Company Filing History:
Years Active: 2018-2025
Title: The Innovative Mind of Gabriele Gangale
Introduction: Gabriele Gangale, a skilled inventor based in Formigine, Italy, has made significant contributions to the field of combustion technology. With a total of three patents to his name, his work is focused on developing advanced burner systems that enhance efficiency and performance.
Latest Patents: Gangale's latest innovations include a groundbreaking design for a burner that features a tubular diffuser wall and an inlet passage for a gas mixture. This burner integrates two diaphragms, each with uniquely shaped openings, allowing for optimized gas flow and combustion efficiency. Another noteworthy patent is an active insulation burner specifically designed for external combustion engines. This device incorporates a front wall with a heat exchanger opening, a rear wall with a fume discharge opening, and a specially designed combustion chamber. The design focuses on improving thermal management through a cooling interspace that aids the gas supply line.
Career Highlights: Gabriele Gangale's professional journey is marked by his association with Worgas Bruciatori S.r.l., where he has further developed his expertise in burner technology. His innovative spirit and dedication have led to significant advancements in the industry, marked by his successful patent applications.
Collaborations: Over the course of his career, Gangale has collaborated with talented professionals such as Antonio Acocella and Jimmy Nassiboo. Their collective expertise and innovative approaches have undeniably contributed to the development and success of their projects at Worgas Bruciatori S.r.l.
Conclusion: Gabriele Gangale exemplifies the essence of innovation in the field of combustion technology. His patents reflect not only a deep understanding of engineering principles but also a commitment to enhancing efficiency in burner systems. As he continues to push the boundaries of technology, Gangale remains a prominent figure whose work will impact the future of combustion applications.