Search results for "Euler"

showing 10 items of 159 documents

Modelling wet-air oxidation of phenol in a trickle-bed reactor using active carbon as a catalyst

2016

catalytic phenol wet oxidation;active carbon as catalyst;trickle-bed reactors;Euler–Euler model;multiphase flow (CFD);plug flow modelJournal of Chemical Technology and Biotechnology
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Mikrojärjestelmien virtausdynamiikka numeerisen mallintamisen näkökulmasta

2005

elektroforeesiMEMSelektro-osmoosijatkuvuusteoriaNavier-Stokes yhtälötsähködynamiikkaFemLabmikrovirtausmallinnuselektrokinetiikkadi-elektroforeesiEulerin yhtälötmikrojärjestelmätäärellisten elementtien menetelmä
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The Euler characteristics of $mathcal H_g,n$

2007

In this short note, we compute the orbifold and the ordinary Euler characteristic of Hg,n, the moduli space of pointed hyper- elliptic curves. As a by-product, we obtain an identity involving hypergeometric functions.

euler characteristic hyperelliptic curveSettore MAT/03 - Geometria
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A formula for the Euler characteristic of $\overline{{\cal M}}_{2,n}$

2001

In this paper we compute the generating function for the Euler characteristic of the Deligne-Mumford compactification of the moduli space of smooth n-pointed genus 2 curves. The proof relies on quite elementary methods, such as the enumeration of the graphs involved in a suitable stratification of \(\overline{{\cal M}}_{2,n}\).

euler characteristicOverlineGeneral MathematicsMathematical analysisStratification (mathematics)Moduli spaceCombinatoricssymbols.namesakeMathematics::Algebraic GeometryEuler characteristicsymbolsEnumerationSettore MAT/03 - GeometriaCompactification (mathematics)MathematicsMathematische Zeitschrift
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Euler Characteristics of Moduli Spaces of Curves

2005

Let ${mathcal M}_g^n$ be the moduli space of n-pointed Riemann surfaces of genus g. Denote by ${\bar {\mathcal M}}_g^n$ the Deligne-Mumford compactification of ${mathcal M}_g^n$. In the present paper, we calculate the orbifold and the ordinary Euler characteristic of ${\bar {\mathcal M}}_g^n$ for any g and n such that n>2-2g.

euler characteristicPure mathematicsModular equationApplied MathematicsGeneral MathematicsRiemann surfaceMathematical analysisModuli spaceModuli of algebraic curvesRiemann–Hurwitz formulasymbols.namesakeMathematics - Algebraic GeometryMathematics::Algebraic GeometryEuler characteristicGenus (mathematics)symbolsFOS: Mathematicsmoduli spaceAlgebraic Topology (math.AT)Compactification (mathematics)Settore MAT/03 - GeometriaMathematics - Algebraic TopologyAlgebraic Geometry (math.AG)Mathematics
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Stochastic response of fractional visco-elastic beams

2012

fractional calculus stochastic analysis beamViscoelasticity Fractional Calculus Fractional Kelvin-Voigt model Euler- Bernoulli beam Eigenfunction Frequency analysis
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An unbounded family of log Calabi–Yau pairs

2016

We give an explicit example of log Calabi-Yau pairs that are log canonical and have a linearly decreasing Euler characteristic. This is constructed in terms of a degree two covering of a sequence of blow ups of three dimensional projective bundles over the Segre-Hirzebruch surfaces ${\mathbb F}_n$ for every positive integer $n$ big enough.

geography of threefoldSequenceDegree (graph theory)Projective bundleGeneral Mathematics14J30 14J32 14J60CombinatoricsMathematics - Algebraic Geometrysymbols.namesakeMathematics::Algebraic Geometryprojective bundlesIntegerEuler characteristicLog Calabi-Yau pairFOS: MathematicssymbolsCalabi–Yau manifoldSettore MAT/03 - GeometriaAlgebraic Geometry (math.AG)Mathematics::Symplectic GeometryMAT/03 - GEOMETRIAMathematicsRendiconti Lincei - Matematica e Applicazioni
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Embeddings of graph braid and surface groups in right-angled Artin groups and braid groups

2003

We prove by explicit construction that graph braid groups and most surface groups can be embedded in a natural way in right-angled Artin groups, and we point out some consequences of these embedding results. We also show that every right-angled Artin group can be embedded in a pure surface braid group. On the other hand, by generalising to right-angled Artin groups a result of Lyndon for free groups, we show that the Euler characteristic -1 surface group (given by the relation x^2y^2=z^2) never embeds in a right-angled Artin group.

graph groupBraid group20F36Group Theory (math.GR)Graphright-angled Artin groupCombinatorics20F36 05C25 05C25symbols.namesakeMathematics::Group Theory05C25Euler characteristicFOS: MathematicssymbolsBraidEmbeddingArtin groupGeometry and Topologygraph braid groupMathematics - Group Theoryconfiguration spacecubed complexMathematics
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Optimal Heating of an Indoor Swimming Pool

2020

This work presents the derivation of a model for the heating process of the air of a glass dome, where an indoor swimming pool is located in the bottom of the dome. The problem can be reduced from a three dimensional to a two dimensional one. The main goal is the formulation of a proper optimization problem for computing the optimal heating of the air after a given time. For that, the model of the heating process as a partial differential equation is formulated as well as the optimization problem subject to the time-dependent partial differential equation. This yields the optimal heating of the air under the glass dome such that the desired temperature distribution is attained after a given…

implicit Euler methodWork (thermodynamics)Optimization problemfinite element methodlämmitysjärjestelmät010103 numerical & computational mathematics01 natural sciences010305 fluids & plasmasDome (geology)0103 physical sciencesprojected gradient method0101 mathematicsMathematicsosittaisdifferentiaaliyhtälötPartial differential equationheat equationNumerical analysisProcess (computing)Mechanicsmatemaattinen optimointiOptimal controlelementtimenetelmäsovellettu matematiikkaPDE-constrained optimizationnumeerinen analyysicontrol constraintsmatemaattiset mallitGradient method
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A Marching in Space and Time (MAST) solver of the shallow water equations. Part I: The 1D model

2007

A new approach is presented for the numerical solution of the complete 1D Saint-Venant equations. At each time step, the governing system of Partial Differential Equations (PDEs) is split, using a fractional time step methodology, into a convective prediction system and a diffusive correction system. Convective prediction system is further split into a convective prediction and a convective correction system, according to a specified approximated potential. If a scalar exact potential of the flow field exists, correction vanishes and the solution of the convective correction system is the same solution of the prediction system. Both convective prediction and correction systems are shown to …

irrotational flownumerical methodflow routingfractional time-step methodEulerian methodunsteady flowWater Science and Technology
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