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Articles 31 - 60 of 368
Full-Text Articles in Aerospace Engineering
A Comparison Of Pulsed And Steady-State Reactor Operation For A Fusion Rocket, Althea Wilson
A Comparison Of Pulsed And Steady-State Reactor Operation For A Fusion Rocket, Althea Wilson
Von Braun Symposium Student Posters
No abstract provided.
File Sensor Optimization, Josiah Thomas
File Sensor Optimization, Josiah Thomas
Von Braun Symposium Student Posters
No abstract provided.
Projected Velocity And Efficiency Trends For A Pulsed Fusion Magnetic Nozzle, Lloyd M. Jackson
Projected Velocity And Efficiency Trends For A Pulsed Fusion Magnetic Nozzle, Lloyd M. Jackson
Von Braun Symposium Student Posters
No abstract provided.
Hüpla Vlf Lightning Detector: Hopes, Dreams, & Duct Tape, K Coates, D Everding, N Kaifler, P Kühl, R Puestow
Hüpla Vlf Lightning Detector: Hopes, Dreams, & Duct Tape, K Coates, D Everding, N Kaifler, P Kühl, R Puestow
Von Braun Symposium Student Posters
No abstract provided.
Firefly--Fusion-Powered Interstellar Rendezvous And Exploratory Flying Laboratory, Mitchell Rodriguez
Firefly--Fusion-Powered Interstellar Rendezvous And Exploratory Flying Laboratory, Mitchell Rodriguez
Von Braun Symposium Student Posters
No abstract provided.
Rapid Settlement Architecture“Pebble Station”, Joshua M. Brock
Rapid Settlement Architecture“Pebble Station”, Joshua M. Brock
Von Braun Symposium Student Posters
No abstract provided.
Balloonsat As A Platform For Deploying The Neutron Counter, Mark Becnel
Balloonsat As A Platform For Deploying The Neutron Counter, Mark Becnel
Von Braun Symposium Student Posters
No abstract provided.
Magnetic Field Mapping In The Plasmoid Thruster Experiment (Ptx), Coby W. Mccolgin
Magnetic Field Mapping In The Plasmoid Thruster Experiment (Ptx), Coby W. Mccolgin
Von Braun Symposium Student Posters
No abstract provided.
Libra The Airborne Launch-Pad, Lucas Schoukroun, Amandine Delahaye
Libra The Airborne Launch-Pad, Lucas Schoukroun, Amandine Delahaye
Von Braun Symposium Student Posters
No abstract provided.
Current Sheet Structures From Ace And Messenger Observations, Lorin Arnold, Gang Li
Current Sheet Structures From Ace And Messenger Observations, Lorin Arnold, Gang Li
Von Braun Symposium Student Posters
No abstract provided.
The Case For An L1 Space Station For Stellar Missions, Wade Harlow
The Case For An L1 Space Station For Stellar Missions, Wade Harlow
Von Braun Symposium Student Posters
No abstract provided.
A Probabilistic Design Analysis Approach In Reducing The Overall Risk Of A Fusion Propulsion Spacecraft, Natalie Walker
A Probabilistic Design Analysis Approach In Reducing The Overall Risk Of A Fusion Propulsion Spacecraft, Natalie Walker
Von Braun Symposium Student Posters
No abstract provided.
Student Launch Initiative: Boosted Dart Rocket, Charger Rocket Works
Student Launch Initiative: Boosted Dart Rocket, Charger Rocket Works
Von Braun Symposium Student Posters
No abstract provided.
Plasma Jet Magneto Inertial Fusion Thruster Concept, Richard Hatcher
Plasma Jet Magneto Inertial Fusion Thruster Concept, Richard Hatcher
Von Braun Symposium Student Posters
No abstract provided.
Beamed Energy For Ablative Propulsion In Near Earth Space, Grant Bergstue
Beamed Energy For Ablative Propulsion In Near Earth Space, Grant Bergstue
Von Braun Symposium Student Posters
No abstract provided.
Design And Development Of An Advanced Thermonuclear Fusion Propulsion R&D Facility At Uahuntsville, Ross J. Cortez
Design And Development Of An Advanced Thermonuclear Fusion Propulsion R&D Facility At Uahuntsville, Ross J. Cortez
Von Braun Symposium Student Posters
No abstract provided.
Direct Numerical Simulation Of Hypersonic Turbulent Boundary Layers. Part 4. Effect Of High Enthalpy, L. (Lian) Duan, M. P. Martín
Direct Numerical Simulation Of Hypersonic Turbulent Boundary Layers. Part 4. Effect Of High Enthalpy, L. (Lian) Duan, M. P. Martín
Mechanical and Aerospace Engineering Faculty Research & Creative Works
In this paper we present direct numerical simulations (DNS) of hypersonic turbulent boundary layers to study high-enthalpy effects. We study high-and low-enthalpy conditions, which are representative of those in hypersonic flight and ground-based facilities, respectively. We find that high-enthalpy boundary layers closely resemble those at low enthalpy. Many of the scaling relations for low-enthalpy flows, such as van-Driest transformation for the mean velocity, Morkovin's scaling, and the modified strong Reynolds analogy hold or can be generalized for high-enthalpy flows by removing the calorically perfect-gas assumption. We propose a generalized form of the modified Crocco relation, which relates the mean temperature …
Considerations For Numerical Modeling Of Inverted Wings In Ground Effects, Graham Doig, Tracie J. Barber
Considerations For Numerical Modeling Of Inverted Wings In Ground Effects, Graham Doig, Tracie J. Barber
Aerospace Engineering
No abstract provided.
