Berlin, Germany

Daniela Koch

USPTO Granted Patents = 4 

 

Average Co-Inventor Count = 3.8

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 2019-2022

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4 patents (USPTO):Explore Patents

Title: Daniela Koch: Innovator in Turbine Blade Technology

Introduction

Daniela Koch is a prominent inventor based in Berlin, Germany. She has made significant contributions to the field of turbine blade technology, holding a total of 4 patents. Her innovative designs focus on enhancing the efficiency and reliability of turbine blades in various operating conditions.

Latest Patents

One of her latest patents is an aerofoil for a turbine blade. This design features a leading edge that allows hot gas to flow, with a suction-side wall and a pressure-side wall extending to the trailing edge. The aerofoil is designed to have a height that varies from 0% at the root-side end to 100% at the tip-side end. It includes at least two rows of cooling holes arranged along the leading edge, which are spaced to improve cooling efficiency. Another notable patent is a method for producing a cavity in a blade platform, particularly for turbine blades. This method involves creating a bore from one lateral face of the platform and expanding it in a fan-like manner using electrical discharge machining.

Career Highlights

Throughout her career, Daniela Koch has worked with leading companies in the industry, including Siemens Aktiengesellschaft and Siemens Energy Global GmbH & Co. KG. Her work has focused on developing advanced cooling systems for turbine blades, which are crucial for enhancing performance and reliability.

Collaborations

Daniela has collaborated with notable professionals in her field, including Fathi Ahmad and Marco Schüler. These collaborations have contributed to her innovative approaches and successful patent applications.

Conclusion

Daniela Koch is a trailblazer in turbine blade technology, with a strong portfolio of patents that reflect her expertise and innovative spirit. Her contributions continue to shape the future of turbine design and efficiency.

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