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Manifolding

Another characteristic similar to A/ 100 is the Distribution Octane Number (DON) proposed by Mobil Corporation and described in ASTM 2886. The idea is to measure the heaviest fractions of the fuel at the inlet manifold to the CFR engine. For this method the CFR has a cooled separation chamber placed between the carburetor and the inlet manifold. Some of the less volatile components are separated and collected in the chamber. This procedure is probably the most realistic but less discriminating than that of the AJ 100 likewise, it is now only of historical interest. [Pg.200]

Gasoline engine equipment such as carburetors, injectors, intake manifolds, valve systems and combustion chambers, are subject to fouling by the fuel itself, the gases recycled from the crankcase, or even dust and particulates arriving with poorly filtered air. Three types of problems then result ... [Pg.243]

As the first well is being drilled the template is connected to the host facility with flowlines, umbilicals and risers. A Chemical Injection Umbilical will also typically be laid to the template or subsea facility and connected to a distribution manifold. [Pg.269]

If one or more clusters of single wells are required then an Underwater Manifold System can be deployed and used as a subsea focal point to connect each well. The subsea trees sit on the seabed around the main manifold (compared to the template). [Pg.270]

Only one set of pipelines and umbilicals (as with the template) are required from the manifold back to the host facility, saving unnecessary expense. Underwater manifolds are becoming very popular as they offer a great deal of flexibility in field development and can be very cost effective. [Pg.270]

The manifold is typically a tubular steel structure (similar to a template) which is host to a series of remotely operated valves and chokes. It is common for subsea tree control systems to be mounted on the manifold and not on the individual trees. A complex manifold will generally have its own set of dedicated subsea control modules (for controlling manifold valves and monitoring flowline sensors). [Pg.270]

Modern subsea trees, manifolds, (EH), etc., are commonly controlled via a complex Electro-Hydraulic System. Electricity is used to power the control system and to allow for communication or command signalling between surface and subsea. Signals sent back to surface will include, for example, subsea valve status and pressure/ temperature sensor outputs. Hydraulics are used to operate valves on the subsea facilities (e.g. subsea tree and manifold valves). The majority of the subsea valves are operated by hydraulically powered actuator units mounted on the valve bodies. [Pg.270]

The master control station allows the operator to open and close all the systems remotely operated valves, including tree and manifold valves and downhole safety valve. [Pg.271]

Subsea facilities are easily decommissioned as they are relatively small and easy to lift. However, subsea manifolds and templates can weigh in excess of 1,000 tons and will require heavy lift barges for removal. [Pg.371]

COLOURED PRODUCTS BOX MANIFOLD NOTCH SPECIMEN 1 NOTCH SPECIMEN 2... [Pg.624]

Maas U and Pope S B 1992 Simplifying chemical kinetics intrinsic low-dimensional manifolds in composition space Comb. Flame 88 239... [Pg.796]

Mbelonging to the complementary manifold = M, In a second time interval the superposition... [Pg.1059]

IVR in tlie example of the CH clnomophore in CHF is thus at the origin of a redistribution process which is, despite its coherent nature, of a statistical character. In CHD, the dynamics after excitation of the stretching manifold reveals a less complete redistribution process in the same time interval [97]. The reason for this is a smaller effective coupling constant between the Fenni modes of CHD (by a factor of four) when... [Pg.1072]

Figure Bl.3.4. The two fully resonant doorway stages for resonanee Raman seattering (RRS), in wlheh the manifold of vibrational sublevels for eaeh eleetronie state is indieated. (a) Doorway stage iii... Figure Bl.3.4. The two fully resonant doorway stages for resonanee Raman seattering (RRS), in wlheh the manifold of vibrational sublevels for eaeh eleetronie state is indieated. (a) Doorway stage iii...
Wliatever the deteetion teehnique, the window stage of the 4WM event must eonvert these evolved vibrational wavepaekets into the third order polarization field that oseillates at an ensemble distribution of optieal frequeneies. One must be alert to the possibility that the window event after doorway ehaimel B may involve resonanees from eleetronie state manifold e to some higher manifold, say r. Thus ehaimel B followed by an e (ket) or a (bra) event might be enlianeed by an e-to-r resonanee. However, it is nonnal to eonfine the... [Pg.1202]

