Wuhan, China

Aishu Li


Average Co-Inventor Count = 11.0

ph-index = 1


Company Filing History:


Years Active: 2022

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2 patents (USPTO):Explore Patents

Title: Aishu Li: Innovator in Supercritical Carbon Dioxide Technology

Introduction

Aishu Li is a prominent inventor based in Wuhan, China. She has made significant contributions to the field of supercritical carbon dioxide technology, holding 2 patents that showcase her innovative approach to boiler systems.

Latest Patents

Aishu Li's latest patents include a supercritical CO boiler capable of realizing uniform combustion, corrosion resistance, and coking resistance. This advanced boiler design features a main combustion chamber with a circular, oval, or N-sided shape, where N is greater than 4. The design incorporates at least four burner groups, each equipped with a recirculating air nozzle, a primary air nozzle, and a secondary air nozzle. Additionally, lateral recirculating air nozzles are symmetrically distributed on either side of the primary air nozzle, allowing for the efficient feeding of recirculating flue gas or a mixed gas into the combustion chamber. Another patent focuses on a boiler design method and system for a supercritical carbon dioxide unit, which outlines a systematic approach to determining boiler types and design parameters for optimal performance.

Career Highlights

Aishu Li is affiliated with Huazhong University of Science and Technology, where she continues to advance her research and development in innovative boiler technologies. Her work has garnered attention for its potential to improve energy efficiency and reduce emissions in industrial applications.

Collaborations

Aishu collaborates with notable colleagues, including Jun Xiang and Meng Zhu, who contribute to her research endeavors and help drive innovation in their field.

Conclusion

Aishu Li's contributions to supercritical carbon dioxide technology exemplify her commitment to innovation and sustainability. Her patents reflect a deep understanding of boiler systems and their potential to revolutionize energy efficiency.

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