World's Best Scientists 2026 revealed!

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
32
Citations
3702
World Ranking
3193
National Ranking
1086

Andreas Haselbacher publication distribution in Mechanical and Aerospace Engineering in 2026

The chart shows the distribution of publications by all Research.com ranked scientists in the field of Mechanical and Aerospace Engineering in 2026. The highlighted bar marks where Andreas Haselbacher sits on this spectrum.

47–56 publications: 10 scientists 57–66 publications: 23 scientists 67–76 publications: 32 scientists 77–86 publications: 62 scientists 87–96 publications: 67 scientists 97–106 publications: 91 scientists 107–116 publications: 113 scientists 117–126 publications: 115 scientists 127–136 publications: 130 scientists 137–146 publications: 140 scientists 147–156 publications: 155 scientists 157–166 publications: 132 scientists 167–176 publications: 133 scientists 177–186 publications: 130 scientists 187–196 publications: 140 scientists 197–206 publications: 115 scientists 207–216 publications: 125 scientists 217–226 publications: 117 scientists 227–236 publications: 99 scientists 237–246 publications: 92 scientists 247–256 publications: 100 scientists 257–266 publications: 95 scientists 267–276 publications: 88 scientists 277–286 publications: 77 scientists 287–296 publications: 74 scientists 297–306 publications: 74 scientists 307–316 publications: 62 scientists 317–326 publications: 70 scientists 327–336 publications: 59 scientists 337–346 publications: 58 scientists 347–356 publications: 45 scientists 357–366 publications: 44 scientists 367–376 publications: 36 scientists 377–386 publications: 41 scientists 387–396 publications: 32 scientists 397–406 publications: 23 scientists 407–416 publications: 28 scientists 417–426 publications: 27 scientists 427–436 publications: 25 scientists 437–446 publications: 23 scientists 447–456 publications: 23 scientists 457–466 publications: 20 scientists 467–476 publications: 12 scientists 477–486 publications: 24 scientists 487–496 publications: 18 scientists 497–506 publications: 12 scientists 507–516 publications: 13 scientists 517–526 publications: 21 scientists 527–536 publications: 12 scientists 537–546 publications: 8 scientists 547–556 publications: 16 scientists 557–566 publications: 3 scientists 567–576 publications: 11 scientists 577–586 publications: 6 scientists 587–596 publications: 5 scientists 597–606 publications: 6 scientists 607–616 publications: 7 scientists 617–626 publications: 7 scientists 627–636 publications: 10 scientists 637–646 publications: 4 scientists 647–656 publications: 3 scientists 657–658 publications: 2 scientists 659+ publications: 100 scientists
47 publications 659+

This scientist: 116 publications — 12th percentile

12% of scientists in this discipline score the same or lower.

The last bar groups every scientist with 659 publications or more.

Andreas Haselbacher D-index placement in Mechanical and Aerospace Engineering in 2026

The chart shows the D-index (discipline H-index) distribution of Mechanical and Aerospace Engineering scientists ranked by Research.com in 2026. The highlighted bar marks where Andreas Haselbacher sits on this spectrum.

30 D-Index: 83 scientists 31 D-Index: 113 scientists 32 D-Index: 144 scientists 33 D-Index: 153 scientists 34 D-Index: 189 scientists 35 D-Index: 158 scientists 36 D-Index: 139 scientists 37 D-Index: 127 scientists 38 D-Index: 130 scientists 39 D-Index: 126 scientists 40 D-Index: 104 scientists 41 D-Index: 100 scientists 42 D-Index: 107 scientists 43 D-Index: 101 scientists 44 D-Index: 103 scientists 45 D-Index: 79 scientists 46 D-Index: 88 scientists 47 D-Index: 70 scientists 48 D-Index: 83 scientists 49 D-Index: 44 scientists 50 D-Index: 64 scientists 51 D-Index: 56 scientists 52 D-Index: 50 scientists 53 D-Index: 48 scientists 54 D-Index: 58 scientists 55 D-Index: 52 scientists 56 D-Index: 48 scientists 57 D-Index: 42 scientists 58 D-Index: 34 scientists 59 D-Index: 42 scientists 60 D-Index: 37 scientists 61 D-Index: 42 scientists 62 D-Index: 44 scientists 63 D-Index: 22 scientists 64 D-Index: 33 scientists 65 D-Index: 29 scientists 66 D-Index: 23 scientists 67 D-Index: 29 scientists 68 D-Index: 24 scientists 69 D-Index: 19 scientists 70 D-Index: 34 scientists 71 D-Index: 26 scientists 72 D-Index: 19 scientists 73 D-Index: 18 scientists 74 D-Index: 19 scientists 75 D-Index: 14 scientists 76 D-Index: 19 scientists 77 D-Index: 8 scientists 78 D-Index: 18 scientists 79 D-Index: 16 scientists 80 D-Index: 12 scientists 81 D-Index: 17 scientists 82 D-Index: 11 scientists 83 D-Index: 16 scientists 84 D-Index: 7 scientists 85 D-Index: 9 scientists 86 D-Index: 8 scientists 87 D-Index: 6 scientists 88 D-Index: 6 scientists 89 D-Index: 7 scientists 90 D-Index: 10 scientists 91 D-Index: 4 scientists 92 D-Index: 4 scientists 93+ D-Index: 100 scientists
30 D-Index 93+

This scientist: 32 D-Index — 10th percentile

10% of scientists in this discipline score the same or lower.

