Pascal and Francis Bibliographic Databases

Help

Search results

Your search

au.\*:("KRAFT, Markus")

Publication Year[py]

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Discipline (document) [di]

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Author Country

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Results 1 to 25 of 39

  • Page / 2
Export

Selection :

  • and

A Monte Carlo methods for identification and sensitivity analysis of coagulation processesVIKHANSKY, Alexander; KRAFT, Markus.Journal of computational physics (Print). 2004, Vol 200, Num 1, pp 50-59, issn 0021-9991, 10 p.Article

The Suitability of Particle Models in Capturing Aggregate Structure and PolydispersityMENZ, William J; KRAFT, Markus.Aerosol science and technology (Print). 2013, Vol 47, Num 7-9, pp 734-745, issn 0278-6826, 12 p.Article

Modelling of a RDC using a combined CFD-population balance approachVIKHANSKY, Alexander; KRAFT, Markus.Chemical engineering science. 2004, Vol 59, Num 13, pp 2597-2606, issn 0009-2509, 10 p.Article

Partially stirred reactor model: Analytical solutions and numerical convergence study of a PDF/Monte Carlo methodBHAVE, Amit; KRAFT, Markus.SIAM journal on scientific computing (Print). 2004, Vol 25, Num 5, pp 1798-1823, issn 1064-8275, 26 p.Article

Two methods for sensitivity analysis of coagulation processes in population balances by a Monte Carlo methodVIKHANSKY, Alexander; KRAFT, Markus.Chemical engineering science. 2006, Vol 61, Num 15, pp 4966-4972, issn 0009-2509, 7 p.Article

Single-particle method for stochastic simulation of coagulation processesVIKHANSKY, Alexander; KRAFT, Markus.Chemical engineering science. 2005, Vol 60, Num 4, pp 963-967, issn 0009-2509, 5 p.Article

Simulation of coalescence and breakage: an assessment of two stochastic methods suitable for simulating liquid-liquid extractionGOODSON, Mike; KRAFT, Markus.Chemical engineering science. 2004, Vol 59, Num 18, pp 3865-3881, issn 0009-2509, 17 p.Article

Sooting tendency of paraffin components of diesel and gasoline in diffusion flamesBOTERO, Maria L; MOSBACH, Sebastian; KRAFT, Markus et al.Fuel (Guildford). 2014, Vol 126, pp 8-15, issn 0016-2361, 8 p.Article

A predictor-corrector algorithm for the coupling of stiff ODEs to a particle population balanceCELNIK, Matthew; PATTERSON, Robert; KRAFT, Markus et al.Journal of computational physics (Print). 2009, Vol 228, Num 8, pp 2758-2769, issn 0021-9991, 12 p.Article

REAL-TIME EVALUATION OF A DETAILED CHEMISTRY HCCI ENGINE MODEL USING A TABULATION TECHNIQUEMOSBACH, Sebastian; ALDAWOOD, Ali M; KRAFT, Markus et al.Combustion science and technology. 2008, Vol 180, Num 7-9, pp 1263-1277, issn 0010-2202, 15 p.Article

Sources of CO emissions in an HCCI engine : A numerical analysisBHAVE, Amit; KRAFT, Markus; MONTORSI, Luca et al.Combustion and flame. 2006, Vol 144, Num 3, pp 634-637, issn 0010-2180, 4 p.Article

The Inverse Problem in Granulation Modeling—Two Different Statistical ApproachesBRAUMANN, Andreas; MAN, Peter L. W; KRAFT, Markus et al.AIChE journal. 2011, Vol 57, Num 11, pp 3105-3121, issn 0001-1541, 17 p.Article

Statistical Approximation of the Inverse Problem in Multivariate Population Balance ModelingBRAUMANN, Andreas; MAN, Peter L. W; KRAFT, Markus et al.Industrial & engineering chemistry research. 2010, Vol 49, Num 1, pp 428-438, issn 0888-5885, 11 p.Article

A study on the coagulation of polycyclic aromatic hydrocarbon clusters to determine their collision efficiencyRAJ, Abhijeet; SANDER, Markus; JANARDHANAN, Vinod et al.Combustion and flame. 2010, Vol 157, Num 3, pp 523-534, issn 0010-2180, 12 p.Article

Numerical study of a stochastic particle algorithm solving a multidimensional population balance model for high shear granulationBRAUMANN, Andreas; KRAFT, Markus; WAGNER, Wolfgang et al.Journal of computational physics (Print). 2010, Vol 229, Num 20, pp 7672-7691, issn 0021-9991, 20 p.Article

Aromatic site description of soot particlesCELNIK, Matthew; RAJ, Abhijeet; WEST, Richard et al.Combustion and flame. 2008, Vol 155, Num 1-2, pp 161-180, issn 0010-2180, 20 p.Article

A survey of the potential energy surface for the (benzene)13 clusterCHAKRABARTI, Dwaipayan; TOTTON, Tim S; KRAFT, Markus et al.PCCP. Physical chemistry chemical physics (Print). 2011, Vol 13, Num 48, pp 21362-21366, issn 1463-9076, 5 p.Article

A Detailed Model for the Sintering of Polydispersed Nanoparticle AgglomeratesSANDER, Markus; WEST, Richard H; CELNIK, Matthew S et al.Aerosol science and technology (Print). 2009, Vol 43, Num 10, pp 978-989, issn 0278-6826, 12 p.Article

Numerical investigation of DQMoM-IEM as a turbulent reaction closureAKROYD, Jethro; SMITH, Alastair J; MCGLASHAN, Laurence R et al.Chemical engineering science. 2010, Vol 65, Num 6, pp 1915-1924, issn 0009-2509, 10 p.Article

Modes of neck growth in nanoparticle aggregatesMORGAN, Neal M; PATTERSON, Robert I. A; KRAFT, Markus et al.Combustion and flame. 2008, Vol 152, Num 1-2, pp 272-275, issn 0010-2180, 4 p.Article

Numerical simulation and sensitivity analysis of detailed soot particle size distribution in laminar premixed ethylene flamesSINGH, Jasdeep; PATTERSON, Robert I. A; KRAFT, Markus et al.Combustion and flame. 2006, Vol 145, Num 1-2, pp 117-127, issn 0010-2180, 11 p.Article

Theoretical insights into the surface growth of rutile TiO2SHIRLEY, Raphael; AKROYD, Jethro; MILLER, Luke A et al.Combustion and flame. 2011, Vol 158, Num 10, pp 1868-1876, issn 0010-2180, 9 p.Article

The simultaneous reduction of nitric oxide and soot in emissions from diesel enginesSANDER, Markus; RAJ, Abhijeet; INDERWILDI, Oliver et al.Carbon (New York, NY). 2009, Vol 47, Num 3, pp 866-875, issn 0008-6223, 10 p.Article

A computational study of an HCCI engine with direct injection during gas exchangeHAIYUN SU; VIKHANSKY, Alexander; MOSBACH, Sebastian et al.Combustion and flame. 2006, Vol 147, Num 1-2, pp 118-132, issn 0010-2180, 15 p.Article

The carbon footprint and non-renewable energy demand of algae-derived biodieselAZADI, Pooya; BROWNBRIDGE, George; MOSBACH, Sebastian et al.Applied energy. 2014, Vol 113, pp 1632-1644, issn 0306-2619, 13 p.Article

  • Page / 2