Internal pressure plan of a hyperscale data center in CFD
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Expertise · Data Center

Energy optimisation & PUE.

EOLIOS is an expert in CFD studies and the global energy analysis of data centers for the sustainable reduction of the PUE. Cooling often represents more than 30% of the site's consumption.

PUE · EER · CEEContainment +0.1 to 0.3 PUEReading 4 min
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PUE reduced sustainably

Refined air distribution, over-cooled zones and heat pockets eliminated.

Containment optimised

Hot/cold partitioning: +0.1 to 0.3 PUE points, recirculation eliminated.

Gains valorised (ESC)

Savings quantified and documented to fund your efficiency actions.

01 — Internal flows

Analysis of internal airflows in data centers

Data centers are environments with very high energy density — several hundred kW on a few m². The cooling system becomes a central element of the energy strategy, often representing more than 30% of the site's consumption.

Diagnosis

  • PUE in real & projected conditions
  • Energy analysis of the cooling
  • Thermal losses & oversizing

Optimisation

  • HVAC: chillers, AHUs, fan-coil units
  • Interactions flow / cooling / IT load
  • Scenarios (free cooling, containment, redundancy)

Valorisation

  • Detection of over-consumption zones
  • Targeted improvements
  • Energy performance & certification

Our CFD studies virtually reproduce the behaviour of the airflows and temperatures throughout the data center. This dynamic 3D modelling makes visible what is not: overheating zones, pressure imbalances, hot-air recirculation, preferential or stagnant paths — all phenomena that degrade thermal efficiency and increase the risk of a hardware incident.

Study of the thermal plumes of a data center

Optimising the ventilation and the equipment

CFD studies provide concrete elements to optimise existing installations or guide the design of new rooms:

  • optimal positioning of the perforated tiles according to the real thermal needs of each cabinet;
  • validation of the hot and cold aisles, identifying the mixing or short-circuit zones;
  • effectiveness of the containment systems, quantified on the server-inlet temperature;
  • control of the CRAC/CRAH adjusted to the local load, the temperature gradients and the pressure losses.
02 — Thermal losses

Reducing thermal losses through containment

Energy efficiency relies on a clear separation between the cold air supplied and the hot air extracted. Setting up effective partitioning typically brings an improvement of 0.1 to 0.3 PUE points. When the separation is imperfect, recirculation and mixing reduce cooling efficiency by 20 to 40%: the cold air is poorly used or prematurely warmed, and the systems over-consume to compensate.

Benefits of installing partitioning in a data center
Benefits of installing partitioning in a data center

Our CFD studies precisely visualise these critical zones — recirculation in the cold aisles, leaks through the tiles, cold airflow bypassing the cabinets. EOLIOS supports the design and validation of the containment devices: with or without a raised floor, in a hot or cold aisle, several configurations are assessed to measure their impact on the equipment-inlet temperature and the behaviour of the flows.

03 — Load & ESC

Dynamic load adjustment & ESC valorisation

Simulation of evolving thermal loads

Data centers are not static: densification, server consolidation and new technologies constantly change the loads. EOLIOS models the current state and projected scenarios (cabinet densification, partial activation of a room, localised load increase) to validate the correct sizing of the cooling and guarantee performance against future changes.

3D model of a hyperscale data center — digital twin
3D model of a data center — comparaison de configurations de refroidissement

This dynamic vision enables intelligent control: adapting the ventilation and cooling power to the real needs in real time, avoiding excess cooling at low activity and guaranteeing thermal comfort at load peaks — hence lower consumption and a longer system lifespan.

Turning energy efficiency into a financial lever (ESC)

The Energy Savings Certificate (ESC) scheme makes it possible to fund consumption-reduction actions, provided the savings are rigorously demonstrated. EOLIOS supports the design, justification and valorisation of eligible projects: improved containment, setpoint adjustment, repositioning of cooling equipment, ventilation reconfiguration. Each project is the subject of a detailed before/after energy analysis and traceable technical reports, maximising your chances of obtaining the ESC subsidy.

04 — Optimised PUE

Towards an optimised PUE

Improving the PUE (Power Usage Effectiveness) is the central indicator of energy optimisation. By refining the air distribution, limiting the over-cooled zones and eliminating the heat pockets, the simulations achieve a greater uniformity of temperatures in the cold aisles — which makes it possible to reduce the safety margins and precisely modulate the cooling power. The results are delivered as visual maps, comparative scenarios and clear indicators, directly usable to make choices objective and justify investments.

Study of the rooftop cooling systems of a data center

Innovation EOLIOS — surconsommations en rooftop

Efficiency does not depend only on the white room: the chillers, dry coolers and cooling towers on the roof play a key role. A poorly thought-out layout causes recirculation, warmed air intakes and turbulence, forcing the systems to over-consume. Our CFD approach maximises the EER (Energy Efficiency Ratio) by optimising the layout and quantifying the performance gap between scenarios. In many cases, a judicious reconfiguration or partitioning improves the cooling efficiency by up to 10%, i.e. several dozen MWh per year — a concrete lever to sustainably reduce the PUE and maximise the return on investment.

Expertise: urban heat island impact study of data centers

FAQ

Frequently asked questions

What operators and technical directors most often ask us about PUE optimization.

How does CFD help lower the PUE?

It lets you raise setpoints (supply air, chilled water) and extend free cooling while checking, rack by rack, that none leaves the ASHRAE range. You gain efficiency without creating a hot spot, extending the internal CFD study.

What is PUE, simply?

The ratio of total site energy to the energy used by IT. A PUE of 1.2 means 20% for cooling and losses; the aim is to approach 1.

Which levers are most effective?

Aisle containment, blanking of free U spaces, tile balancing, raised setpoints and free cooling. CFD ranks these by the real gain on your room.

Does containment qualify for incentives?

It can qualify for energy-efficiency schemes. A documented CFD study with quantified before/after gains is solid supporting evidence.

What is the deliverable?

Before/after PUE estimate, ASHRAE compliance maps per scenario, a ranked action plan and the associated energy gains.

Media library · Data Center

Energy made visible.

Internal airflows, recirculation, rooftop discharges: CFD sheds light on every PUE lever.

The whole media library
Panaches thermiques — data centerSimulation CFD · flux internes
Use cases · Sectors

Where does our “PUE” expertise come in?

As soon as a data center seeks to reduce its energy bill without compromising reliability, CFD quantifies every lever. Here are the typical contexts.

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Data Center: continue exploring.

CFD expertise, delivered projects and technical dossiers: the whole Data Center field in one place.

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Master your PUE

The simplest way is to talk it through together.

Better understand your airflows, anticipate load changes, sustainably reduce your consumption and improve your PUE: our engineers support you at every step.