Cooling System Optimizer

Cooling System Optimizer

Cooling System Optimizer is a dedicated data center cooling controls platform, delivering resilience and redundancy in chilled water systems for the lowest possible operational cost.

The Challenge

Data center cooling systems are larger and more complex than ever. Managing all the components and variables using a standard Building Management System (BMS) is no longer viable in an industry that demands resilience and redundancy at the lowest possible energy input.

One core issue is that a BMS, whilst still needed for overall monitoring and reporting, is not designed for precise control of complex systems. A BMS mostly pushes data, and isn’t capable of addressing the anomalies that it identifies. It can’t make the necessary changes to optimize the system.

With a BMS, redundancy is not built in. As cooling plant gets larger and more numerous, this is key to ensuring that cooling requirements are met, and the load is evenly balanced across the system.

Cooling System Optimizer has been developed by Airedale by Modine to answer this challenge…

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How it Works

Airedale’s Cooling System Optimizer™ has been developed to control and optimise data center cooling systems and is built on our 50 years of experience in providing IT thermal management solutions.

The Cooling System Optimizer is an additional controls layer, between the product controls (in chillers and indoor cooling units like CRAHs and fan walls), and the site BMS.

Cooling System Optimizer is a failover master distributed control system, with an Optimizer Controller on each unit offering multiple levels of resilience to failure. With no single point of failure, your facility is in the safe hands of cooling experts.

It is based on PLC-based deterministic controllers – the same hardware that resides in the cooling products. By monitoring the cooling system as a whole, while also being connected to individual product controllers, Cooling System Optimizer can precisely modulate the flow rates through chillers and CRAHs on a unit controls level, to precisely match cooling supply to demand.

Cooling System Optimizer is part of IQity™ Airedale’s IoT-enabled technology framework. Revolutionising how cooling is connected, controlled and automated at critical facilities.

KEY BENEFITS

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Up to 45% Energy Savings

Lower cost of ownership can be achieved, both in running and maintenance costs thanks to the use of latest technologies and full redundancy. Free cooling is maximised.
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Lower Maintenance Costs

Demand is balanced across all chillers and CRAHs with no fixed leading unit, distributing the load evenly and avoiding excessive wear and tear. Full redundancy and the option of remote support leads to fewer call-outs.
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Maximum Operating Efficiency

Leveraging the benefits of variable flow chilled water systems, Cooling System Optimizer increases cooling efficiency by running components at their most effective and efficient operating points. Chilled water flow through the chillers and CRAHs are constantly
modulated.
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Full Redundancy

Failover strategy is built into Cooling System Optimizer, so each controller can smoothly migrate control to the next one, providing redundancy and eliminating the risk of downtime.
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Standardised Solution

Cooling System Optimizer is essentially an off-the-shelf solution, with minimal requirement for tailor-made programming to individual sites. It uses standard PLC-based controllers and works with existing unit controllers in the cooling units.
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Free Cooling

A fully integrated control strategy enables the chillers to operate on a reduced water flow rate during free cooling operation, sensibly increasing the efficiency of water coils and pumps.
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Future Proof

Fully compatible with IoT (Internet of Things) and machine learning for in-depth analysis.

 OPTIMISE UNITS, OR THE FULL SYSTEM

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CHILLERS

Chillers have strict requirements for minimum flow to be guaranteed for correct operation when refrigerant-based cooling is active. Cooling System Optimizer, with its fully integrated control strategy, enables chillers to operate on a reduced water flow rate during free-cooling operation, sensibly increasing the efficiency of water coils and pumps.

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CRAHS

Cooling System Optimizer’s networking strategy distributes the cooling demand to all of the operating CRAHs to achieve the best energy efficiency, automatically enabling units if required and thermally shifting the load to avoid hotspots, while reducing the energy consumption in the unused areas of the data halls.

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FULL SYSTEM

Modern data centers require a controls platform that prioritises SLAs at chip / server inlet level, while minimising energy input. Managing all the components and variables using a standard events-driven BMS is no longer viable. Cooling System Optimizer works best with variable flow systems and fluctuating loads, allowing cooling systems to respond dynamically and as one.

TROUBLESHOOTS MORE EFFECTIVELY THAN A BMS

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Hot Spots

Contact our Controls team to find out how to optimise your data center on a whole new level

Fill in the form and one of the team will be in touch

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HVAC CONTROLS

Airedale offer a suite of optimisation tools that can be applied to Airedale or third party HVAC equipment, on new projects or retrofits