David Neubauer
Papers
3
Total Citations
31
H-Index
2
About
David Neubauer is a leading researcher in atmospheric aerosol science, with a primary focus on evaluating and improving global climate models. His key research areas include biomass burning aerosol (BBA) modeling, aerosol optical properties, and the integration of satellite and ground-based observations for model validation. Neubauer’s most impactful work, "Satellite-based evaluation of AeroCom model bias in biomass burning regions" (2022), has already garnered 20 citations, providing critical insights into how global models simulate BBA distributions and their subsequent health and climate impacts. He also contributed significantly to the AeroCom Phase III Control experiment (2020), a multi-model evaluation that assessed aerosol optical properties using data from AERONET, MODIS, and other observational networks, earning 9 citations. Beyond atmospheric science, Neubauer has ventured into interdisciplinary robotics, co-authoring "ROS-driven Disassembly Planning Framework incorporating Screw Detection" (2023), which addresses automation challenges in electronic waste disassembly. His work bridges fundamental climate research with practical engineering solutions, demonstrating versatility and impact. Neubauer’s contributions are essential for refining aerosol representations in climate models, directly supporting policy-relevant assessments of air quality and radiative forcing.
Research Focus
Key Achievements
Top Papers
- 1Satellite-based evaluation of AeroCom model bias in biomass burning regions20 citations · 2022
- 2
- 3ROS-driven Disassembly Planning Framework incorporating Screw Detection2 citations · 2023