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Combined Numerical Analysis of an Oil-free Twin Screw Compressor Using 3D CFD and 1D Multi-chamber Thermodynamic Model
The application of three-dimensional computational fluid dynamics in twin-screw compressors provides an outstanding opportunity for developers to gain an understanding of the complex internal flow phenomena occurring within the machine. Equipped with this knowledge, design parameters, such as clearances and port geometry, can be optimised, to enhance performance. However, as with all modelling, be it numerical or analytical, a high degree of certainty in the accuracy of the results is necessary.
This paper presents the results of a study of oil-free twin screw compressor in which the results of two modelling techniques are compared. The modelling techniques used are an analytical non-dimensional thermodynamic chamber model and a numerical computational fluid dynamic model. The paper presents an overview of an oil-free twin screw compressor machine, before describing important operating characteristics and the modelling techniques used. To validate, both models are compared against historical test data, this validation indicated the chamber model is more accurate. Following this, the focus will be on the comparison of key performance indicators, including, volume flow rate, volumetric efficiency, indicated power, and discharge temperature at varying duty points. The paper concludes that the difference between both models decreases as the compressor operating speed increases, although the level of variance is dependent on pressure ratio
A portable battery for objective, non-obstrusive measures of human performances
The need for a standardized battery of human performance tests to measure the effects of various treatments is pointed out. Progress in such a program is reported. Three batteries are available which differ in length and the number of tests in the battery. All tests are implemented on a portable, lap held, briefcase size microprocessor. Performances measured include: information processing, memory, visual perception, reasoning, and motor skills, programs to determine norms, reliabilities, stabilities, factor structure of tests, comparisons with marker tests, apparatus suitability. Rationale for the battery is provided
Detecting flat normal cones using Segre classes
Given a flat, projective morphism from an equidimensional scheme to
a nonsingular curve and a subscheme of , we give conditions under which
specialization of the Segre class of the normal cone of in
implies flatness of the normal cone. We apply this result to study when the
relative tangent star cone of a flat family is flat.Comment: LaTeX, 11 pages, no figure
Tangential Quantum Cohomology of Arbitrary Order
J. Kock has previously defined a tangency quantum product on formal power
series with coefficients in the cohomology ring of any smooth projective
variety, and thus a ring that generalizes the quantum cohomology ring. We
further generalize Kock's construction by defining a dth-order contact product
and establishing its associativity.Comment: 18 pages, LaTeX. We correct our paper to work in the correct context,
viz., using numerical equivalence (rather than rational equivalence) and
explicitly mentioning the Novikov rin
Motion Sickness Symptomatology of Labyrinthine Defective and Normal Subjects During Zero Gravity Maneuvers
Motion sickness symptomology of labyrinthine defective and normal human subjects during zero gravity maneuver
Inclusion of transverse shear deformation in the exact buckling and vibration analysis of composite plate assemblies
The problem considered is the development of the necessary plate stiffnesses for use in the general purpose program VICONOPT for buckling and vibration of composite plate assemblies. The required stiffnesses include the effects of transverse shear deformation and are for sinusoidal response along the plate length as required in VICONOPT. The method is based on the exact solution of the plate differential equations for a composite laminate having fully populated A, B, and D stiffness matrices which leads to an ordinary differential equation of tenth order
Motion sickness precipitated in the weightless phase of parabolic flight by Coriolis accelerations
Human motion sickness susceptibility when exposed to Coriolis accelerations during parabolic flight weightlessnes
The Dial Test - A standardized procedure for the experimental production of canal sickness symptomatology in a rotating environment
Experimental reproduction of semicircular canal sickness symptomology in rotating environment - coriolis effect - aerospace medicin
Recent advances in superconducting-mixer simulations
Over the last few years, considerable progress have been made in the development of techniques for fabricating high-quality superconducting circuits, and this success, together with major advances in the theoretical understanding of quantum detection and mixing at millimeter and submillimeter wavelengths, has made the development of CAD techniques for superconducting nonlinear circuits an important new enterprise. For example, arrays of quasioptical mixers are now being manufactured, where the antennas, matching networks, filters and superconducting tunnel junctions are all fabricated by depositing niobium and a variety of oxides on a single quartz substrate. There are no adjustable tuning elements on these integrated circuits, and therefore, one must be able to predict their electrical behavior precisely. This requirement, together with a general interest in the generic behavior of devices such as direct detectors and harmonic mixers, has lead us to develop a range of CAD tools for simulating the large-signal, small-signal, and noise behavior of superconducting tunnel junction circuits
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