Figure Bl.4.9. Top rotation-tunnelling hyperfine structure in one of the flipping inodes of (020)3 near 3 THz. The small splittings seen in the Q-branch transitions are induced by the bound-free hydrogen atom tiiimelling by the water monomers. Bottom the low-frequency torsional mode structure of the water duner spectrum, includmg a detailed comparison of theoretical calculations of the dynamics with those observed experimentally [ ]. The symbols next to the arrows depict the parallel (A k= 0) versus perpendicular (A = 1) nature of the selection rules in the pseudorotation manifold. Figure Bl.4.9. Top rotation-tunnelling hyperfine structure in one of the flipping inodes of (020)3 near 3 THz. The small splittings seen in the Q-branch transitions are induced by the bound-free hydrogen atom tiiimelling by the water monomers. Bottom the low-frequency torsional mode structure of the water duner spectrum, includmg a detailed comparison of theoretical calculations of the dynamics with those observed experimentally [ ]. The symbols next to the arrows depict the parallel (A k= 0) versus perpendicular (A = 1) nature of the selection rules in the pseudorotation manifold.
Figure Bl.12.13. MAS NMR spectra from kyanite (a) at 17.55 T along with the complete simulation and the individual components, (b) simulation of centreband lineshapes of kyanite as a fiinction of applied magnetic field, and tire satellite transitions showing (c) the complete spiimmg sideband manifold and (d) an expansion of individual sidebands and their simulation. Figure Bl.12.13. MAS NMR spectra from kyanite (a) at 17.55 T along with the complete simulation and the individual components, (b) simulation of centreband lineshapes of kyanite as a fiinction of applied magnetic field, and tire satellite transitions showing (c) the complete spiimmg sideband manifold and (d) an expansion of individual sidebands and their simulation.

See other pages where Manifolding is mentioned: [Pg.267]    [Pg.268]    [Pg.281]    [Pg.282]    [Pg.340]    [Pg.265]    [Pg.1057]    [Pg.1058]    [Pg.1058]    [Pg.1059]    [Pg.1062]    [Pg.1063]    [Pg.1063]    [Pg.1065]    [Pg.1065]    [Pg.1065]    [Pg.1067]    [Pg.1069]    [Pg.1071]    [Pg.1072]    [Pg.1073]    [Pg.1073]    [Pg.1073]    [Pg.1073]    [Pg.1075]    [Pg.1076]    [Pg.1201]    [Pg.1202]    [Pg.1256]    [Pg.1555]    [Pg.1578]    [Pg.2110]   
See also in sourсe #XX -- [ Pg.114 ]

See also in sourсe #XX -- [ Pg.114 ]

See also in sourсe #XX -- [ Pg.143 ]




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Affine manifold

Air intake manifold

Air manifolds

Analytic manifold

Analytical invariant manifold

Analytical manifold

Attractive manifold

Automotive intake manifold

Basic manifold Configurations

Beauville manifold

C2p manifold

C2s manifold

CFA manifold

Catastrophe manifold

Cationic manifold

Causal manifold

Center Manifold theorem

Center manifold

Center manifold points

Center manifold theory

Center stable manifold

Center unstable manifold

Centre manifold theorem

Centre-manifold approach

Ceramic manifolds

Channels manifold/substrate

Chemical oscillators slow manifold

Chemical reaction dynamics manifold

Choke manifold

Coat hanger design, manifolds

Coathanger manifolds

Coextrusion manifolds

Cold runner manifold

Constrained equilibrium manifold

Constraint manifold

Conventionally stable manifold

Cooling single manifold

Critical manifolds

Curved manifold

Cylindrical manifolds

Cylindrical manifolds theory

C°° manifold

Design manifold pressure

Die manifold

Dimension solution manifold

Dimensionless manifolds

Discharge manifold

Double manifold

Dynamics on Manifolds

Electron spin manifolds

Engine manifolds

Ensemble states, manifold

Equilibrium manifold

Equilibrium manifold invariant

Euclidean manifold

Excitation-manifold basis

Exhaust manifolds

Exit Manifold

Extended stable manifold

Extended unstable manifold

FIA manifold

Fastening and sealing of manifolds

Feed primary manifold

Filtration manifolds

Flamelet generated manifold

Floating manifold

Flow field design manifold

Flow manifold

Flow-injection manifolds

Frictional manifolds

Fuel manifolds

Gas manifolds

Gas-Manifold Design for a Tubular SOFC

Gate manifold

General Reaction Systems. Invariant Manifolds and A Priori Bounds

Global stable invariant manifold

Global stable manifold

Global unstable invariant manifold

Global unstable manifold

HOMO manifold

HR manifolds

Hamiltonian systems normally hyperbolic invariant manifolds

Heated-manifold mold

Homoclinic manifold

Hot manifold

Hot runner manifold

Hyperbolic manifold

Hyperbolicity normally hyperbolic invariant manifolds

INDEX manifold

Inlet Manifold

Installations for flasks and manifolds

Intake manifold

Integrability on Complex Symplectic Manifolds

Internal manifolding

Intramolecular reactions cationic manifold

Intramolecular reactions neutral manifold

Intrinsic low-dimensional manifold

Intrinsic low-dimensional manifold ILDM)

