Krefeld, Germany

Herbert Wiebe


Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 1990

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1 patent (USPTO):Explore Patents

Title: **Herbert Wiebe – Innovator in Combustion Technology**

Introduction

Herbert Wiebe, based in Krefeld, Germany, is a notable inventor recognized for his innovative contributions to combustion technology. With a keen understanding of airflow dynamics, Wiebe has successfully developed a unique device that enhances the efficiency of burners by optimizing the feeding of waste air and combustion air.

Latest Patents

Herbert Wiebe holds a patent for his invention titled "Device for feeding waste air and/or combustion air to a burner." This innovative device features an upstream cylindrical swirl inlet system equipped with feeder nozzles that lead in tangentially. The main nozzle is strategically positioned at a radial distance from the burner axis, allowing for greater swirl intensity at lower throughputs. To manage the swirl at higher throughputs, a secondary flow is introduced, showcasing an intelligent design that adjusts to varying operational conditions, thus ensuring optimal performance.

Career Highlights

Wiebe has had an impressive career, having worked with esteemed companies such as Bayer Aktiengesellschaft and Kleinewefers Energie-und Umwelttechnik GmbH. His tenure at these organizations allowed him to fine-tune his expertise in engineering and innovative design, contributing to advancements in combustion technology.

Collaborations

Throughout his career, Herbert Wiebe has collaborated with notable professionals in the industry, including Werner Huning and Claus Gockel. These partnerships have not only enhanced his projects but have also resulted in significant advancements in the field of combustion systems.

Conclusion

Herbert Wiebe stands out as a visionary inventor whose work continues to influence the efficiency of combustion technologies. His patent underscores a commitment to innovation, demonstrating that with the right design and control mechanisms, combustion systems can operate more efficiently and effectively.

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