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AFRL Additive Manufacturing Modeling Challenge Series: Overview
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A conservative level set method on unstructured meshes for modeling multiphase thermo-fluid flow in additive manufacturing processes
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Revealing transient powder-gas interaction in laser powder bed fusion process through multi-physics modeling and high-speed synchrotron x-ray imaging
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Gas turbine computational flow and structure analysis with isogeometric discretization and a complex-geometry mesh generation method
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Spattering and denudation in laser powder bed fusion process: Multiphase flow modelling
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Space–Time Variational Multiscale Isogeometric Analysis of a tsunami-shelter vertical-axis wind turbine
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Optimizing Gas Turbine Performance Using the Surrogate Management Framework and High-Fidelity Flow Modeling
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A variational multiscale framework for atmospheric turbulent flows over complex environmental terrains
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Computational Flow Analysis in Aerospace, Energy and Transportation Technologies with the Variational Multiscale Methods
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Controlling interdependent meso-nanosecond dynamics and defect generation in metal 3D printing
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Physics‐Informed Deep Neural Networks for Learning Parameters and Constitutive Relationships in Subsurface Flow Problems
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Wind Turbine and Turbomachinery Computational Analysis with the ALE and Space-Time Variational Multiscale Methods and Isogeometric Discretization
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Performance analysis of two vertical-axis hydrokinetic turbines using variational multiscale method
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Variational multiscale framework for cavitating flows
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Variational multiscale framework for cavitating flows
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Extraction of mechanical properties of materials through deep learning from instrumented indentation
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In Situ Measurements of Melt-Pool Length and Cooling Rate During 3D Builds of the Metal AM-Bench Artifacts
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Ventricle-valve-aorta flow analysis with the Space–Time Isogeometric Discretization and Topology Change
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Outcomes and Conclusions from the 2018 AM-Bench Measurements, Challenge Problems, Modeling Submissions, and Conference
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Measurements of Melt Pool Geometry and Cooling Rates of Individual Laser Traces on IN625 Bare Plates
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The actuator line method for wind turbine modelling applied in a variational multiscale framework
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Hidden fluid mechanics: Learning velocity and pressure fields from flow visualizations
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Heart valve isogeometric sequentially-coupled FSI analysis with the space–time topology change method
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PyTorch: An Imperative Style, High-Performance Deep Learning Library
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Physics-Informed Deep Neural Networks for Multiphysics Data Assimilation in Subsurface Transport Problems
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Interface-Capturing Method for Free-Surface Plunging and Breaking Waves
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A Physics-Constrained Data-Driven Approach Based on Locally Convex Reconstruction for Noisy Database
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Space–time computational analysis of tire aerodynamics with actual geometry, road contact, tire deformation, road roughness and fluid film
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Surrogate modeling for fluid flows based on physics-constrained deep learning without simulation data
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Space–time VMS flow analysis of a turbocharger turbine with isogeometric discretization: computations with time-dependent and steady-inflow representations of the intake/exhaust cycle
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Space–time VMS flow analysis of a turbocharger turbine with isogeometric discretization: computations with time-dependent and steady-inflow representations of the intake/exhaust cycle
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Machine learning in cardiovascular flows modeling: Predicting pulse wave propagation from non-invasive clinical measurements using physics-informed deep learning
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Transfer learning of deep material network for seamless structure–property predictions
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Benchmark Study of Thermal Behavior, Surface Topography, and Dendritic Microstructure in Selective Laser Melting of Inconel 625
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Meshfree Simulations for Additive Manufacturing Process of Metals
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Keyhole threshold and morphology in laser melting revealed by ultrahigh-speed x-ray imaging
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Physics-informed neural networks: A deep learning framework for solving forward and inverse problems involving nonlinear partial differential equations
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Exploring the 3D architectures of deep material network in data-driven multiscale mechanics
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Turbocharger turbine and exhaust manifold flow computation with the Space–Time Variational Multiscale Method and Isogeometric Analysis
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Physics-Informed CoKriging: A Gaussian-Process-Regression-Based Multifidelity Method for Data-Model Convergence
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Is it Time to Swish? Comparing Deep Learning Activation Functions Across NLP tasks
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Tire aerodynamics with actual tire geometry, road contact and tire deformation
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Computational Mechanics
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A Deep Material Network for Multiscale Topology Learning and Accelerated Nonlinear Modeling of Heterogeneous Materials
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A fully coupled finite element formulation for liquid–solid–gas thermo-fluid flow with melting and solidification
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Heat and fluid flow in additive manufacturing – Part II: Powder bed fusion of stainless steel, and titanium, nickel and aluminum base alloys
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Heat and fluid flow in additive manufacturing—Part I: Modeling of powder bed fusion
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Data-driven multi-scale multi-physics models to derive process–structure–property relationships for additive manufacturing
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Meso-scale modeling of multiple-layer fabrication process in Selective Electron Beam Melting: Inter-layer/track voids formation
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Microstructural material database for self-consistent clustering analysis of elastoplastic strain softening materials
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Physics Informed Deep Learning (Part II): Data-driven Discovery of Nonlinear Partial Differential Equations
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Physics Informed Deep Learning (Part I): Data-driven Solutions of Nonlinear Partial Differential Equations
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Building blocks for a digital twin of additive manufacturing
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Multi-physics modeling of single/multiple-track defect mechanisms in electron beam selective melting
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Real-time monitoring of laser powder bed fusion process using high-speed X-ray imaging and diffraction
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Measurement of the Melt Pool Length During Single Scan Tracks in a Commercial Laser Powder Bed Fusion Process
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A survey of deep neural network architectures and their applications
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Modulating laser intensity profile ellipticity for microstructural control during metal additive manufacturing
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Ror2 signaling regulates Golgi structure and transport through IFT20 for tumor invasiveness
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Machine learning of linear differential equations using Gaussian processes
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Why Deep Neural Networks for Function Approximation?
