London, Canada

Shiun-Liang Lee


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 68(Granted Patents)


Company Filing History:


Years Active: 1987

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1 patent (USPTO):Explore Patents

Title: Innovations of Shiun-Liang Lee in Bubble Measurement Technology.

Introduction

Shiun-Liang Lee is a notable inventor based in London, Canada. He has made significant contributions to the field of gas-liquid systems through his innovative patent. His work focuses on measuring bubble characteristics in various systems, which is crucial for numerous industrial applications.

Latest Patents

Shiun-Liang Lee holds a patent for a "Multi-probe system for measuring bubble characteristics gas hold-up." This invention discloses a method and apparatus for determining one or more physical characteristics of individual bubbles in gas-liquid and gas-liquid-solid systems at high temperatures and pressures. The system utilizes an in situ probe device that is inserted into the system, allowing individual bubbles to flow over it. The probe device features multiple independent probes, each equipped with a rounded fiber optic end portion that projects into the system. This design enables the detection of bubble characteristics efficiently and reliably.

Career Highlights

Lee's career is marked by his innovative approach to solving complex problems in gas-liquid systems. His patent demonstrates a deep understanding of the interactions between light and bubbles, allowing for precise measurements of bubble characteristics. This advancement has implications for various industries, including chemical engineering and environmental monitoring.

Collaborations

Shiun-Liang Lee has collaborated with esteemed colleagues such as Hugo I De Lasa and Maurice A Bergougnou. Their combined expertise has contributed to the development of advanced technologies in the field.

Conclusion

Shiun-Liang Lee's contributions to bubble measurement technology exemplify the importance of innovation in scientific research. His patented system not only enhances our understanding of gas-liquid interactions but also paves the way for future advancements in the field.

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