Chengdu, China

Xueying Wang

USPTO Granted Patents = 8 

 

Average Co-Inventor Count = 15.2

ph-index = 1


Company Filing History:


Years Active: 2016-2025

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8 patents (USPTO):

Title: Xueying Wang: Innovator in Shale Evaluation Technologies

Introduction

Xueying Wang is a prominent inventor based in Chengdu, China, known for his significant contributions to the field of geological evaluation. With a total of eight patents to his name, Wang has developed innovative methods that enhance the understanding of shale properties and their implications for gas preservation.

Latest Patents

Wang's latest patents include a "Method for Quantitative Evaluation of Self-Sealing Property of Organic-Rich Shale." This method involves selecting geological parameters, measuring samples, and calculating coefficients to evaluate the self-sealing properties of shale. The evaluation standard established by this method allows for a clear classification of self-sealing grades, which is crucial for predicting shale gas preservation conditions. Another notable patent is the "Calculation Method for Fractal Dimension of Shale Pores." This method outlines a systematic approach to obtaining fractal dimensions of shale pores through regression analysis and principal component analysis, providing valuable insights into the geological characteristics of shale formations.

Career Highlights

Wang has worked at esteemed institutions such as Southwest Petroleum University and China University of Geosciences (Wuhan). His research and innovations have significantly impacted the field of geology, particularly in understanding shale formations and their properties.

Collaborations

Wang has collaborated with notable colleagues, including Kun Zhang and Fengli Han, who have contributed to his research endeavors. Their combined expertise has further advanced the methodologies developed by Wang.

Conclusion

Xueying Wang's innovative work in shale evaluation technologies has established him as a key figure in the field of geology. His patents not only enhance the understanding of shale properties but also provide practical applications for predicting gas preservation conditions.

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