Chengdu, China

Hangyu Zhou


Average Co-Inventor Count = 7.5

ph-index = 1

Forward Citations = 2(Granted Patents)


Company Filing History:


Years Active: 2023-2025

where 'Filed Patents' based on already Granted Patents

2 patents (USPTO):

Title: Innovating Proppant Transport: The Invention of Hangyu Zhou

Introduction: Hangyu Zhou, located in Chengdu, China, is a distinguished inventor making significant contributions to the field of hydraulic fracturing. With a focus on improving proppant transport methods, he has developed a novel approach that takes into account the wall-retardation effect, evidenced by his patent.

Latest Patents: Hangyu Zhou holds a patent for a *Numerical simulation method for proppant transport considering wall-retardation effect*. This innovative method includes the establishment of a physical model for laboratory experiments utilizing a large flat-panel device. It incorporates a drag coefficient model that accounts for the wall-retardation effect, allowing for precise simulations of proppant movement in fractures. The method has shown reliability and accuracy in predicting how proppants behave during hydraulic fracturing, enhancing operational effectiveness in subsurface environments.

Career Highlights: Hangyu Zhou is affiliated with Southwest Petroleum University, where he applies his expertise in hydraulic engineering and contributes to academia through research and innovative projects. His commitment to improving proppant transport technologies positions him as a valuable asset in the field of petroleum engineering.

Collaborations: Throughout his career, Hangyu Zhou has collaborated with notable colleagues, including Jianchun Guo and Tao N Zhang. These partnerships reflect a dedication to advancing research and developing effective solutions within the industry.

Conclusion: Through his innovative patent and collaborative efforts, Hangyu Zhou is making strides in the optimization of proppant transport methods in hydraulic fracturing. His work not only contributed to academic research at Southwest Petroleum University but also has the potential to impact practical applications in the energy sector.

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