Grant For Research 80NSSC19K0247
- Not listed
- The University of Alabama in Huntsville (UAH) has been awarded a $1,336,697.00 grant from the National Aeronautics and Space Administration (NASA) to continue its Tropospheric Ozone Lidar Network (TOLNET) program. This program has been providing tropospheric ozone profile data since 2008 to support various scientific investigations, including research on low-level ozone transport, stratosphere-troposphere interaction, model evaluation, chemical production in biomass burning smoke transport,...
- This federal contract award, issued by the Shared Services Center, provides a $325,000.00 grant to the University of Alabama in Huntsville (UAH) for the "TOLNET LIDAR MEASUREMENTS FOR TEMPO VALIDATION AND SCIENTIFIC RESEARCH" project. The contract is not set aside for any specific business type. UAH, a public research university and non-profit educational institution, has a robust track record of delivering sophisticated research and development services to federal agencies like...
- The University of Alabama in Huntsville (UAH) received a $537,491.73 research grant from a civilian federal agency's Shared Services Center, awarded on March 6, 2020, with an ultimate completion date of December 1, 2024. This non-competitive grant supports activities centered on TEMPO data applications, including the development of deliverables, facilitation of collaborative meetings and workshops for TEMPO data product users, and comprehensive outcome reporting. The work will be performed in...
- This federal contract award to The University of Alabama in Huntsville (UAH) is for a research and development project to improve optical coating systems that protect lenses from damage by atomic oxygen in low Earth orbit. The $376,452 grant has a period of performance through July 13, 2025. UAH, a public research university, is the prime contractor on this award, which is not set aside. The funding agency is the National Aeronautics and Space Administration (NASA), and this project supports the...
- This federal contract award, valued at $402,026.00, was granted to The University of Alabama in Huntsville (UAH), a public research university registered as a non-profit educational institution and state-controlled institution of higher learning. The contract, which is not set aside for a specific business classification, is for a research grant titled "LINKING CONVECTIVE PROCESSES AND SATELLITE LIGHTNING MEASUREMENTS: NEW INSIGHTS FROM MODERN ANALYSIS OF CLOUD, PRECIPITATION, AND LIGHTNING...
- This federal contract award to the University of Alabama in Huntsville (UAH) is for a research project titled "Evolution of Lightning Energetics and the Relationship to Severe Weather." The $298,893 grant is funded by the National Aeronautics and Space Administration (NASA) to investigate the Geostationary Lightning Mapper (GLM) instrument on the GOES-R satellite. The research aims to develop new algorithms to better utilize GLM data and relate lightning activity to storm dynamics...
- This federal contract award, valued at $105,000.00, was issued by the National Aeronautics and Space Administration (NASA) to the University of Alabama in Huntsville (UAH) to support research on the detection and radiative effects of above-cloud biomass burning aerosols over the southeast Atlantic region. The goals are to utilize satellite data from the A-Train constellation and the Spinning Enhanced Visible and Infrared Imager (SEVIRI) geostationary sensor, along with in-situ aircraft...
- This federal contract award to The University of Alabama in Huntsville (UAH) supports a NASA effort to develop a dust accumulation sensor for an upcoming robotic mission to the Moon. The $95,696.00 grant is an extension of an experimental program conducted in 2002-2004. UAH is a public research university that regularly supports federal government missions through contracts and grants, including work for the Department of Defense and NASA. The award does not utilize a set-aside designation. As a...
- The University of Alabama in Huntsville (UAH) was awarded a $155,427 grant on January 1, 2023, to enhance air quality applications in the Hindu-Kush Himalaya region through remote sensing, modeling, and machine learning techniques. This civilian research award, which concluded December 31, 2024, addresses the Weather and Climate Thematic Service Area under the SERVIR Applied Sciences Team solicitation, specifically supporting the SERVIR-Hindu Kush Himalaya regional hub. The project targets...
- The University of Alabama in Huntsville (UAH) received a $412,852 grant award from a civilian federal agency's Shared Services Center on January 1, 2022, to conduct an investigation of small-scale structures derived from Parker Solar Probe in-situ measurements. The research will be performed in Huntsville, Alabama, with a completion deadline of December 31, 2026. This grant supports UAH's ongoing research contributions to space science and solar physics, aligning with the university's...
The University of Alabama in Huntsville (UAH) received a civilian grant from NASA valued at $882,733.19, awarded on November 29, 2018, with an ultimate completion date of November 28, 2024. The contract supports continued operation and enhancement of the UAH Rocket LIDAR (Light Detection and Ranging) instrument, which has provided tropospheric ozone profile measurements since 2008 for scientific investigations including low-level ozone transport, stratosphere-troposphere interaction, model evaluation, and lightning-induced NOx production. The work is performed in Huntsville, Alabama, and involves no set-aside designation. Over the five-year period, UAH will continue routine LIDAR observations and data archiving to support NASA's Tropospheric Ozone Precision Measurements (TEMPO) validation mission, conduct scientific research on ozone production in southeastern U.S. fire smoke, complete construction of a mobile LIDAR and scanning system for future field campaigns, and enhance collaboration between the Tropospheric Ozone Lidar Network (TOLNet) and the modeling and satellite communities. The LIDAR measurements address critical gaps in air quality monitoring by providing high-temporal-resolution ozone profiles in the planetary boundary layer, filling the observational gap between surface monitoring networks and global satellite observations to support both research and operational air quality decision-making.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| P00007 | Funding Only Action | ($847) | 11/28/25 | |
| P00006 | Other Administrative Action | $0 | 11/14/23 | |
| Not listed | $0 | 11/14/23 | ||
| P00005 | Funding Only Action | $155.3k | 9/26/22 | |
| Not listed | $155.3k | 9/26/22 |