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Articles 541 - 551 of 551
Full-Text Articles in Mechanical Engineering
Dynamics Of Explosion Remnants In Earth-Orbits, Joseph T. Fuss
Dynamics Of Explosion Remnants In Earth-Orbits, Joseph T. Fuss
Mechanical & Aerospace Engineering Theses & Dissertations
Explosions in space produce particles that are hazardous to space vehicles. Some of these particles are not trackable and their locations must be predicted by dynamical methods.
This investigation sheds light on three different, areas, First, ignoring perturbations, the characteristics of a three dimensional envelope outlined by the sum of individual particle orbits is determined, Second, the distribution of the particles is found as a function of time, Finally, the movement, of the body via secular perturbations is investigated. Magnitudes of the explosion, the point of. detonation in the parent satellite's orbit, and the radius of perigee of the parent …
Application Of Boundary Layer Theory To Suction Through Streamwise Slots In Wind Tunnel Walls, Michael Harold Berger
Application Of Boundary Layer Theory To Suction Through Streamwise Slots In Wind Tunnel Walls, Michael Harold Berger
Mechanical & Aerospace Engineering Theses & Dissertations
A theoretical investigation at Mach 6 and 8 has been conducted on a model of a wind tunnel sound shield. The flat plate model consists of interchangeable circular and wedge shaped longitudinal rods with gaps between the rods for boundary layer removal. One dimensional gas dynamics results have been applied to model the pressure distribution for the array of cylinders. Comparisons with experimental pressure distributions and numerical potential flow solutions indicate good agreement. It has been demonstrated that stagnation line heat transfer can be accurately predicted for laminar and-turbulent flow for circular cylinders. The flow around the wedge rods was …
An Experimental And Theoretical Study Of The Flow Phenomena Within A Vortex Sink Rate Sensor, Dashrath Khodidas Patel
An Experimental And Theoretical Study Of The Flow Phenomena Within A Vortex Sink Rate Sensor, Dashrath Khodidas Patel
Mechanical & Aerospace Engineering Theses & Dissertations
The objective of this investigation was to obtain a detailed description of the flow field within a vortex sink rate sensor and to observe the influence of viscous effects on its performance.
The sensor basically consists of a vortex chamber and a sink tube. The vortex chamber consists of two circular coaxial disks held apart, at their periphery, by a porous coupling. One circular disk has an opening to permit the mounting of the sink tube, in such a manner that the vortex chamber as well as the sink tube have a common axis of rotation.
Air was supplied radially …
A Finite Element Analysis Of Unsymmetrically Laminated Rectangular Plates, Stanley F. C. Tseng
A Finite Element Analysis Of Unsymmetrically Laminated Rectangular Plates, Stanley F. C. Tseng
Mechanical & Aerospace Engineering Theses & Dissertations
The behavior of laminated plates with coupled extension-bending was investigated using the finite element method. A stiffness matrix for a rectangular element with 20 degrees of freedom was developed using a symbolic mathematics interpreter program. A finite element analysis program was written for the analysis of flat plate. Results i for plate deformations and internal moment distributions are compared with existing exact solutions or experimental data and excellent agreement is obtained.
The Design And Performance Of A Fiber Optic Pressure Transducer, Raymond Henry Pahler Jr.
The Design And Performance Of A Fiber Optic Pressure Transducer, Raymond Henry Pahler Jr.
Mechanical & Aerospace Engineering Theses & Dissertations
Design and performance characteristics of a fiber optic pressure transducer are presented and discussed. The transducer consists of a cylindrical metal housing with a specular reflecting aluminum diaphragm at the distal end and a circular array of fiber optic light guides at the proximal end. The center bundle is connected to a light source with the surrounding bundles carrying reflected light to a photodetector. A change in pressure on the diaphragm causes a deflection which in turn causes a change in intensity over the light receiving fibers. The intensity is converted to a voltage signal by the photodetector circuit. Thus, …
Computer-Aided Design Of Light Aircraft To Meet Certain Aerodynamic And Structural Requirements, Joanne Lynn Walsh
Computer-Aided Design Of Light Aircraft To Meet Certain Aerodynamic And Structural Requirements, Joanne Lynn Walsh
Mechanical & Aerospace Engineering Theses & Dissertations
Nonlinear mathematical programming techniques are applied to a particular aircraft design problem, that of determining the maximum range design for light aircraft subject to certain aerodynamic and structural requirements. Search techniques available in an existing nonlinear optimization computer program, AESOP, are applied to the design problem. Seven design variables are used to define the wing dimensions, the wing skin thickness, the cruise velocity, the amount of fuel carried, and the engine horsepower. The influence of different design requirements on the range is observed and discussed.
