Published December 2018 | Version v1
Journal article

A Thickened Stochastic Fields Approach for Turbulent Combustion Simulation

  • 1. University of Southampton, Faculty of Engineering and the Environment (United Kingdom)
  • 2. Imperial College London, Department of Mechanical Engineering (United Kingdom)

Description

The Stochastic Fields approach is an effective way to implement transported Probability Density Function modelling into Large Eddy Simulation of turbulent combustion. In premixed turbulent combustion however, thin flame-like structures arise in the solution of the Stochastic Fields equations that require grid spacing much finer than the filter scale used for the Large Eddy Simulation. The conventional approach of using grid spacing equal to the filter scale yields substantial numerical error, whereas using grid spacing much finer than the filter length scale is computationally-unaffordable for most industrially-relevant combustion systems. A Thickened Stochastic Fields approach is developed in this study in order to provide physically-accurate and numerically-converged solutions of the Stochastic Fields equations with reduced compute time. The Thickened Stochastic Fields formulation bridges between the conventional Stochastic Fields and conventional Thickened-Flame approaches depending on the numerical grid spacing utilised. One-dimensional Stochastic Fields simulations of freely-propagating turbulent premixed flames are used in order to obtain criteria for the thickening factor required, as a function of relevant physical and numerical parameters, and to obtain a model for an efficiency function that accounts for the loss of resolved flame surface area caused by applying the thickening transformation to the Stochastic Fields equations. The Thickened Stochastic Fields formulation is tested by performing LES of a laboratory premixed Bunsen flame. The results demonstrate that the Thickened Stochastic Fields method produces accurate predictions even when using a grid spacing equal to the filter scale. The present development therefore facilitates the accurate application of the Stochastic Fields approach to industrially-relevant combustion systems.

Additional details

Identifiers

Publishing Information

Journal Title
Flow, Turbulence and Combustion (Online)
Journal Volume
101
Journal Issue
4
Journal Page Range
p. 1119-1136
ISSN
1573-1987

Conference

Title
10. Mediterranean combustion symposium
Acronym
MCS10
Dates
17-21 Sep 2017
Place
Naples (Italy)

INIS

Country of Publication
Netherlands
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
54122645
Subject category
S71: CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS;
Resource subtype / Literary indicator
Conference
Descriptors DEI
ERRORS; FIELD EQUATIONS; FILTERS; LARGE-EDDY SIMULATION; ONE-DIMENSIONAL CALCULATIONS; PROBABILITY DENSITY FUNCTIONS; STOCHASTIC PROCESSES; SURFACE AREA
Descriptors DEC
COMPUTERIZED SIMULATION; EQUATIONS; FUNCTIONS; SIMULATION; SURFACE PROPERTIES

Optional Information

Copyright
Copyright (c) 2018 The Author(s)