Independent technology developmentEnergy · Resources · Industry

Engineering the next
resource economy.

We develop technologies that connect cleaner energy, smarter thermal systems and the recovery of valuable resources.

Explore our technologies
The Gini portfolio

Five platforms.
A common purpose.

From wind capture to well control, our development work focuses on practical engineering challenges in energy and resource use.

Wind energy

eMoya turbine

A twin, counter-rotating vertical-axis wind turbine concept built around helical rotors.

eMoya explores a different approach to distributed wind generation. Its paired rotor architecture and central airflow deflector form the basis for ongoing mechanical and aerodynamic development.

Distributed energyHelical rotorsWind generation

Development focus: rotor performance, structural integrity, generator integration and testing under representative wind conditions.

Our history & founder

Engineering roots.
A wider ambition.

Founded by Ian Roos, Gini Technologies brings energy and resource technologies together in one development portfolio. Its story connects earlier work in oil recovery, water treatment and separation with a broader ambition across wind energy, thermal infrastructure and intelligent wells.

Founder · Gini Technologies

Ian Roos

Ian Roos founded Gini Technologies to develop technologies for energy and resource applications. His founding role connects the company's direction with a portfolio spanning eMoya, Fluxion, Pavilion technologies, cavitation separation and AICV.

The common thread is practical engineering: turning a defined operating problem into a system that can be developed, tested and applied.

  1. Engineering roots

    Oil recovery and water treatment

    Earlier ORS project experience covered heavy-oil recovery, oil–water separation, storage-tank treatment and produced-water processing. This provides the background to the resource-recovery strand of the portfolio.

    Explore Pavilion technologies
  2. Field development

    Cavitation as a process tool

    The ORS project history records field work in West Texas on hydrodynamic cavitation for gas and hydrocarbon separation, alongside salt-reduction treatment for produced water.

    Explore cavitation separation
  3. 2014

    Expanding into wastewater and brine

    Following the oil-industry slowdown, ORS redirected its treatment work toward mining wastewater and brine applications, extending the engineering experience beyond oil production.

  4. Gini today

    A connected technology portfolio

    Under founder Ian Roos, Gini Technologies presents five development areas: eMoya wind generation, Fluxion thermal infrastructure, Pavilion resource recovery, cavitation separation and AICV well control.

    Explore eMoya · Explore Fluxion · Explore AICV

Earlier project milestones describe ORS experience; the Gini portfolio brings these technology themes into its current development focus.

Our approach

Useful engineering.
Lasting value.

Gini Technologies brings together development across renewable generation, thermal infrastructure, resource recovery, separation and intelligent well systems.

Each platform addresses a distinct problem. Together, they reflect a focus on making better use of energy, materials and existing infrastructure.

01

Start with the operating problem

Define the duty, constraints and integration requirements before selecting the solution.

02

Connect disciplines

Bring mechanical, process and control engineering into a coherent system.

03

Build an evidence base

Use modelling, prototype testing and measured results to guide the next stage of development.

From concept to application

Development grounded
in real operating conditions.

01 / DEFINE

Understand the duty.

Establish the application, process conditions, installation limits and criteria for a successful result.

02 / DEVELOP

Engineer the system.

Refine the architecture, component interfaces and controls through design and prototype development.

03 / VALIDATE

Measure what matters.

Assess performance, reliability and integration before progressing to a project-specific deployment.

Portfolio notes

A closer look.

What connects the five technologies?

They address how energy is generated and managed, how resources are recovered, and how industrial flows are controlled. Gini presents these as a connected development portfolio, while each platform retains its own application and engineering requirements.

How does Pavilion fit into the portfolio?

Pavilion technologies address oil recovery and produced-water processing. Pavilion Technologies is the Pavilion group's holding company; project execution sits within the operating businesses and their delivery partnerships.

Are all platforms at the same development stage?

No. Development and validation requirements vary by platform. Fluxion is an early-stage development platform, and the AICV work is a concept under engineering development. Specifications and suitability should be assessed for the individual project; this overview does not imply that every technology is commercially available.

How should a project application be assessed?

Start with the site conditions, required capacity, feed or energy characteristics, installation constraints and acceptance criteria. Those inputs establish the basis for a technical assessment and the testing needed to confirm suitability.