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An overview of gradient descent optimization algorithms
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Multi-scale modeling of electron beam melting of functionally graded materials
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Lung sound classification using cepstral-based statistical features
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Self-consistent clustering analysis: An efficient multi-scale scheme for inelastic heterogeneous materials
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3D-R2N2: A Unified Approach for Single and Multi-view 3D Object Reconstruction
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Powder Bed Models - Numercial Assessment of As-Built Quality
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Laser powder-bed fusion additive manufacturing: Physics of complex melt flow and formation mechanisms of pores, spatter, and denudation zones
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A cloud based architecture capable of perceiving and predicting multiple vessel behaviour
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Residual-based turbulence models and arbitrary Lagrangian–Eulerian framework for free surface flows
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Space–time VMS method for flow computations with slip interfaces (ST-SI)
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Special methods for aerodynamic-moment calculations from parachute FSI modeling
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Fully Connected Deep Structured Networks
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Automatic differentiation in machine learning: a survey
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Adam: A Method for Stochastic Optimization
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Space–time fluid mechanics computation of heart valve models
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Additive particle deposition and selective laser processing-a computational manufacturing framework
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Caffe: Convolutional Architecture for Fast Feature Embedding
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Aerodynamic and FSI Analysis of Wind Turbines with the ALE-VMS and ST-VMS Methods
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Engineering Analysis and Design with ALE-VMS and Space–Time Methods
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Computational engineering analysis with the new-generation space–time methods
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A direct particle-based computational framework for electrically enhanced thermo-mechanical sintering of powdered materials
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Fundamental consolidation mechanisms during selective beam melting of powders
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Residual‐based turbulence models for moving boundary flows: hierarchical application of variational multiscale method and three‐level scale separation
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Fluid–structure interaction modeling of clusters of spacecraft parachutes with modified geometric porosity
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Space–time VMS computation of wind-turbine rotor and tower aerodynamics
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Computational Fluid-Structure Interaction: Methods and Applications
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Theano: new features and speed improvements
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Fluid–structure interaction modeling of ringsail parachutes with disreefing and modified geometric porosity
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SPACE–TIME FLUID–STRUCTURE INTERACTION METHODS
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Space–Time and ALE-VMS Techniques for Patient-Specific Cardiovascular Fluid–Structure Interaction Modeling
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Computational Methods for Parachute Fluid–Structure Interactions
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Multiscale space–time fluid–structure interaction techniques
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Stabilized space–time computation of wind-turbine rotor aerodynamics
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Numerical-performance studies for the stabilized space–time computation of wind-turbine rotor aerodynamics
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Mesoscopic simulation of selective beam melting processes
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Lattice Boltzmann model for thermal free surface flows with liquid-solid phase transition
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3D simulation of wind turbine rotors at full scale. Part I: Geometry modeling and aerodynamics
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A variational multiscale stabilized formulation for the incompressible Navier–Stokes equations
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Isogeometric fluid-structure interaction: theory, algorithms, and computations
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Pattern Recognition and Machine Learning
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Data Mining: Concepts and Techniques
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Artificial neural networks for solving ordinary and partial differential equations
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Mechanism of alloying element vaporization during laser welding
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GMRES: a generalized minimal residual algorithm for solving nonsymmetric linear systems
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Alloying element vaporization and weld pool temperature during laser welding of AlSl 202 stainless steel
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In-situ full-field mapping of melt flow dynamics in laser metal additive manufacturing
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Numerical methods and high performance computing for modeling metallic additive manufacturing processes at multiple scales
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Data-Driven Self-consistent Clustering Analysis of Heterogeneous Materials with Crystal Plasticity
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Recent Advances in ALE-VMS and ST-VMS Computational Aerodynamic and FSI Analysis of Wind Turbines
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Mesoscale modelling of selective laser melting: Thermal fluid dynamics and microstructural evolution
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Modeling of Powder Bed Manufacturing Defects
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Ale3d: An arbitrary lagrangian-eulerian multi-physics code, Tech. rep.
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2016) Tensorflow: a system for large-scale machine learning. In: 12th {USENIX} symposium on operating systems design and implementation ({OSDI
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Solidification: revised & expanded
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Multiphysics modeling and simulation of selective laser sintering manufacturing processes
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Space–time VMS computation of wind-turbine rotor and tower aerodynamics
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Rectifier Nonlinearities Improve Neural Network Acoustic Models
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2013)Analysis of different activation functions using back propagation neural networks
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Recurrent neural network based language model
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2010)Recurrent neural network based language model. In: Eleventh annual conference of the international speech communication association
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Face recognition: a convolutional neural-network approach
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ERAL SOURCE-BASED METHOD FOR SOLIDIFICATION PHASE CHANGE
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Stabilized Finite Element Formulations for Incompressible Flow Computations
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This Paper Is Included in the Proceedings of the 12th Usenix Symposium on Operating Systems Design and Implementation (osdi '16). Tensorflow: a System for Large-scale Machine Learning Tensorflow: a System for Large-scale Machine Learning
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Publisher's Note Springer Nature remains neutral with regard to jurisdictional claims in published maps and institutional affiliations
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TE,Kuraishi T (2015)Multiscale STmethods for thermo-fluid analysis of a ground vehicle and its tires