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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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Crystal structure and actuation mechanisms in morphotropic phase boundary Pb(Zn[subscript 1/3]Nb[sub
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High fidelity actuator line data from 9 turbine wind farm simulations using ExaWind
This data was generated with the ExaWind code suite (https://github.com/Exawind) to investigate the performance of different Active Wake Mixing turbine control in a wind farm situated in a stable atmospheric boundary layer. All cases correspond to a 3x3 wind farm in a 10km x 10km domain using a total mesh size that varied between 1.6 X 10^9 to 1.85 X 10^9 grid cells. The simulations were run across 1800-2000 GPUs on Frontier. The case description and data generation process is fully documented in Yalla, G. R., Brown, K., Cheung, L., Houck, D., deVelder, N., and Balaji, J. (2025). "Estimating annual energy production of wake mixing control strategies including comparisons to wake steering." Wind Energy Sciences (https://doi.org/10.5194/wes-2025-250).
Compact, Pull-in-Free Electrostatic MEMS Actuated Tunable Ring Resonator for Optical Multiplexing.
Abstract not provided.
Data for "Spatially programmed alignment and actuation in printed liquid crystal elastomers"
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Navy Condition-Based Monitoring Project Update: Classification for Untrained-on Actuators
Abstract not provided.
Demonstration and performance testing of extreme-resolution simulations with static meshes on Summit (CPU & GPU) for a parked-turbine configuration and an actuator-line (mid-fidelity model) wind farm configuration (ECP-Q4 FY2020 Milestone Report)
The goal of the ExaWind project is to enable predictive simulations of wind farms comprised of many megawatt-scale turbines situated in complex terrain. Predictive simulations will require computational fluid dynamics (CFD) simulations for which the mesh resolves the geometry of the turbines and captures the rotation and large deflections of blades. Whereas such simulations for a single turbine are arguably petascale class, multi-turbine wind farm simulations will require exascale-class resources. The primary physics codes in the ExaWind simulation environment are Nalu-Wind, an unstructured-grid solver for the acoustically incompressible Navier-Stokes equations, AMR-Wind, a block-structured-grid solver with adaptive mesh refinement capabilities, and OpenFAST, a wind-turbine structural dynamics solver. The Nalu-Wind model consists of the mass-continuity Poisson-type equation for pressure and Helmholtz-type equations for transport of momentum and other scalars. For such modeling approaches, simulation times are dominated by linear-system setup and solution for the continuity and momentum systems. For the ExaWind challenge problem, the moving meshes greatly affect overall solver costs as reinitialization of matrices and recomputation of preconditioners is required at every time step. The choice of overset-mesh methodology to model the moving and non-moving parts of the computational domain introduces constraint equations in the elliptic pressure-Poisson solver. The presence of constraints greatly affects the performance of algebraic multigrid preconditioners.
LUNA Condition-Based Monitoring Update: Auto-encoders on Actuator Data [Slides]
An auto-encoder is a neural network trained to output a reconstruction of its input. There is a ‘bottleneck’ layer whose dimension is typically lower than that of the input. Because the input passes through the bottleneck, the auto-encoder must learn to compress (encode) the input into this low-dimensional form, and to decompress (decode) the compressed data into a close approximation of its original form.
Multifidelity Uncertainty Quantification of Wind Turbine Interaction Using Enhanced Nalu-Wind Actuator Simulations.
Abstract not provided.
Optimizing the Size and Placement of Piezoelectric Actuators for Modal Testing.
Abstract not provided.
Initial Investigation of Refinement Region Lead-in Length Effects on Actuator Line Model QoIs in Large Eddy Simulation.
Abstract not provided.
Comparison of Actuator Line Model and a Filtered Lifting Line Correction Implemented in Nalu-Wind Large Eddy Simulations of the Atmospheric Boundary Layer.
Abstract not provided.
Towards Higher-Order Validation Methodology for Actuator Line LES Near-Wake Predictions using Nacelle-Mounted LiDAR Measurements.
Abstract not provided.
Designing 3D Printed Micro-Actuators for Functionalized Fiber Optics.
Abstract not provided.
Using piezoelectric film actuators as excitation sources in modal tests.
Abstract not provided.