Oil and Gas Treatment Plants
Location
Ukraine, over 5 projects
Building Type
Processing Facilities, Oil and Gas Preparation
Engineering Services Provided:
Process Design:
• Process Flow Diagrams (PFD): Development of flow diagrams for oil, gas, and water preparation, including the sequence of operations and selection of processing equipment (separators, demulsifiers, heaters, pumps, compressors, etc.).
• Material and Energy Balance: Calculation of flow quantities, composition, and temperature parameters required to ensure product quality.
• Equipment Selection: Specification of equipment type and characteristics based on operational conditions, environmental parameters, and process requirements.
• Material and Energy Balance: Calculation of flow quantities, composition, and temperature parameters required to ensure product quality.
• Equipment Selection: Specification of equipment type and characteristics based on operational conditions, environmental parameters, and process requirements.
Control and Automation Systems Design:
• Instrumentation and Measurement Devices: Selection of devices to measure pressure, temperature, level, flow rate, and chemical composition.
• Process Automation: Development of automated control systems, including software, operational algorithms, and redundancy for critical functions.
• Safety Systems: Design of protective mechanisms to mitigate emergency situations, such as interlock systems, emergency shutdowns, and gas detection systems.
• Process Automation: Development of automated control systems, including software, operational algorithms, and redundancy for critical functions.
• Safety Systems: Design of protective mechanisms to mitigate emergency situations, such as interlock systems, emergency shutdowns, and gas detection systems.
Pipeline and Communication Design:
• Pipeline Layout: Routing pipelines for optimal site traversal, safety considerations, ease of maintenance, and thermal expansion management.
• Structural Integrity Analysis: Determination of wall thickness, material type, and specifications to withstand operating pressure, temperature, and prevent corrosion or wear.
• Insulation and Protection: Selection of insulation methods (if required) and anti-corrosion protection strategies.
• Structural Integrity Analysis: Determination of wall thickness, material type, and specifications to withstand operating pressure, temperature, and prevent corrosion or wear.
• Insulation and Protection: Selection of insulation methods (if required) and anti-corrosion protection strategies.
Energy Supply Systems:
• Power Systems: Design of electrical systems, including motors, generators, transformers, and energy distribution.
• Thermal Systems: Engineering of heating, cooling, and heat recirculation systems to maintain temperature stability.
• Thermal Systems: Engineering of heating, cooling, and heat recirculation systems to maintain temperature stability.
Technical and Engineering Support:
• Architectural and Structural Design: Planning of buildings, foundations for equipment, service areas, emergency exits, and lighting systems.
• Utility Networks: Design of water supply, sewage, ventilation, and air-conditioning systems to ensure facility functionality and personnel comfort.
• Utility Networks: Design of water supply, sewage, ventilation, and air-conditioning systems to ensure facility functionality and personnel comfort.
Environmental and Technological Aspects:
• Emission and Effluent Treatment: Engineering of treatment systems for gaseous and liquid emissions.
• Pollution Monitoring: Implementation of monitoring and control systems for air, soil, and water pollution, ensuring compliance with environmental standards.
• Pollution Monitoring: Implementation of monitoring and control systems for air, soil, and water pollution, ensuring compliance with environmental standards.
Financial and Economic Justification:
• Cost Assessment: Analysis of project implementation costs, including equipment, construction, materials, and other expenses.
• Payback Period: Calculation of economic efficiency and the time required for project ROI (Return on Investment).
• Payback Period: Calculation of economic efficiency and the time required for project ROI (Return on Investment).