by photonics24 | Sep 26, 2024
Reverse Engineering of a Kayak
Our team has been entrusted with the challenge of reverse engineering and optimizing the design of an existing kayak. This process involves thoroughly analyzing the current design, identifying areas for improvement, and enhancing the overall performance of the kayak. Our focus is on improving aspects such as speed, stability, and maneuverability, while also ensuring the kayak is lightweight and durable.
To achieve these goals, the prototype will be manufactured using advanced composite materials, known for their superior strength-to-weight ratio, resistance to environmental stress, and flexibility in design. By leveraging these materials, we can create a high-performance kayak that is not only more efficient but also more resilient, capable of withstanding various water conditions and rigorous use. Our innovative approach aims to deliver a kayak design that meets the highest standards of quality and performance.
by photonics24 | Sep 24, 2024
Aerodynamic wind tube for Skydiving
Our team was tasked with designing an aerodynamic wind tunnel for skydiving, optimizing both performance and cost-efficiency. To achieve this, we conducted comprehensive Computational Fluid Dynamics (CFD) analysis on the entire system. This allowed us to develop the most efficient design that meets the client’s budget for manufacturing without compromising on safety or performance. Our approach ensures the wind tunnel delivers a realistic skydiving experience with optimal airflow control, energy efficiency, and structural integrity.
by photonics24 | Sep 19, 2024
Carbon fiber satellite
Exploring space closer than ever
Our team has developed an artificial Earth satellite constructed from carbon fiber. This project was a collaborative effort with the
Technical University of Sofia and Sensata Technologies. It earned second place in the Orbital Space Satellite Service competition.
Currently, our team is conducting tests on the satellite, with plans to launch it into space in 2027.