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- Digital twins in the water industry: it just started and the potential is huge
- 4 things you need to know about digital twins in the water industry
- The Ozonation Series – episode 4: Four factors that drive ozonation process performance and cost
- The Ozonation Series – episode 3: Things to consider when scaling up your ozonation process
- The Ozonation Series – episode 2: How the water matrix impacts your ozonation process
- The Ozonation Series – episode 1: Modelling ozonation: Why? What? How?
- Make your pilots virtual: three ways how Computational Fluid Dynamics (CFD) simulation improves your process design and scale-up
- Unravelling the spatial secrets of N2O by combining advanced modelling tools
- Why is Europe lagging behind when it comes to potable water reuse?
- Computational fluid dynamics (CFD): a revolutionary tool for the water industry
- Practical applications of the AMOZONE engineering model
- The latest applications of CFD in drinking water production
- The new engineering simulation tool AMOZONE
- Application and state-of-the-art of CFD in the water industry - full recording
- How computational fluid dynamics gives you competitive advantage
- Our CEO's new years letter for 2020
- Don't use CFD before understanding these 3 key points
- Designing a new treatment technology on the computer
- A quick summary of our Weftec 2019 presentation on EBPR design and operation
- Multiphase CFD for the water industry: status and applications
- How this leading utility is implementing water reuse - The example of SWIFT
- A unique overview of the application of CFD in the water industry
- IWA Webinar on CFD
- How advanced CFD modelling accelerates and improves the design and scale-up of membrane applications
- Saving costs and improving effluent by knowing what is happening in your bioreactor - Part II
- The wastewater and drinking water worlds: two continents drifting towards each other
- 3D CFD-based design of novel A-stage process (AAA-settler)
- Water innovation and how to accelerate it - my meeting with a water innovation champion
- The power of virtual piloting for faster and more effective scale up
- How to minimise regrowth risk in water towers and large reservoirs by mixing optimisation - Part I
- Saving costs and improving effluent by knowing what is happening in your bioreactor - Part I
- Customer stories
- The Wervershoof digital twin project - the virtual ozonation plant
- Mixing in large drinking water reservoirs: CFD project at water-link
- Sustainable water treatment thanks to new ozonation technology
- How six weeks of simulation replaced one year of ozone piloting
- Improving water quality and reducing energy consumption for Pidpa’s water towers (Belgium)
- Optimal inlet and outlet configuration: new treatment technology design
- Bromate minimisation during ozonation in indirect potable reuse (US)
- Saving scale-up time, effort and cost: novel MBR
- Saving on operational costs while improving effluent quality
- A digital twin for a whole water treatment plant
- Large reservoir mixing: CFD-based improvement (Netherlands)
- The digital twin of the Linköping ozonation plant (Sweden)
- Optimal sand filter design for the Dutch utility Vitens
- Coagulant dosing optimisation in New Zealand
- Equal flow distribution
- Secondary clarifier CFD simulation
- Optimising ion exchange column operation
- Design of a crystalliser
- Drinking water storage basin design
- Optimal pure oxygen mixing and transfer
- Membrane module optimisation: optimal shear
- Quantifying nitrous oxide emissions in wastewater treatment plants
- Optimal design of pellet softening reactors
- UV and UV/H2O2
- Ozonation reactor design
- Biological phosphorous removal and recovery
- Anaerobic digestion CFD simulations for optimal mixing
- MBBR and IFAS design
- Dissolved air flotation
- World's most validated bioreactor CFD model - unique demonstration
- Saving piloting costs and effort: ozonation
- Improving flow patterns in a large drinking water reservoir
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