-gallon LPG storage vessel. The scope also covered the preparation of equipment datasheets, process P&IDs, pipe support design, and routing of process and utility systems, including natural gas, propane-air mixture, steam, oxygen, and other auxiliary services. Engineering deliverables included 3D modeling, multidisciplinary coordination, detailed construction documentation, material take-offs (MTOs), technical specifications, and installation drawings to support fabrication, construction, and commissioning activities. The design was developed to ensure operational reliability, process safety, regulatory compliance, and continuous fuel supply for critical petrochemical operations.
Detailed Engineering, Design and Construction Drawings for a Produced Water Treatment System (STAP) for an Oilfield Complex
Development of a comprehensive 3D model for the Produced Water Treatment System (PWTS), Water Injection Plant (WIP), and Sludge Treatment Facility, integrated with an existing pipeline network within the oilfield production facilities. The project included the detailed routing of process and utility piping systems, design of pipe supports, storage tanks, settling vessels, separators, and associated mechanical equipment in accordance with applicable API and ASME standards. The engineering scope also covered 3D plant modeling, multidisciplinary coordination, fabrication detail drawings, piping isometrics, spool drawings for construction, material take-offs (MTOs), equipment layout development, and construction documentation required for field installation and commissioning. The final design ensured constructability, operational efficiency, maintainability, and compliance with industry standards for oil & gas production, water treatment, and injection facilities.
Engineering, Design and Construction Drawings for the Upgrade of a Yeast CIP System
evelopment of a 3D model for the cleaning system located in the discarded yeast processing area of a brewing facility. The project included the design of process equipment, access platforms, storage and backwash tanks, vertical access ladders in accordance with applicable standards, process piping systems, and plate heat exchangers. The engineering scope also covered equipment layout development, piping routing, structural support design, fabrication detail drawings, installation drawings, and multidisciplinary coordination to ensure safe operation, maintainability, and compliance with industry standards. The final design was developed to improve operational efficiency, facilitate cleaning and maintenance activities, and optimize process performance within the brewery’s yeast handling and treatment systems.