Location History:
- Steiermark, AT (2007)
- Gutenberg, AT (2008 - 2016)
Company Filing History:
Years Active: 2007-2016
Title: Innovations of Harald Rene Klammler
Introduction
Harald Rene Klammler is a notable inventor based in Gutenberg, Austria. He has made significant contributions to the field of environmental monitoring through his innovative inventions. With a total of 3 patents, Klammler's work focuses on advanced methods for measuring fluid and solute fluxes in various systems.
Latest Patents
Klammler's latest patents include the Sediment Bed Passive Flux Meter (SBPFM). This invention provides a novel approach to monitoring groundwater flow. The SBPFM consists of a casing with an intake, exhaust, and intermediate portion. It features a permeable sock and a sorptive matrix impregnated with tracers, designed to passively intercept groundwater flow without retaining it.
Another significant patent is the device and method for measuring fluid fluxes, solute fluxes, and fracture parameters in fracture flow systems. This invention offers an improved method for monitoring fluid and contaminant fluxes in various flow systems. It utilizes a sorbent layer that retains dissolved contaminants, allowing for the estimation of fracture parameters and flow directions.
Career Highlights
Klammler is associated with the University of Florida Research Foundation, Incorporated. His work has been instrumental in advancing environmental monitoring technologies. His inventions have practical applications in assessing groundwater quality and understanding fluid dynamics in fractured systems.
Collaborations
Klammler has collaborated with notable colleagues, including Kirk Hatfield and Michael David Annable. Their joint efforts have contributed to the development of innovative solutions in environmental research.
Conclusion
Harald Rene Klammler's contributions to environmental monitoring through his patents demonstrate his commitment to innovation. His work continues to influence the field and provides valuable tools for understanding complex fluid systems.