External lighting
Irrigation & Drainage systems
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BIM SERVICES
Scope
Within the AEC sector, our MEP BIM modeling services are tailored for precision. Led by experienced MEP engineers using Autodesk's Revit and AutoCAD, we meticulously integrate mechanical, electrical, and plumbing systems into our building information modeling workflow. This expertise in BIM software facilitates architects, project managers, and MEP engineers to visualise designs in both 2D and 3D formats.
By leveraging BIM for MEP systems, projects benefit from enhanced design visualization, clash detection, and cost estimation. This ensures the delivery of reliable, efficient, and code-compliant building services infrastructure, contributing to overall project success.
Contact UsOur MEP BIM approach emphasises clash detection in Navisworks, promoting code-compliant infrastructure. By leveraging the BIM process, projects benefit from increased design accuracy, streamlined communication among stakeholders, and precise cost estimation.
Accurate Structural Representation
Enhanced Clash Detection
Increased Safety and Durability
Reduced Errors and Rework
Revit MEP 3D
Modeling
Using Autodesk BIM software, create detailed 3D MEP models for enhanced building design, aiding AEC professionals.
MEP Family
Creation
Craft Revit MEP components ensuring design consistency, vital for architects and MEP professionals within the BIM environment.
4D, 5D, and 6D MEP Simulation
Integrate time, cost, and sustainability metrics through our 4D, 5D, and 6D BIM MEP simulations, streamlining project outcomes.
MEP Detailing & Shop Drawings
Extract accurate MEP drawings from BIM models, supporting fabrication and assembly for construction professionals.
Scan to BIM for MEP Systems
Transition laser data to Revit models, optimising building systems for MEP consultants in the AEC industry.
MEP Load Analysis & Calculations
Analyse and compute HVAC loads, utilising BIM for precise heating and cooling evaluations, ensuring optimal MEP design and efficiency.
MEP BIM for Facility Management
Link MEP components within the BIM model, promoting streamlined facility management and lifecycle tracking in a collaborative methodology.
Quantity Take-offs & Bill of Materials
Extract material data from BIM models, key for cost estimation and precise procurement in the construction workflow.
HOLISTIC BIM SERVICES
Using BIM, we offer initial floor plans, generic openings, plumbing placements, exterior elevations, cross-sections, and essential interior-exterior model views.
With BIM, we refine designs, detailing material specifications, room layouts, fixtures, finishes, and integrated MEP components for comprehensive building design.
Through BIM, we extract and deliver coordinated construction-ready drawings from the model. Following construction we produce as-built models mirroring actual site conditions.
MEP Coordination
BIM Consulting
Line & Zone Diagrams
Equipment Scheduling
MEP Clash Detection
Energy Simulation & Analysis
Cable Tray & Support Layouts
System Validation & Analysis
Ductwork & Piping Layout
Panel board Schedules
Global engineering offices locations in India, UAE and Germany.
Globally diversified team BIM capable engineers and architects.
Cost savings by leveraging outsourcing.
*Statistic derived by comparing average cost of onsite BIM coordinator in Germany with JES offshore BIM coordinators.
Rapid mobalisation in as little as 7 days.
*Mobilisation time may vary, subject to availability of resources and ongoing projects.
BIM modeling for electrical systems allows for the integration of electrical components within the overall building model. This results in accurate representation, streamlined coordination, and improved communication among stakeholders, reducing errors and optimising system performance. The incorporation of BIM also facilitates load analysis and energy efficiency evaluations.
By implementing BIM for electrical systems, projects benefit from enhanced design visualisation, clash detection, and cost estimation. This ensures a reliable, efficient, and code-compliant electrical infrastructure for the built environment, ultimately contributing to increased project success and satisfaction.
HVAC Systems
Enhances design visualisation and coordination of HVAC systems through BIM modeling.
BIM modeling for HVAC systems enables the integration of heating, ventilation, and air conditioning components within the architectural model. This facilitates accurate visualisation, informed decision-making, and efficient coordination among project stakeholders. It also allows for better assessment of energy efficiency and system performance, leading to optimised designs.
Utilising BIM for HVAC systems ensures that designs are energy-efficient, comfortable, and compliant with industry standards. This results in optimised building performance and improved overall project outcomes, fostering a sustainable and comfortable built environment.
Plumbing Systems
BIM modeling streamlining representation and coordination of plumbing systems.
BIM modeling for plumbing systems integrates plumbing components, such as pipes and fixtures, within the overall building model. This enables accurate visualisation, estimation, and coordination, leading to a well-designed and efficient plumbing infrastructure. BIM also aids in the assessment of water conservation and sustainability measures, ensuring a responsible design approach.
By implementing BIM for plumbing systems, projects benefit from improved clash detection, reduced errors, and adherence to industry standards. This ensures a reliable, sustainable, and functional plumbing system for the built environment, contributing to enhanced project performance and environmental responsibility.
BIM modeling for fire fighting systems enables the integration of fire protection components within the architectural model. This facilitates accurate visualisation, better coordination, and informed decision-making among project stakeholders. It also enables stakeholders to assess the effectiveness and reliability of fire protection systems, ensuring the highest safety standards.
Using BIM for fire fighting systems ensures that designs are code-compliant, reliable, and efficient. This results in enhanced safety and performance of fire protection systems in the built environment, promoting a secure and well-protected space for occupants.
LPG
Facilitating coordination and analysis of LPG systems and components through BIM modeling.
BIM modeling for LPG systems allows for the integration of LPG components within the overall building model. This results in accurate representation, streamlined coordination, and improved communication among stakeholders, reducing errors and optimising system performance. BIM also enables the assessment of safety and efficiency measures, ensuring a responsible approach to LPG system design.
By implementing BIM for LPG systems, projects benefit from enhanced design visualisation, clash detection, and cost estimation. This ensures a reliable, efficient, and code-compliant LPG infrastructure for the built environment, contributing to improved project performance and increased safety standards.
Our expert team of architects and BIM professionals collaborates closely with you to create comprehensive architectural models that cater to your specific project requirements. We leverage cutting-edge technology and industry best practices to ensure precision, consistency, and timely delivery of your architectural BIM projects.
By outsourcing your architectural BIM needs, you benefit from our extensive experience and in-depth knowledge, which allow us to streamline workflows, improve design coordination, and optimise construction processes. Our services cater to a diverse range of projects, including residential, commercial, and industrial developments.
BIM modeling for utility systems integrates essential utility components, such as water, gas, and electricity, within the overall building model. This enables accurate visualisation, estimation, and coordination, leading to well-designed and efficient utility infrastructure. BIM also supports the analysis of utility consumption and sustainability, promoting responsible design practices.
By implementing BIM for utility systems, projects benefit from improved clash detection, reduced errors, and adherence to industry standards. This ensures a reliable, sustainable, and functional utility system for the built environment, contributing to enhanced project performance and environmental responsibility.
Reach out to us and receive a complimentary consultation, tailored to your project's unique requirements.