Plant engineering solutions

Industrial plant engineering solutions

Transform your innovative concepts into realized process designs and actionable plant engineering plans — all while ensuring unparalleled efficiency, safety and sustainability from start to finish.

Why leverage an industrial plant engineering solution?

Companies today face a growing list of challenges. To remain competitive, they must navigate a web of legal requirements, integrate seamlessly with an evolving partner ecosystem and frequently adjust to market fluctuations. Embracing digitalization to improve your process design and plant engineering is a critical step, but without the right strategy, it can become a costly endeavor. An industrial plant engineering solution enables a comprehensive approach to process design and plant engineering, ensuring seamless data and process integration and effective cross-disciplinary collaboration.

9 hrs

9 hrs

Employees spend 9.3 hours per week, on average, searching for and gathering information. ( McKinsey)

8

8

Workers take up to 8 searches to find the right document and information. ( SearchYourCloud)

60%

60%

60% of company executives feel that time constraints and lack of understanding of how to find information were preventing their employees from finding the information they needed. ( IDC)

Accelerate plant process design and engineering

Achieve seamless data integration, streamlined processes and effective cross-functional collaboration with model-based experiments, digital data handover, interdisciplinary modularization, standardization and simulation. Accelerate and enhance your process and plant performance from concept to design.

What can end-to-end plant engineering do for you?

Implement data management platforms for team and partner collaboration. Leverage the comprehensive digital twin to unlock virtual product and plant design. Use state-of-the-art technology to enable renewable energy usage. Validate and fine-tune process design and plant engineering with ease.

Collaborate

Leverage a unified data ecosystem to allow all involved stakeholders to jointly design and optimize process designs and plant engineering plans using a single source of truth.

Streamline

Leverage the comprehensive digital twin and simulation to optimize and expedite product and equipment development. Create economically feasible and safe process designs.

Eco-optimize

Rely on accurate, comprehensive data to enhance engineering process resource use and measure environmental impact. Meet your sustainability goals with confidence.

Innovate

Streamline data-centric engineering workflows using scalable and accessible software tools. Enhance collaboration and ensure continuous innovation.

Explore our comprehensive solution

Implement a holistic solution to accelerate and fine-tune plant process design and engineering. Make your vision a reality and achieve unparalleled performance.

Integrated basic engineering

Ramp up production faster with seamless engineering, automation and simulation.

  • Optimize workflows to reduce delays and enhance productivity
  • Identify and solve issues before production
  • Optimize resource use, reduce waste and lower costs

Start your industrial plant engineering journey

Implement an industrial plant engineering solution with trusted support.

Deploy your own way

Simplify and streamline process design and plant engineering with gPROMS and COMOS software solutions. Deploy on-premise and manage with your IT team.

Access training

Adopt COMOS and gPROMS and master their elements with ease. Kickstart your learning with structured, practice-oriented training courses or go at your own pace.

Frequently asked questions

Which industries benefit most from an integrated plant process design and engineering solution?

Certain industries can significantly benefit from an integrated plant process design and engineering solution, particularly:

  • Pharmaceutical: Pharmaceutical manufacturing requires stringent controls, validation and regulatory compliance. An integrated plant process design and engineering solution can streamline the design, engineering and commissioning of production facilities to meet these rigorous standards.
  • Battery: Battery material production has complex process steps which require highly optimized equipment. With an integrated plant process design and engineering solution, battery manufacturers can reduce experimentation time and cost, ultimately achieving faster scale-up and innovation.

What challenges do manufacturers face while implementing an industrial plant engineering solution?

Many companies struggle with investing in new technology without fully understanding how to effectively utilize it. They often resort to creating in-house solutions to integrate new technologies, manually synchronizing data in the absence of integration and relying on traditional experimental design methods to minimize redundant experiments. While companies recognize that improving process design and plant engineering with digitalization is costly, without the right strategy, it could all be inefficient and unsustainable.

A plant process design and engineering solution beats these complexities. It is a comprehensive solution that helps you integrate model-based experiments, and product and process development into data-centric engineering, so that you can validate and optimize process design and plant engineering with efficiency and simplicity.

How can simulation and digital twin capabilities accelerate and optimize process design?

Integrating the digital twin and simulation into the design workflow empowers engineers to develop more innovative, resilient and sustainable processes. By creating a virtual model of the proposed process, engineers can rigorously test and validate the design for optimization. Simulation allows them to explore different scenarios, identify bottlenecks and fine-tune operating parameters to maximize efficiency and productivity. The digital twin acts as a testbed for evaluating control strategies, predicting maintenance needs and training operators — all without disrupting the actual process. This approach streamlines the design phase, reduces risk and ensures the final process meets performance targets.