Madison, WI, United States of America

Martin J Chiaverini


Average Co-Inventor Count = 3.0

ph-index = 3

Forward Citations = 61(Granted Patents)


Company Filing History:


Years Active: 2001-2005

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3 patents (USPTO):Explore Patents

Title: Martin J Chiaverini: Innovator in Hybrid Rocket Technology

Introduction

Martin J Chiaverini is a notable inventor based in Madison, WI (US), recognized for his contributions to rocket propulsion technology. He holds three patents, showcasing his innovative approach to engineering and design in the aerospace sector.

Latest Patents

Chiaverini's latest patent focuses on a hybrid rocket engine and a method of propelling a rocket utilizing a vortex flow field. This innovative design features an outer fluid vortex that spirals toward a closed end of the flow field generating apparatus. Additionally, an inner fluid vortex, which is substantially concentric with the outer vortex, spirals away from the closed end toward an outlet opening. The inner vortex spirals in the same direction as the outer vortex but in the opposite axial direction. The invention also encompasses a rocket propulsion system that utilizes this flow field, incorporating a combustion chamber with a fuel source and an oxidizer source. These components work together to support a combustion process while flowing along the flow field.

Career Highlights

Chiaverini is currently employed at Orbital Technologies Corporation, where he continues to develop and refine his innovative ideas in rocket propulsion. His work has significantly impacted the field, particularly in enhancing the efficiency and effectiveness of hybrid rocket engines.

Collaborations

Some of his notable coworkers include William H Knuth and Daniel J Gramer, who have collaborated with him on various projects within the aerospace industry.

Conclusion

Martin J Chiaverini stands out as a key figure in the development of hybrid rocket technology, with his patents reflecting a deep understanding of fluid dynamics and propulsion systems. His contributions continue to influence advancements in aerospace engineering.

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