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Publication of BE781354ApublicationCriticalpatent/BE781354A/xx
F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
F16K—VALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
F16K21/00—Fluid-delivery valves, e.g. self-closing valves
F16K21/04—Self-closing valves, i.e. closing automatically after operation
F16K21/06—Self-closing valves, i.e. closing automatically after operation in which the closing movement, either retarded or not, starts immediately after opening
F16K21/10—Self-closing valves, i.e. closing automatically after operation in which the closing movement, either retarded or not, starts immediately after opening with hydraulic brake cylinder acting on the closure member
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Engineering & Computer Science
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General Engineering & Computer Science
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Mechanical Engineering
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Lift Valve
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Nozzles
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Nonmetallic Welding Materials
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Soil Working Implements
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BE781354A1971-03-301972-03-29Robinet a fluxmetre avec bec de debit inclus dans le poussoir de manoeuvre
BE781354A
(fr)
Methods of determining the critical flow rate of single-phase and two-phase single-component flows(Critical flow rate of two phase single component flow in channel, considering annular model with slip factor and showing thermodynamical inconsistency)
Effect of friction forces on the stability of a pipe containing a moving fluid(Clamping conditions effect on critical flow rate of fluid moving through pipe, taking into account direction and friction forces on stability)
Development of the flow of a viscous liquid with anisotropic conductivity in a channel(Flow of viscous liquid with anisotropic conductivity in channel)
The variation in turbulence energy in transient flow(Turbulent energy variations in unsteadily moving flow with structural shift, emphasizing formation of vortices with various inertia scales)
Variations in the concentration of a dispersed material along the length of a two-phase flow(Dispersed material concentration at various cross sections of ascending two-phase gas flow)
Employing the karman method for calculating a turbulent boundary layer on a plate in a gas flow(Use of karman theory for calculating turbulent boundary layer on flat plate)