Performance Analysis Of A Variable Conductance Heat Pipe, Herron Arreola
Performance Analysis Of A Variable Conductance Heat Pipe, Herron Arreola
Aerospace Engineering
This report examines the analysis of a donated Boeing variable conductance heat pipe with unknown performance characteristics. These characteristics were found through experimental means by utilizing 14 thermocouples attached to various locations on the heat pipe, the heaters and to the insulation. Although the maximum axial heat transport capability could not be determined due to the limited number of strip heaters available, the maximum radial heat flux capability of the heat pipe was found to be 2.46 W/in2. The experiment also revealed that increasing the input power decreased the burn out inclination angle and that using a coolant …
Constrained Hermite Tls For Mesh-Free Derivative Estimation Near And On Boundaries, Robert A. Mcdonald, Alejandro Ramos
Constrained Hermite Tls For Mesh-Free Derivative Estimation Near And On Boundaries, Robert A. Mcdonald, Alejandro Ramos
Aerospace Engineering
A Taylor series least-squares approach to estimating derivatives on scattered data is extended to include derivative observation or specification. This approach allows improved estimation of derivatives near boundaries as compared with the standard ghost node approach. It also enables a unique method of estimating derivatives in a surface using only surface data.
An Automated Test Station Design Used To Verify Aircraft Communication Protocols, Joshua Berrian
An Automated Test Station Design Used To Verify Aircraft Communication Protocols, Joshua Berrian
Master's Theses
Requirements verification is typically the costliest part of the systems engineering design process. In the commercial aircraft industry, as the software and hardware design evolves, it must be verified to conform to requirements. In addition, when new design releases are made, regression analysis must be performed which usually requires repeat testing. To streamline verification, a suite of automated verification tools is described in this document which can reduce the test effort. This test suite can be qualified to be used to verify systems at any DO-178B design assurance level. Some of the software tools are briefly described below.
There are …
Effective Approach For Estimating Turbulence-Chemistry Interaction In Hypersonic Turbulent Boundary Layers, L. (Lian) Duan, M. P. Martín
Effective Approach For Estimating Turbulence-Chemistry Interaction In Hypersonic Turbulent Boundary Layers, L. (Lian) Duan, M. P. Martín
Mechanical and Aerospace Engineering Faculty Research & Creative Works
An effective approach for estimating turbulence-chemistry interaction in hypersonic turbulent boundary layers is proposed, based on "laminar- chemistry" Reynolds-averaged Navier-Stokes mean flow solutions. The approach combines an assumed probability density function with a temperature fluctuation scaling, which provides the second moment for specifying the shape of the probability density function. As a result, the effects of temperature fluctuation on chemical production rates can be estimated without solving an additional moment evolution equation. The validity of this method is demonstrated using direct-numerical-simulation data. This approach can be used to identify regions with potentially significant turbulence-chemistry interaction in hypersonic boundary layers and …
A Multi-Regulator Sliding Mode Control Strategy For Output-Constrained Systems, Hanz Richter
A Multi-Regulator Sliding Mode Control Strategy For Output-Constrained Systems, Hanz Richter
Mechanical Engineering Faculty Publications
This paper proposes a multi-regulator control scheme for single-input systems, where the setpoint of a regulated output must be changed under the constraint that a set of minimum-phase outputs remain within prescribed bounds. The strategy is based on a max–min selector system frequently used in the aerospace field. The regulators used for the regulated and limited outputs are of the sliding mode type, where the sliding variable is defined as the difference between an output and its allowable limit. The paper establishes overall asymptotic stability, as well as invariance properties leading to limit protection. The design methodology is illustrated with …
State Of The Art Of Piloted Electric Airplanes, Nasa's Centennial Challenge Data And Fundamental Design Implications, Lori Anne Costello
State Of The Art Of Piloted Electric Airplanes, Nasa's Centennial Challenge Data And Fundamental Design Implications, Lori Anne Costello
Doctoral Dissertations and Master's Theses
The purpose of this study was to determine the current state of the electric airplane as primarily defined by results from NASA's Green Flight Challenge Competition. New equations must be derived in order to determine the endurance and range for electric airplanes since the standard equations depend upon weight change over a flight and the weight of an electric airplane does not change. These new equations could then be solved for the optimal velocity and altitude which were the two driving factors that could change range and endurance for a given airplane configuration. The best velocity for range and endurance …
Experimental Investigation And Cfd Simulation Of Active Damping Mechanism For Propellant Slosh In Spacecraft Launch Systems, Dhawal Leuva
