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Pharmaceutical Project

Propellant
Skids

Feasibility Study, Basic Engineering, and Detail Engineering services for propellant handling skid system for pharmaceutical manufacturing operations.

Fall River, USA
InvaGen Pharmaceuticals Inc. (Cipla Ltd subsidiary)
Feasibility
to Detail Engineering
U-Stamp
Pressure Vessels
PROJECT OVERVIEW

Engineering Excellence for Propellant Handling Systems

Impes Innovation Pvt. Ltd. provided Feasibility Study, Basic Engineering, and Detail Engineering services for the Propellant Skid developed for pharmaceutical manufacturing operations. The skid system is designed to handle and process propellant systems used in specialized pharmaceutical production processes, requiring precise engineering and safe handling of pressurized systems.

Our involvement began with a feasibility study phase, where multiple engineering concepts were evaluated to determine the most suitable configuration for the skid system. This included layout optimization, equipment positioning, and location finalization while ensuring compliance with applicable safety and statutory requirements.

Following the feasibility phase, Impes Innovation delivered basic and detailed engineering services, including mechanical design and fabrication drawings for U-Stamp pressure vessels, structural analysis of the skid frame, lifting and transportation analysis, and complete piping engineering. A detailed 3D model of the skid system was also developed to support engineering coordination, manufacturing accuracy, and installation planning.

Project Snapshot

End User

InvaGen Pharmaceuticals Inc. (Cipla Ltd subsidiary)

Location

Fall River, USA

Business Segment

Pharmaceutical Manufacturing & Process Skid Systems

Key Services

Feasibility Study, Basic & Detail Engineering, Structural Analysis, 3D Modelling

KEY HIGHLIGHTS

Project Highlights & Achievements

Feasibility

to Detail Engineering

U-Stamp

Pressure Vessels

3D Model

Complete Skid

Lifting & Transport

Analysis Completed

OUR SCOPE

Services Provided

Feasibility Study

  • Multiple Engineering Concepts
  • Layout Optimization
  • Budgetary Cost Estimation

Basic & Detail Engineering

  • 2D Skid Layout & CLD Diagrams
  • U-Stamp Pressure Vessel Design
  • Fabrication Drawings

Structural & Mechanical Analysis

  • Skid Structure Design & Analysis
  • Lifting Analysis
  • Transportation Analysis

Piping & 3D Modelling

  • Piping Design & Routing
  • Complete 3D Skid Model
  • Design Coordination
PROJECT HIGHLIGHTS

Key Project Features

End-to-End Engineering

From feasibility study to detailed engineering

U-Stamp Certification

Pressure vessels designed for pressurized propellant handling

Advanced Analysis

Lifting and transportation studies for safe handling

Key Features

  • Engineering support from feasibility study to detailed engineering stage
  • Design and detailing of U-Stamp pressure vessels for pressurized systems
  • Advanced engineering analysis including lifting and transportation studies
  • Development of integrated 3D skid model for design coordination

Engineering Challenges

  • Designing a compact skid system suitable for pressurized propellant handling
  • Ensuring compliance with pressure vessel standards and safety requirements
  • Coordinating structural, piping, and mechanical disciplines within a modular skid configuration

Our Strategy

  • Concept evaluation approach to identify the most efficient skid configuration
  • Use of structural and transportation analysis to ensure safe handling and installation
  • Application of 3D modelling for multidisciplinary engineering coordination

Project Achievements

Successful completion of feasibility study and detailed engineering scope

Delivery of integrated engineering documentation supporting manufacturing and installation

Development of accurate 3D skid model enabling efficient fabrication and site implementation

VISUAL REPRESENTATION

Project Gallery

Propellant Skids - 3D Model Renderings & Engineering Visualizations

For detailed specifications and engineering drawings, please contact our team

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