This inventor holds 1 USPTO granted patent and 1 published patent application. Top assignee: China University of Mining and Technology. Active years: 2026.
Company Filing History:
Years Active: 2026
Title: Zhanglei Fan: Innovator in Rock Porosity Prediction
Introduction
Zhanglei Fan is a notable inventor based in Xuzhou, China. He has made significant contributions to the field of rock porosity prediction through innovative methodologies. His work is particularly relevant in the context of drilling operations, where accurate predictions can enhance efficiency and safety.
Latest Patents
Zhanglei Fan holds a patent for a "Rock porosity prediction method based on small-sample inversion of while-drilling data." This method involves collecting while-drilling parameters during laboratory or field drilling processes, including torque, propulsion, rotational speed, drilling speed, drill pipe amplitude, and vibration acceleration. The process utilizes a backpropagation regression-genetic algorithm (BP-GA) model for data processing and a convolutional neural network (VG-CNN) for predicting rock porosity based on real-time drilling parameters. This innovative approach allows for more accurate and timely predictions of rock porosity during drilling operations.
Career Highlights
Zhanglei Fan is affiliated with the China University of Mining and Technology, where he continues to advance research in drilling technologies. His work has implications for various industries, including oil and gas, where understanding rock properties is crucial for successful drilling.
Collaborations
Zhanglei Fan has collaborated with colleagues such as Zihan Kong and Gangwei Fan. Their combined expertise contributes to the development of advanced methodologies in rock porosity prediction.
Conclusion
Zhanglei Fan's innovative contributions to rock porosity prediction demonstrate the importance of research and development in drilling technologies. His patent reflects a significant advancement in the field, showcasing the potential for improved drilling efficiency and safety.