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  • 1
    Publication Date: 2016-06-07
    Description: A method is presented for determining the dynamic coefficients of bearing oil film. By varying the support stiffness and damping, eight dynamic coefficients of the bearing were determined. Simple and easy to apply, the method can be used in solving practical machine problems.
    Keywords: MECHANICAL ENGINEERING
    Type: NASA. Lewis Research center Instability in Rotating Machinery; p 245-251
    Format: application/pdf
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  • 2
    Publication Date: 2019-07-13
    Description: The marker-and-cell numerical technique was applied to the study of axisymmetric and two-dimensional flow of liquid in containers under low gravity conditions. The purpose of the study was to provide the capability for numerically simulating liquid propellant motion in partially filled containers during a docking maneuver in orbit. A computer program to provide this capability for axisymmetric and two-dimensional flow was completed and computations were made for a number of hypothetical flow conditions.
    Keywords: FLUID MECHANICS
    Type: NASA-CR-124055 , HREC-5712-2 , LMSC/HREC-D225632
    Format: application/pdf
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  • 3
    Publication Date: 2019-06-27
    Description: Computer program for calculating propellant dynamics in two dimensional and axisymmetric tanks during spacecraft docking
    Keywords: PROPELLANTS
    Type: NASA-CR-119904 , HREC-5712-1 , LMSC/HREC-D225157
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  • 4
    Publication Date: 2019-06-27
    Description: A method and an associated digital computer program for evaluating the vibrational characteristics of large liquid-filled rigid wall tanks of general shape are presented. A solution procedure was developed in which slosh modes and frequencies are computed for systems mathematically modeled as assemblages of liquid finite elements. To retain sparsity in the assembled system mass and stiffness matrices, a compressible liquid element formulation was incorporated in the program. The approach taken in the liquid finite element formulation is compatible with triangular and quadrilateral structural finite elements so that the analysis of liquid motion can be coupled with flexible tank wall motion at some future time. The liquid element repertoire developed during the course of this study consists of a two-dimensional triangular element and a three-dimensional tetrahedral element.
    Keywords: PROPELLANTS
    Type: NASA-CR-124070 , LMSC/HREC-D225823 , HREC-7012-1
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  • 5
    Publication Date: 2019-06-27
    Description: Vibrational characteristics of large liquid propellant space vehicle
    Keywords: STRUCTURAL MECHANICS
    Type: NASA-CR-108972 , HREC-1485-1 , LMSC/HREC-D148988
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  • 6
    Publication Date: 2019-06-27
    Description: Flight simulation model for combined bending and slosh modes of Saturn 5 launch vehicles
    Keywords: SPACE VEHICLES
    Type: NASA-CR-102487 , HREC-1485-2 , LMSC/HREC-D149410
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  • 7
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    In:  Other Sources
    Publication Date: 2019-07-13
    Description: The marker-and-cell method has been extended to simulate the flow and velocity fields of a moving liquid in an axisymmetric container. Dynamic loads induced by the moving liquid are calculated from the pressure distribution along the container wall as functions of time. Using viscosity and equivalent gravitational acceleration as parameters, several cases of the transient flow of a liquid in a container are studied. Subsequently, a three-dimensional marker-and-cell formulation is obtained and a numerical scheme to implement the formulation is developed. The resulting computer program is used to simulate the three-dimensional flow of a liquid in a rectangular container. The study shows that dynamic loads induced by a moving liquid can be computed numerically.
    Keywords: STRUCTURAL MECHANICS
    Type: AIAA PAPER 73-409 , Structures, Structural Dynamics, and Materials Conference; Mar 20, 1973 - Mar 22, 1973; Williamsburg, VA; US
    Format: text
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  • 8
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    In:  Other Sources
    Publication Date: 2019-07-13
    Description: A fluid finite element has been developed for a quasi-compressible fluid. Both kinetic and potential energy are expressed as functions of nodal displacements. Thus, the formulation is similar to that used for structural elements, with the only differences being that the fluid can possess gravitational potential, and the constitutive equations for fluid contain no shear coefficients. Using this approach, structural and fluid elements can be used interchangeably in existing efficient sparse-matrix structural computer programs such as SPAR. The theoretical development of the element formulations and the relationships of the local and global coordinates are shown. Solutions of fluid slosh, liquid compressibility, and coupled fluid-shell oscillation problems which were completed using a temporary digital computer program are shown. The frequency correlation of the solutions with classical theory is excellent.
    Keywords: FLUID MECHANICS
    Type: AIAA PAPER 74-102 , Aerospace Sciences Meeting; Jan 30, 1974 - Feb 01, 1974; Washington, DC
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  • 9
    Publication Date: 2019-08-15
    Description: With the development of new advanced instruments for remote sensing applications, sensor data will be generated at a rate that not only requires increased onboard processing and storage capability, but imposes demands on the space to ground communication link and ground data management-communication system. Data compression and error control codes provide viable means to alleviate these demands. Two types of data compression have been studied by many researchers in the area of information theory: a lossless technique that guarantees full reconstruction of the data, and a lossy technique which generally gives higher data compaction ratio but incurs some distortion in the reconstructed data. To satisfy the many science disciplines which NASA supports, lossless data compression becomes a primary focus for the technology development. While transmitting the data obtained by any lossless data compression, it is very important to use some error-control code. For a long time, convolutional codes have been widely used in satellite telecommunications. To more efficiently transform the data obtained by the Rice algorithm, it is required to meet the a posteriori probability (APP) for each decoded bit. A relevant algorithm for this purpose has been proposed which minimizes the bit error probability in the decoding linear block and convolutional codes and meets the APP for each decoded bit. However, recent results on iterative decoding of 'Turbo codes', turn conventional wisdom on its head and suggest fundamentally new techniques. During the past several months of this research, the following approaches have been developed: (1) a new lossless data compression algorithm, which is much better than the extended Rice algorithm for various types of sensor data, (2) a new approach to determine the generalized Hamming weights of the algebraic-geometric codes defined by a large class of curves in high-dimensional spaces, (3) some efficient improved geometric Goppa codes for disk memory systems and high-speed mass memory systems, and (4) a tree based approach for data compression using dynamic programming.
    Keywords: Earth Resources and Remote Sensing
    Type: NASA-CR-201859 , NAS 1.26:201859
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  • 10
    Publication Date: 2022-03-21
    Type: info:eu-repo/semantics/article
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