This inventor holds 1 USPTO granted patent and 1 published patent application. Top assignee: Emrgy Inc.. Active years: 2026.
Company Filing History:
Years Active: 2026
Title: Innovations of John Tuttle in Hydrokinetic Turbine Technology
Introduction
John Tuttle is an innovative inventor based in Atlanta, GA (US). He has made significant contributions to the field of hydrokinetic energy through his inventive work. His focus on optimizing turbine performance has the potential to revolutionize energy generation from waterways.
Latest Patents
John Tuttle holds a patent for a hydrokinetic turbine and array performance optimization by dynamic tuning. This patent describes a hydrokinetic turbine system that features dynamic tuning capabilities. The system allows individual hydrokinetic turbine units to be adjusted according to changes in height and flow velocity in a waterway. By dynamically tuning the turbine units, the system optimizes power generation output. The tuning process includes raising or lowering turbine blade height, extending or retracting turbine blade length, and adjusting the dimensions of the turbine mouth, channel, and exit. The turbines can be arranged in an array along a waterway, with each unit connected to a control system that optimizes power generation for the specific conditions of the waterway.
Career Highlights
John Tuttle is currently associated with Emrgy Inc., a company dedicated to advancing hydrokinetic energy solutions. His work at Emrgy Inc. emphasizes the importance of innovative technologies in harnessing renewable energy sources.
Collaborations
John collaborates with Thomas R. Cuthbert, III, who is also involved in the development of hydrokinetic technologies. Their partnership enhances the potential for innovative solutions in the field.
Conclusion
John Tuttle's contributions to hydrokinetic turbine technology demonstrate his commitment to optimizing renewable energy generation. His innovative patent and work at Emrgy Inc. highlight the importance of dynamic tuning in maximizing power output from waterways.