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For example, a reduction in floor to floor height to 6.5m would enable a three-storey data centre on that same site – an instant gain of 50% in site yield and significant reduction in cost per kW.. A similar approach to close integration of design and the arrangement of primary plant and ancillary systems will optimise the data centre facility plan footprint.Again, this maximises yield per m2, with the added benefit of a reduction in costly M&E distribution paths..
Deferring CapEx, delivering predictability.Data centres are expensive.Being able to compress the time from project inception to occupancy, as well as having reliable procurement and supply chain, and a predictable construction programme, is hugely valuable in being able to defer CapEx and cost of finance.. One of the core principles of DfMA is the standardisation of parts and construction/assembly processes.
It enables the ‘industrialisation’ of data centre design and construction.This allows us to work with clients to standardise procurement, through a prearranged supply chain with stockholding, if necessary, of pre-agreed capital plant and equipment.
It enables speed of installation through on-site assembly of prefabricated and pre-assembled parts in a safe and controlled manner.
And given the nature of data centres, they lend themselves particularly well to this approach, where standardisation of the end-user product is paramount.. DfMA brings precisely the reliability, predictability and speed to market that our data centre clients want and benefit from..It is important to highlight that we don’t only simulate building operation, but also interpret analysis results comprehensively, focusing on the average uplift across all the heat rejection plant, generators and building ventilation intakes rather than solely on the worst-affected equipment.
This approach allows us to engage in dialogue with manufacturers to understand how any uplift will affect the performance of the equipment.. With this information, the amount of energy used for cooling can be minimised, reducing both embodied and operational carbon.. Short Break Scenarios.Short break scenarios are simulations used to ascertain the behaviour of a data hall during a switch to standby power generation following a failure of mains power, employing transient analysis within Computational Fluid Dynamics (CFD)..
This process has two main components.Firstly, modelling the data hall in 3D with the restart times of all equipment inputted into the model.