AI data centers · power & water

Use the energy twice.

AIPODSX combines modular compute with Valora thermal cascade valorization—recovering useful energy from compute heat to help produce fresh water.

U.S. provisional patent filed September 2026

Modular AIPODSX compute pod
~1,000GPUs per pod
18compute racks
~1 MWconcept load

01 · The constraint

Compute demand creates a second infrastructure challenge.

A 100 MW AI campus must reject approximately 100 MW of continuous thermal energy.

Conventional designs discharge that energy through cooling systems, often consuming water while communities are already balancing power, water and land constraints.

02 · Thermal cascade valorization

Where others see waste heat, Valora sees fresh water.

Thermal energy is collected in stages, lifted to a useful return temperature and transferred to multi-stage thermal distillation.

01

Cascade

Arrange more than one thermal zone across a rack, pod, cluster or data center.

02

Recover

Maximize the useful return temperature while protecting compute equipment.

03

Valorize

Put recovered energy to work in fresh-water production instead of rejecting it.

Open the full Valora concept

03 · 100 MW screening case

One energy input. Two useful outputs.

The concept increases the useful work obtained from the same power supply: first compute, then fresh-water production.

~90 MWcompute at a target PUE of 1.11
~75 MWₜₕrecoverable compute heat
~5 million m³/yrfresh-water screening case
~0.75potential EU energy reuse factor

~130,000 tonnes CO₂/yr potentially avoided versus directly fired thermal desalination.

No cooling-tower water loss within the stated system boundary.

Screening basis: 25°C seawater feed, 65°C top-brine temperature, GOR 5 and continuous availability. Values require vendor and pilot validation.
AIPODSX pod showing modular compute cabinets
AIPODSXISO-based modular compute architecture

04 · Technology refresh by design

Upgrade the compute—not the entire facility.

Modular boundaries allow technology refresh at the server, rack or entire pod level while Valora remains integrated with the energy and water infrastructure.

01

Server

Refresh compute hardware without replacing the surrounding infrastructure.

02

Rack

Group thermal loads into practical cascade stages and service boundaries.

03

Pod

Deploy modular ISO-based compute capacity with integrated heat recovery.

05 · Near-shore implementation example

Scale compute where energy and water matter most.

~300compute pods
~300,000GPUs
~360 MWpower platform
~15 million m³/yrfresh-water screening case
PowerLow-cost energy converted to hyperscale compute.
ComputePods protected within a controlled facility or marine hull.
WaterRecovered thermal energy supports continuous fresh-water production.

06 · Strategic fit

Built for the direction of data-center policy.

EU

Waste-heat reuse

Data centers above 1 MW are expected to reuse waste heat where technically and economically feasible.

Hyperscalers

Carbon and water targets

Valora links compute growth to measurable energy reuse and fresh-water production.

Host regions

Power and water together

The same infrastructure investment supports digital capacity and water resilience.

07 · The next step

Demonstrate. Optimize. Validate.

Pelican Engineering is seeking hyperscaler, compute-system, water technology and infrastructure partners for an AIPODSX pilot.

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Puneet.Sharma@pelicanengr.comNancy.Faulk@pelicanengr.comPelican Engineering LLC · Texas