Company Filing History:
Years Active: 2017
Title: Innovations of Daniel Bryan Taylor in Wave Energy Conversion
Introduction
Daniel Bryan Taylor is an innovative inventor based in Thornlie, Australia. He has made significant contributions to the field of wave energy conversion, focusing on harnessing renewable energy from ocean waves. His work aims to provide sustainable energy solutions that can benefit various industries and communities.
Latest Patents
Daniel Bryan Taylor holds a patent for a deployment system that is a wave energy conversion system. This system is designed to harness wave energy in a body of water and convert it into pressurized fluid. The patent describes a unit that includes a buoyant structure responsive to wave motion, at least one pump, and at least one tether that connects the pump to a fixture below the unit. The movement of the buoyant structure relative to the fixture, in response to wave motion, effectively converts the harnessed energy into pressurized fluid. The unit is engineered to be deployed by moving the tether into coupling engagement with the fixture upon actuation of the pump.
Career Highlights
Daniel is associated with Ceto IP Pty Ltd, a company that focuses on developing innovative technologies for wave energy conversion. His work at Ceto IP Pty Ltd has positioned him as a key player in the renewable energy sector. He has successfully contributed to the advancement of technologies that aim to harness the power of ocean waves for sustainable energy production.
Collaborations
Daniel has collaborated with notable colleagues, including Jonathan Pierre Fievez and Laurence Drew Mann. These collaborations have fostered a creative environment that encourages the development of cutting-edge technologies in wave energy.
Conclusion
Daniel Bryan Taylor's contributions to wave energy conversion exemplify the potential of innovative technologies in addressing energy challenges. His patent and work at Ceto IP Pty Ltd highlight the importance of sustainable energy solutions in today's world.