An Investigation Of A Free Jet At Low Reynolds Numbers, George C. Greene
An Investigation Of A Free Jet At Low Reynolds Numbers, George C. Greene
Mechanical & Aerospace Engineering Theses & Dissertations
This thesis presents a comparison of the measured and calculated flow field properties of a nozzle of unusual design which was used to produce an incompressible, low Reynolds number ]et. The "nozzle" is essentially a porous metal plate which covers the end. of a pipe. Results are presented for nozzle Reynolds numbers from 50 to 1000 with velocities of 100 or 200 ft/sec. The nozzle produces s, uniform velocity profile at nozzle Reynolds numbers well below those at, which conventional contoured nozzles are completely filled with the boundary layer. A Jet mixing analysis based on the boundary layer equations accurately …
Numerical Study Of The Turbulent Boundary Layer In A Hypersonic Nozzle, Joan Patricia Gosink
Numerical Study Of The Turbulent Boundary Layer In A Hypersonic Nozzle, Joan Patricia Gosink
Mechanical & Aerospace Engineering Theses & Dissertations
A numerical study of the turbulent boundary layer in a hypersonic nozzle is presented. The boundary layer equations are solved by a second order, implicit finite difference scheme developed at Langley Research Center. The technique is applicable to laminar, transitional or turbulent compressible or incompressible boundary layer flows for planar or axisymmetric geometries. A technique is presented for utilizing experimental data to start the finite difference solution.
Turbulent boundary-layer measurements on axisymmetric nozzle walls at Mach number 6 are presented and compared with numerical predictions obtained by starting the solution in the stagnation chamber and from a downstream experimental station. …
A Theoretical And Experimental Study Of An Unsteady Pressure Measuring System, Ramesh R. Batki
A Theoretical And Experimental Study Of An Unsteady Pressure Measuring System, Ramesh R. Batki
Mechanical & Aerospace Engineering Theses & Dissertations
Experiments were performed to determine the frequency response of gas filled instrument tubes, and the results were correlated with a theoretical model. The theoretical model developed by Bergh and Tijdeman for a series connection of thin circular tubes and volumes was studied in full detail and employed. A measuring system was designed and built to measure pressure ratio and phase lag employing thin nylon or vinyl tubes and strain gage transducers. 1'leasurements were performed using cathode ray tube, strip chart, analog techniques and also a commercial electronic function analyzer and the various results were compared. The theoretical and experimental influence …
An Experimental Investigation Of The Vortex Sink Rate Sensors, Nelson L. Lu
An Experimental Investigation Of The Vortex Sink Rate Sensors, Nelson L. Lu
Mechanical & Aerospace Engineering Theses & Dissertations
The vortex sink rate sensor device consists basically of an ideal sink flow between two coaxial disks. A sink tube was located at the center of one disk. The vortex was created by the rotation of the unit about its axis of symmetry. Five inch and 10 inch diameter of porous couplers were used for the air chamber here in this investigation. Several slenderness parameters, i.e., the ratio of the sink tube diameter to the height of the air chamber ro/n were conducted. Two probes were used to measure the static pressure and stagnation pressure respectively at various positions …
A Numerical Solution To The Problem Of Rotation Near The Ground, David D. Chen
A Numerical Solution To The Problem Of Rotation Near The Ground, David D. Chen
Mechanical & Aerospace Engineering Theses & Dissertations
No abstract.