The last bar groups every scientist with 93 D-Index or more.

Best Publications

  • Design of packed bed thermal energy storage systems for high-temperature industrial process heat

    G. Zanganeh;A. Pedretti;A. Haselbacher;A. Steinfeld;A. Steinfeld

  • Pilot-scale demonstration of advanced adiabatic compressed air energy storage, Part 1: Plant description and tests with sensible thermal-energy storage

    Lukas Geissbühler;Viola Becattini;Giw Zanganeh;Simone Zavattoni

  • Experimental investigation of the thermal and mechanical stability of rocks for high-temperature thermal-energy storage

    Viola Becattini;Thomas Motmans;Alba Zappone;Claudio Madonna

  • Accurate and Efficient Discretization of Navier-Stokes Equations on Mixed Grids

    Unknown

  • Stabilization of the outflow temperature of a packed-bed thermal energy storage by combining rocks with phase change materials

    Giw Zanganeh;Mark Commerford;Andreas Haselbacher;Andrea Pedretti

  • Generalized Basset-Boussinesq-Oseen equation for unsteady forces on a sphere in a compressible flow.

    M. Parmar;A. Haselbacher;S. Balachandar

  • Experimental and numerical investigation of combined sensible-latent heat for thermal energy storage at 575°C and above

    G. Zanganeh;R. Khanna;C. Walser;A. Pedretti

  • Potential improvements in the optical and thermal efficiencies of parabolic trough concentrators

    Men Wirz;Jules Petit;Andreas Haselbacher;Aldo Steinfeld;Aldo Steinfeld

  • Improved Drag Correlation for Spheres and Application to Shock-Tube Experiments

    M. Parmar;A. Haselbacher;S. Balachandar

  • Equation of motion for a sphere in non-uniform compressible flows

    M. Parmar;A. Haselbacher;S. Balachandar

  • Modeling of the unsteady force for shock-particle interaction

    M. Parmar;A. Haselbacher;S. Balachandar

  • Analysis of industrial-scale high-temperature combined sensible/latent thermal energy storage

    Lukas Geissbühler;Michael Kolman;Giw Zanganeh;Andreas Haselbacher

  • Finite Volume Discretization Aspects for Viscous Flows on Mixed Unstructured Grids

    Unknown

  • Combined interface boundary condition method for coupled thermal simulations

    B. Roe;R. Jaiman;A. Haselbacher;Philippe H Geubelle

  • Pilot-scale demonstration of advanced adiabatic compressed air energy storage, Part 2: Tests with combined sensible/latent thermal-energy storage

    V. Becattini;L. Geissbühler;G. Zanganeh;A. Haselbacher

  • Importance of unsteady contributions to force and heating for particles in compressible flows: Part 1: Modeling and analysis for shock–particle interaction

    Y. Ling;A. Haselbacher;S. Balachandar

  • On the unsteady inviscid force on cylinders and spheres in subcritical compressible flow.

    M Parmar;A Haselbacher;S Balachandar

  • The effect of the gas–solid contacting pattern in a high-temperature thermochemical energy storage on the performance of a concentrated solar power plant

    Stefan Ströhle;Andreas Haselbacher;Zoran R. Jovanovic;Aldo Steinfeld

  • Simulations of Solid-Propellant Rockets: Effects of Aluminum Droplet Size Distribution

    F. M. Najjar;J. P. Ferry;A. Haselbacher;S. Balachandar

  • Importance of unsteady contributions to force and heating for particles in compressible flows. Part 2: Application to particle dispersal by blast waves ☆

    Y. Ling;A. Haselbacher;S. Balachandar

Frequent Co-Authors

Thomas J. Schmidt
Thomas J. Schmidt Paul Scherrer Institute
Kevin Sivula
Kevin Sivula École Polytechnique Fédérale de Lausanne
Corsin Battaglia
Corsin Battaglia Swiss Federal Laboratories for Materials Science and Technology
Hubert H. Girault
Hubert H. Girault École Polytechnique Fédérale de Lausanne
Andreas Züttel
Andreas Züttel École Polytechnique Fédérale de Lausanne

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