Invariant Manifolds and Extents of Reactions

Invariant center local manifold

Invariant center manifold

Invariant center stable manifold

Invariant leading manifold

Invariant manifold computation

Invariant manifolds

Invariant manifolds, chemical reaction

Irreducible linear manifolds

J-manifolds

LUMO manifold

Lagrangian manifold

Leading local manifold

Leading manifold

Level manifolds

Local center manifold

Local invariant manifold

Local stable invariant manifold

Local stable manifold

Local unstable manifold

Manifold

Manifold angle

Manifold block

Manifold cartridge heaters

Manifold channels

Manifold clamped

Manifold coil heaters

Manifold complex

Manifold design

Manifold differentiable

Manifold dimension

Manifold door

Manifold elongation

Manifold external heating

Manifold fabrication

Manifold fastening

Manifold feed systems

Manifold flow , control

Manifold flow channel

Manifold flow distribution

Manifold flow, stack

Manifold heat insulation

Manifold heat pipes

Manifold heating

Manifold heating and insulation

Manifold housings

Manifold installation

Manifold insulation

Manifold internal

Manifold internal heating

Manifold materials

Manifold mechanism

Manifold methods

Manifold milled channels

Manifold modular

Manifold multi-level

Manifold of ensemble states

Manifold plate

Manifold projection

Manifold reaction

Manifold round

Manifold scaling

Manifold seals

Manifold shape

Manifold singlet

Manifold smooth

Manifold spacer pads

Manifold split

Manifold split-and-recombination

Manifold split-and-recombination micromixer

Manifold sprue bushing

Manifold standard plate

Manifold system

Manifold temperature profile

Manifold thermal expansion

Manifold three-level

Manifold torpedo

Manifold tubular

Manifold with external heating

Manifolding---Materials of Construction

Manifolds monolith

Manifolds return

Manifolds with Loops

Manifolds with internal heating

Mass manifold

Media manifolding

Method of invariant manifold

Microfluidic manifolds

Minimize manifold pressure drop

Mobius manifold

Modelling the Manifold

Mold manifold

Multiple manifolds

N-Manifold states

NH in Electronically Excited States of the Singlet and Triplet Manifold

Neutral manifold

New method speeds pressure relief manifold

New method speeds pressure relief manifold design

Non-leading manifold

Nondegenerate manifold

Normally hyperbolic invariant manifolds

Normally hyperbolic invariant manifolds Hamiltonian dynamics

Normally hyperbolic invariant manifolds Melnikov integral

Normally hyperbolic invariant manifolds NHIM)

Normally hyperbolic invariant manifolds momentum

Normally hyperbolic invariant manifolds orbits

Normally hyperbolic invariant manifolds phase-space structure

Normally hyperbolic invariant manifolds phase-space transition states

Normally hyperbolic invariant manifolds potential

Normally hyperbolic invariant manifolds tangency

Normally hyperbolic invariant manifolds transition state theory

One Reaction. Invariant Manifolds and A Priori Bounds

Operator manifolds

Operator manifolds complete

Operator manifolds partitioning

Operator manifolds truncation

Orbital manifold

Perturbation theory hyperbolic invariant manifolds

Perturbation theory normally hyperbolic invariant manifolds

Pervaporators manifolds

Phase space systems normally hyperbolic invariant manifold

Phosphate determination manifold

Piping manifolds

Plastics intake manifolds

Protective Measures for a Vent Manifold System

Pumping manifold

Reaction-diffusion manifold

Reaction-diffusion manifold method

Reduction manifolds

Relief manifolds

Repulsive manifold

Riemann manifold

Riemannian manifold

Rovibrational manifold

Safety relief manifolds

Sampling manifold

Satellite Wells, Templates and Manifolds

Self-limiting manifold

Silicate manifold

Single-Line FIA Manifolds

Slow Manifold Methods

Slow Manifolds in the Space of Variables

Slow invariant manifold

Slow manifold

Smooth attractive invariant manifold

Smooth invariant manifold

Solid phase extraction vacuum manifold

Solution manifold

Solution manifold general

Sorption manifolds

Space linear manifold

Space-time closed manifold

Space-time curved manifold

Space-time manifold

Stability manifolds

Stable Manifold theorem

Stable invariant manifold

Stable leading manifold

Stable manifold

Stable/unstable manifolds

Stable/unstable manifolds Melnikov integral

Stable/unstable manifolds complex

Stable/unstable manifolds connections

Stable/unstable manifolds phase-space transition states

Stable/unstable manifolds transformation

Standard manifold components

Statistical and nonstatistical population of spin-orbit manifolds

Strongly stable invariant manifold

Strongly stable manifold

Strongly unstable manifold

Sub-manifolds

Subsea manifolds

Symmetry manifold

Symplectic Structure on a Manifold

Symplectic manifold

Tangential manifold

The analytical manifold

The centre manifold theorem

The main manifold or trunk line

The manifold method

Three-dimensional flow manifolds

Topological Obstacles for Analytic Integrability of Geodesic Flows on Non-Simply-Connected Manifolds

Topological manifold

Transition state theory manifolds

Triplet manifold

Two- and Multiline FIA Manifolds

Unique invariant manifold

Unstable invariant manifold

Unstable manifold

Vacuum manifold alternative

Vacuum manifold system

Vacuum manifolds

Vacuum system, design manifolding

Vacuum-inert gas manifold

Valve manifold arrangement

Valve manifolds

Valves manifold flow control using

Vibrational energy manifold

Vibronic manifolds

Volume manifold

Wave Generator of the Manifold Type

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