Ansys Chemkin Pro v17.0 Release 15151 (x64)
RELEASE INFO:
Ansys Chemkin Pro v17.0 Release 15151 (x64) | 364 MB
ENERGICO has the proven capability predict how Particulate Matter (PM, or soot) is formed in gas turbine combustors, as well as to predict the number and size of the soot particles produced. ENERGICO’s approach supports the tracking of multiple soot precursors, the nucleation of the primary soot particle and the tracking of how a particle agglomerates and oxidizes during a combustion cycle.
CHEMKIN is the gold standard for modeling and simulating gas-phase and surface chemistry that is used for the conceptual development of combustion systems in cars, trucks, jet engines, boilers and equipment used in materials processing applications.
CHEMKIN-PRO includes core solver enhancements that cut simulation times from days to hours or hours to minutes for complex models with large mechanisms making it as much as 25 times faster than previous versions of CHEMKIN – more than an order of magnitude faster than competing codes in demanding applications.
CHEMKIN-PRO’s wide array of accurate, fast and robust kinetic models make it the most trusted kinetic simulation tool for asking “what if .” questions in the conceptual design phase. Engineers can quickly explore the impact of design variables on performance, pollutant emissions and flame extinction using large, accurate fuel models and gain the results they need to make key product development decisions.
Reaction Path Analyzer
Understand which reactions most impact your results using CHEMKIN-PRO’s Reaction Path Analyzer. This powerful capability visualizes important information about the reactions that are taking place in the simulation. Details are provided on the forward and backward reaction rates and the absolute rates of production.
This understanding allows:
Identification of dominant pathways
Determination of pathways contributing to pollutant formation
Determination of changes in pathways due to variation of operating conditions
Guiding of mechanism reduction efforts
Particle Tracking Module
Tracking particles is important in many reacting flow applications. For example, soot particle formation and emissions are critical concerns for compliance with environmental regulations. The Particle Tracking function included in CHEMKIN-PRO simulates particle inception, growth and oxidation, providing statistics on particle sizes and mass loading.
Features include:
Sectional method that directly provides the details of particle size distributions
Moment method that predicts the statistics of particle-size-distribution, such as mean particle diameter
Prediction of mass and volume fractions of particles in the particle-flow system
Initiation of particle-size tracking using a method that tracks the moments of the particle size distribution function when a dispersed condensed-phase material is encountered in the chemistry set
Nucleation reaction type that models the formation of a condensed phase dispersed in the gas flow
Ability to include nucleation from more than one particle precursor
Ability to specify surface reactions for growth or reduction of particles due to condensation, deposition, oxidation, and any other surface reaction
Flame Extinction Model
Extinction is an important phenomenon in low-emissions combustion systems using staged combustion. Many designs operate near the edge of Lean Blow Off or lean extinction and it is important to understand how a design’s combustion stability is affected by local operating conditions and fuel/air ratios. CHEMKIN-PRO’s flame-extinction model provides an automated method for determining the flame-extinction strain rate for premixed flames in an opposed-flow flame configuration. The extinction strain rate is accurately determined through use of a continuation method. The calculation can be performed within a parameter study as well, to determine extinction strain rate as a function of conditions, such as fuel-air equivalence ratio.
Multi-Zone Engine Model
Transportation manufacturers are developing new combustion technologies to meet current and upcoming emissions regulations without performance compromises. Key attributes such as ignition, flame speed, and pollutant formation are governed by detailed chemistry behavior and the conditions in the cylinder. Many commercial Computational Fluid Dynamics (CFD) programs cannot support the level of detailed chemistry required to accurately simulate these combustion performance criteria. CHEMKIN-PRO’s Multi-Zone Engine Model segments the cylinder volume into reaction zones where detailed chemistry mechanisms can be applied efficiently while maintaining an accurate representation of the cylinder geometry.
Date: 2016
Version: 17.0 Release 15151
Developer: ANSYS (Reaction Design)
Language: English
Medicine: Present (Team-SolidSQUAD)
System Requirements: Windows 64-bit .
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