Aeroleaf® Project Sparki Report

By kilowatts.uk • 2024-11-13 16:10:19

An in-depth review of the Aeroleaf® pilot project in Ardooie, Belgium, demonstrating a hybrid wind-solar microgrid with impressive ROI and sustainability metrics.

Project Location and Overview

The Aeroleaf® pilot project was launched at Rysselende Mill, Brugsesteenweg 2, Ardooie, West Flanders. This historic site was chosen for its accessibility, iconic value, and synergy between traditional and futuristic energy solutions.

Key Site Highlights:

  • Restaurant, Lodging, & Charging Station
  • Energy- & Water-Neutral Catering Concept
  • Solar Panels & Aeroleaf® MWT Combo
  • Public Demonstration Site
  • Strong Landmark on Key Traffic Routes

Installation Setup

This installation featured 12 Aeroleaf® turbines (200W to 3000W models), coupled with bifacial solar panels and a 4.6kWh battery. The entire system was integrated using a Victron inverter with real-time monitoring.

Installation Components:

  • 12 Aeroleaf® MWTs (200W, 500W, 3000W)
  • 920 Solar Hours + 2600 Wind Hours
  • 4.6kWh Polytech Battery
  • Victron Inverter + Cerbo GX Control Unit
  • Anemometer with 60,000 wind speed logs

Technical Characteristics

Aeroleaf® MWTs feature a vertical-axis, double-blade design and a permanent magnet synchronous generator. Each turbine is modular, customizable, and features individual real-time monitoring and efficiency optimization.

MWT Technical Details:

  • Vertical Axis, Double-Blade Wind Turbines
  • Permanent Magnet Synchronous Generator
  • Power Outputs: 200W to 3000W
  • Recyclable ABS or Custom Aluminum Blades (Model X)
  • Modbus RTU RS485 for Individual Data Monitoring

Energy Performance & Insights

Multiple data sources including weather stations and turbine sensors revealed wind speeds from 2 to 13.8 m/s, confirming efficient generation even in lower wind zones. Turbines maintained battery levels at 70%+ even during low production periods.

Performance Metrics:

  • Wind Speeds Measured from 2 m/s to 13.8 m/s
  • Real-time Modbus Data Logging
  • Combined Wind & Solar Generation
  • Battery Level Consistently > 70%
  • Dominant Wind Direction: South-Southwest

Future Developments

The project will evolve through further innovation: the MWT X2 model, new smart E gear, and a fully integrated real-time online dashboard for global turbine visibility.

Innovations Ahead:

  • MWT X2 with Increased Savonius Coefficient
  • E Gear for Boosted Low-Speed Efficiency
  • Global Real-Time Dashboard Integration
  • Partnerships with Universities & Research Agencies

ROI and Budget

The pilot setup was built with a €12,800 budget, using scalable components. Depending on energy costs and local setup, the estimated payback period is as low as 2.43 years.

Budget Summary:

  • 10 Aeroleaf® 500W MWTs: €6,800
  • 6 x 580Wp PV Panels: €1,000
  • Pylontech Battery (4.6kWh): €1,500
  • Victron Inverter: €1,000
  • Support Structure, Install, Materials: €2,500
  • Total Cost: €12,800

Payback Period: ~2.43 years (at €0.20/kWh)

Want the Full Technical Breakdown?

Download the official Aeroleaf® Sparki Project Report for in-depth insights, data, and engineering documentation.

Download Full Report (PDF)

Conclusion

The Aeroleaf® project at Rysselende Mill proves the viability of decentralized wind-solar systems even in mild wind zones. With strong public access, modular technology, and ongoing innovation, this setup showcases the renewable energy solutions of tomorrow.

Need Help? We’ve Got Answers

What is the Aeroleaf Project Sparki Report?

The Aeroleaf Project Sparki Report is a detailed case study showcasing the real-world performance of the Aeroleaf® wind turbine system. It provides insights into energy outputs, system setup, and results from a live installation.

How does the Aeroleaf turbine perform in urban environments?

The Aeroleaf turbine is designed to operate efficiently in urban settings. Its compact size and quiet operation make it suitable for residential and commercial areas, providing consistent energy generation even in low-wind conditions.

What are the key features of the Aeroleaf turbine highlighted in the Sparki Report?

The Sparki Report emphasizes the Aeroleaf's biomimicry design, low-wind energy production capabilities, silent operation, and modular scalability. It also highlights the turbine's environmentally friendly construction and hybrid models that integrate solar petals.

Can the Aeroleaf system be integrated with solar panels?

Yes, the Aeroleaf system offers hybrid models that combine wind turbines with solar petals. This integration maximizes energy generation by harnessing both wind and solar power, ensuring efficiency and uptime.

What maintenance is required for the Aeroleaf turbine?

The Aeroleaf turbine features a direct-drive system without gears or belts, resulting in minimal maintenance needs. Regular inspections are recommended to ensure optimal performance.

Is the Aeroleaf turbine environmentally friendly?

Yes, the Aeroleaf turbine is constructed using recyclable materials and operates quietly, posing no threat to wildlife. Its design aligns with sustainable energy practices.

Where can I find more information about the Aeroleaf Project Sparki Report?

Detailed information about the Aeroleaf Project Sparki Report can be found on the Kilowatts.uk website under the resources section.

How does the Aeroleaf turbine contribute to energy independence?

By generating power from wind, the Aeroleaf turbine reduces reliance on the grid, especially during nighttime when solar panels are inactive. This contributes to greater energy independence for users.

What is the expected energy output of the Aeroleaf turbine?

The energy output of the Aeroleaf turbine varies based on wind conditions. For example, at wind speeds of 6 m/s, it can generate approximately 1.6 kWh over an 8-hour period.

How can I get an Aeroleaf turbine installed?

You can find trusted Aeroleaf installers through the Kilowatts.uk platform. Visit their website to locate a certified partner near you.