This inventor holds 1 USPTO granted patent and 1 published patent application, plus 1 CIPO patent. Top assignees: Alliance for Sustainable Energy, LLC, Trustees of the Colorado School of Mines. Active years: 2023.
Company Filing History:


Years Active: 2023
Title: Innovations of Xingchao Wang in Thermal Energy Conversion
Introduction
Xingchao Wang is an accomplished inventor based in Highlands Ranch, Colorado. He has made significant contributions to the field of thermal energy conversion, particularly through his innovative patent that focuses on heat exchangers. His work aims to enhance the efficiency of converting thermal energy stored in solid particles into electricity.
Latest Patents
Wang holds a patent for a "Fluidized-bed heat exchanger for conversion of thermal energy to electricity." This invention describes a novel approach to heat exchangers that convert thermal energy stored in solid particles into electrical energy. The technology allows for the conversion of off-peak electricity into heat for thermal energy storage, which can be transformed back into electricity during peak-hour power generation. The design of the heat exchanger enables efficient conversion by facilitating direct contact between solid particles and a gas stream, particularly in pressurized fluidized-bed systems.
Career Highlights
Throughout his career, Xingchao Wang has worked with notable organizations, including the Alliance for Sustainable Energy, LLC and the Trustees of the Colorado School of Mines. His experience in these institutions has allowed him to collaborate with other experts in the field and contribute to advancements in sustainable energy technologies.
Collaborations
Wang has collaborated with several professionals, including Zhiwen Ma and Jeffrey Clayton Gifford. These partnerships have further enriched his research and development efforts in thermal energy conversion.
Conclusion
Xingchao Wang's innovative work in thermal energy conversion showcases his commitment to advancing sustainable energy solutions. His patent for a fluidized-bed heat exchanger represents a significant step forward in the efficient use of thermal energy.