πŸŒžπŸ‘¨β€πŸ”¬ DIY Solar Cooker – Back in the Sun – Field Testing, Teamwork & Good Food

Last Sunday, we came together once again to see our solar cooker in action, reflect on what we’ve learned so far, and brainstorm the next steps in our ongoing research project. It was a great mix of hands-on testing, technical discussions – and shared moments.

Despite the sometimes unpredictable August weather in Luxembourg (we got lucky with the sun β˜€οΈπŸ˜…), we managed to cook a meal, enjoy the results, and exchange ideas on how to optimize performance, tracking mechanisms, and heat transfer.

🍽️ Key takeaway?

Engineering and sustainability go hand-in-hand – but it’s the human element that makes these projects truly meaningful. Sitting together, sharing a solar-cooked dish, and dreaming up improvements is what drives us forward.

πŸ”¬ What’s next?

> Testing alternative absorber Materials
> Improving reflector precision
> Collecting more performance data under varying conditions

Huge thanks to everyone who joined and contributed their insights & energy – especially Michel Guenther for pushing things forward!

#SolarCooking #SustainableEngineering #DIYScience #HandsOnLearning #ScienceCommunity #EngineeringForGood #CircularDesign #EWB #EngineersWithoutBordersLuxembourg

πŸŒžπŸ”§ DIY Solar Cooker – Cooking with the Power of the Sun

We decided to build a solar cooker as a fun and educational science project. A solar cooker uses nothing but sunlight to prepare food – no fossil fuels, no wood. πŸŒ±β™»οΈ A small step for us, a meaningful contribution to a more sustainable future.

🎯 Goal:
To create a simple, low-cost solar cooker using common materials, test the concept, and gain hands-on experience with solar cooking.

πŸ› οΈ Our Approach:
πŸ“‘ Reused a broken satellite dish as the reflector
πŸͺž Cut small mirror squares and glued them onto the dish
πŸ›ž Used an old truck brake disc + welded steel frame for a stable base
βš™οΈ Implemented a zenith angle control mechanism for solar tracking

πŸ“Š Key Data:
πŸ”² Reflective surface: 0.79β€―mΒ²
πŸ” Concentration factor: ~130
🌑️ Test in March (Luxembourg): 170β€―Β°C reached
β˜€οΈ Test in July: 42β€―% efficiency achieved

πŸ’¬ Conclusion:
A rewarding hands-on project that combines engineering, sustainability, and reuse. A great example of how simple ideas can drive real impact.

Big thanks to our member Michel Guenther !!!

#SolarCooking #Sustainability #DIYEngineering #RenewableEnergy #ScienceProject #EngineeringForGood #CircularDesign #EngineersWithoutBordersLuxembourg #EWB #EWB_Luxembourg

🌱 Exploring Nature-Based Solutions for Grey Water Treatment πŸ’§

This week, our dedicated volunteers Kristina and Lucas had the opportunity to visit a grey water treatment plant developed by the University of Luxembourg researchers and installed at LycΓ©e Edward Steichen (Clervaux, Luxembourg).

This innovative pilot project is based on nature-based solutions, using a combination of biochar-enhanced sand and plants to naturally purify grey water. The system has demonstrated promising results in delivering a sustainable and efficient water treatment method.

We are enthusiastic about the potential to apply this approach in our international projects, in collaboration with the Water Group at the University of Luxembourg, especially in water-scarce and vulnerable regions.

A heartfelt thank you to Dr. Silvia Venditti for organizing the visit and generously sharing her insights and and to Dr. Irene for contributing valuable insights from her research on water treatment.

🎧 Learn more about nature-based solutions in Dr. Silvia Venditti’s podcast episode with Research Luxembourg

#EWB #WaterForAll #NatureBasedSolutions #Sustainability #GreyWater #Luxembourg #WastewaterTreatment #EngineeringForGood #SDGs #CircularWater #EcoInnovation #ResearchLuxembourg

MOROCCO Project

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