Experimental Investigation And Cfd Simulation Of Active Damping Mechanism For Propellant Slosh In Spacecraft Launch Systems, Dhawal Leuva
Doctoral Dissertations and Master's Theses
Motion of propellant in the liquid propellant tanks due to inertial forces transferred from actions like stage separation and trajectory correction of the launch vehicle is known as propellant slosh. If unchecked, propellant slosh can reach resonance and lead to complete loss of the spacecraft stability, it can change the trajectory of the vehicle or increase consumption of propellant from the calculated requirements, thereby causing starvation of the latter stages of the vehicle. Predicting the magnitude of such slosh events is not trivial. Several passive mechanisms with limited operating range are currently used to mitigate the effects of slosh. An …
Innovative Double Bypass Engine For Increased Performance, Sanjivan Manoharan
Innovative Double Bypass Engine For Increased Performance, Sanjivan Manoharan
Doctoral Dissertations and Master's Theses
Engines continue to grow in size to meet the current thrust requirements of the civil aerospace industry. Large engines pose significant transportation problems and require them to be split in order to be shipped. Thus, large amounts of time have been spent in researching methods to increase thrust capabilities while maintaining a reasonable engine size. Unfortunately, much of this research has been focused on increasing the performance and efficiencies of individual components while limited research has been done on innovative engine configurations. This thesis focuses on an innovative engine configuration, the High Double Bypass Engine, aimed at increasing fuel efficiency …
The Propulsive Design Aspects On The World’S First Direct Drive Hybrid Airplane, Ankit Nanda
The Propulsive Design Aspects On The World’S First Direct Drive Hybrid Airplane, Ankit Nanda
Doctoral Dissertations and Master's Theses
The purpose of this thesis is to design a safe technology demonstrator by implementing a direct drive propulsion system for a gas-electric hybrid aircraft. This system was integrated on the Embry-Riddle Eco-Eagle for the Green Flight Challenge 2011. The aim of the system is to allow the pilot to use the electric motor as an independent power source to fly the aircraft once at cruise altitude, while having a gas engine to allow for higher power capability.
The system was designed to incorporate the motor and the motor control unit provided by Flight Design and Drivetek AG alongside a Rotax …
Integration Of Unmanned Aerial Systems In Class E Airspace: The Effect On Air Traffic Controller Workload, Jeeja S. Vengal
Integration Of Unmanned Aerial Systems In Class E Airspace: The Effect On Air Traffic Controller Workload, Jeeja S. Vengal
Doctoral Dissertations and Master's Theses
As technology rapidly advances and our imagination is no longer fantasy but instead reality, the aviation community needs to concentrate on the harsh truth of airspace safety. In the situation of integrating unmanned aerial systems (UASs) into the National airspace, UASs outside of terminal areas would generally be permitted to fly their preferred routes, and self-separate, with minimal intervention from air traffic control. From an air traffic control perspective, the integration could raise a number of human performance problems including workload extremes and passive-monitoring demands. One fundamental requirement for operation in the National Air Space is to preserve the safety …
Development Of A Higher-Order Navier-Stokes Solver For Transient Compressible Flows, Arjun Vijayanarayanan
Development Of A Higher-Order Navier-Stokes Solver For Transient Compressible Flows, Arjun Vijayanarayanan
Doctoral Dissertations and Master's Theses
A higher‐order density based Navier‐Stokes solver was developed for 2‐Dimensional flows using the finite volume approach. The Van leer flux‐splitting technique was used to calculate the fluxes. The second‐order spatial accuracy was achieved using the variable extrapolation method developed by Van leer called the Montone Upstream Centered Scheme for Conservation Laws (MUSCL) approach. The code development was done using Matlab. The code was verified using two validation cases. Firstly, subsonic, transonic, and supersonic flows over the 2‐D bump were simulated, and the results of the code were compared to the results from Fluent. Secondly, the shock‐tube problem was chosen, and …
Numerical Analysis Of Gun Barrel Pressure Blast Using Dynamic Mesh Adaption, Sathish Xavier
Numerical Analysis Of Gun Barrel Pressure Blast Using Dynamic Mesh Adaption, Sathish Xavier
Doctoral Dissertations and Master's Theses
A Computational Fluid Dynamics (CFD) method has been applied to simulate the pressure blast of the projectile which is launched from a barrel and to investigate the pressure distribution and sound pressure level (dB) along different positions away from the gun axis and towards the fuselage of the aircraft. Fluent was employed to simulate the unsteady flow using dynamic mesh with moving boundary. Most CFD based ballistics-model requires additional thermodynamic functions which must be derived from the Noble-Abel equation of state. The unsteady, axisymmetric Navier Stokes equation systems were numerically solved using the Advection Upstream Splitting Method (AUSM) scheme; with …