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Search indexed NASA NTRS and DOE OSTI research on propulsion, heat transfer, battery materials and energy systems. Follow report and document links to the original sources.
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Design optimization of an assisted living facility to improve summer thermal comfort in warming climates
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Scalable AI-assisted workflow management for detector design optimization using distributed computing
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A Workflow for Combining Multiple MCNP Models and Debugging Geometries using Geomwriter and FLAIR
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PIP-II High Beta 650 Prototype Cryomodule Assembly Experience and Related Design Optimization
After shipment to the Daresbury Lab and return to Fermilab, the prototype HB650 cryomodule underwent another phase of 2K RF testing to ascertain any performance issues that may have arisen from the transport of the cryomodule. While measurements taken at room temperature after the conclusion of shipment indicated that there were no negative impacts on cavity alignment, beamline vacuum, or cavity frequency, testing at 2K was required to validate other aspects such as tuner operation, cavity coupling, cryogenic system integrity, and cavity performance. Results of this latest round of limited 2K testing will be presented.
Design, Optimization, and Control of Floating Offshore Wind Farms for Optimal Energy Production (Final report)
The uncertainty and irregularity of ocean waves and the ocean environment is a major factor in the development of commercial scale floating wind turbines as the operation of floating structures in such an environment can lead to irregular and unpredictable loading, fatigue, and ultimately a reduction in the operational life of the turbine system which affects energy production over the lifetime of the turbine. Control solutions that can limit float motions and mitigate stressful events on the structure become essential for extending lifetime and limiting the operational uncertainty of a floating wind turbine. Digital twins are computational replicas of physical systems that operate in parallel with the operation of the physical system. Given advanced knowledge of a systems input, digital twins have the ability to predict the behavior of a system in advance, which can be valuable in the control of that system. In this project, we developed and assessed potential digital twin models developed in house and openly available (OpenFast) for use in the real time control of the six degree of freedom response motions of a floating wind turbine in ocean waves. Coupling these models with near-field real time irregular sea surface (wve) measurement/sensings and prediction models, we used the digital twin to predict how the floating turbine will respond to the incoming waves. Applying this information to a motion control system of the float, one can limit and control float motions to prevent undesirable loading events/large angular motions, thus increasing system life and ultimately contributing to optimizing energy production. Due to the computational intensity of operating a digital twin in real time, we investigated the use of artificial intelligence techniques to speed-up the processes of the digital twin, as well as the wave reconstruction/prediction models. Model tank testing at the University of Rhode Island and University of Maine both validated and demonstrated the developed techniques on simple float geometries and a scale model of the NREL 15 MW reference turbine.
Bayesian Optimal Design of a Photolysis Flow Reactor
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Multi-channel Attached Algae Flow-ways: Design Optimization for Enhanced Biomass Productivity and Quality
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Bayesian optimal Design of pulsed power experiments
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BAYESIAN OPTIMAL DESIGN OF PULSED POWER EXPERIMENTS
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Integrated LLM-based Job Manager Agent for Design Optimization
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Design Optimization for Mechanical Logic Gates
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Sensitivity Analysis and Design Optimization of Ceramic Breeders project report
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Use of superconductors with varied characteristics for optimized design of large- bore high-field magnets.
Iterative design procedure for optimum placement of vapor deposited Nb-Sn ribbon superconductors in high field large bore modular magnets
Design optimization of sandwich nose fairings
Evaluation of sandwich shaped nose fairings for Saturn launch vehicle
Computer program optimizes design of nuclear radiation shields
Computer program, OPEX 2, determines minimum weight, volume, or cost for shields. Program incorporates improved coding, simplified data input, spherical geometry, and an expanded output. Method is capable of altering dose-thickness relationship when a shield layer has been removed.