Books on the topic 'Subgrid'

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1

Speziale, Charles G. On the subgrid-scale modeling of compressible turbulence. Hampton, Va: ICASE, 1987.

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2

Burkhardt, Thomas. Subgrid-scale vertical energy fluxes over the African-Atlantic region. Bonn: Dümmler, 1990.

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3

El-Hady, Nabil M. Large-eddy simulation of laminar-turbulent breakdown at high speeds with dynamic subgrid-scale modeling. Hampton, Va: Langley Research Center, 1993.

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4

Crovetti, James A. Comprehensive subgrade deflection acceptance criteria. Madison, WI: Wisconsin Dept. of Transportation, Division of Transportation Infrastructure Development, Bureau of Highway Construction, Technology Advancement Unit, 2001.

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5

Zhu, Hanhua, Zhijun Wu, Mengchong Chen, and Yongli Zhao. Controlling Differential Settlement of Highway Soft Soil Subgrade. Singapore: Springer Singapore, 2019. http://dx.doi.org/10.1007/978-981-13-0722-5.

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6

Widger, Allan. Subgrade shear failures: Joint C-SHRP/Saskatchewan Bayesian application. Ottawa: Canadian Strategic Highway Research Program, Transportation Association of Canada, 1995.

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7

Newcomb, David E. Measuring in situ mechanical properties of pavement subgrade soils. Washington, D.C: National Academy Press, 1999.

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8

Edwards, M. R. Interaction of a warehouse floor slab with a subgrade. Birmingham: University of Birmingham, 1987.

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9

Bushman, William H. Final report: Stabilization techniques for unpaved roads. Charlottesville, Va: Virginia Transportation Research Council, 2004.

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10

Puppala, Anand J. Estimating stiffness of subgrade and unbound materials for pavement design. Washington, D.C: Transportation Research Board, 2008.

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11

Puppala, Anand J. Estimating stiffness of subgrade and unbound materials for pavement design. Washington, D.C: Transportation Research Board, 2008.

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12

Puppala, Anand J. Estimating stiffness of subgrade and unbound materials for pavement design. Washington, D.C: Transportation Research Board, 2008.

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13

Popp, Karl, and Werner Schiehlen, eds. System Dynamics and Long-Term Behaviour of Railway Vehicles, Track and Subgrade. Berlin, Heidelberg: Springer Berlin Heidelberg, 2003. http://dx.doi.org/10.1007/978-3-540-45476-2.

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14

Edil, Tuncer B. Development of methodology to include the strength contribution of select subgrade materials in pavement structure: A final report on the WHRP, "strength contribution of select subgrade reinforcement materials". Madison, WI: Wisconsin Highway Research Program, University of Wisconsin-Madison, 2005.

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15

Wattanasanticharoen, Ekarin. Investigations to evaluate the performance of four selected stabilization methods on soft subgrade soils of southeast Arlington. Ann Arbor, Mich: UMI, 2002.

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16

Quintus, H. L. Von. Design pamphlet for the determination of design subgrade in support of the 1993 AASHTO guide for the design of pavement structures. McLean, VA: U.S. Dept. of Transportation, Federal Highway Administration, Research and Development, Turner-Fairbank Highway Research Center, 1997.

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17

author, Liu Xiaohong 1968, ed. Gao su tie lu wu zha gui dao hong nian tu lu ji chen jiang kong zhi yu dong li wen ding xing: Red clay subgrade settlement control and dynamic stability analysis of ballastless track of high speed railway. Beijing: Zhongguo tie dao chu ban she, 2011.

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18

Vaidyanathan, Sankaran, Stone Christopher, and NASA Glenn Research Center, eds. Subgrid combustion modeling for the next generation national combustion code. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 2003.

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19

Yeh, Chou, and Institute for Computer Applications in Science and Engineering., eds. Analysis and modeling of subgrid scalar mixing using numerical data. Hampton, VA: Institute for Computer Applications in Science and Engineering, NASA Langley Research Center, 1995.

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20

Vaidyanathan, Sankaran, Stone Christopher, and NASA Glenn Research Center, eds. Subgrid combustion modeling for the next generation national combustion code. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 2003.

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21

Tracer water transport and subgrid precipitation variation within atmospheric general circulation models. [Washington, DC: National Aeronautics and Space Administration, 1988.

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22

United States. National Aeronautics and Space Administration. Scientific and Technical Information Program, ed. Large-eddy simulation of laminar-turbulent breakdown at high speeds with dynamic subgrid-scale modeling. [Washington, DC]: National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Program, 1993.

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23

United States. National Aeronautics and Space Administration. Scientific and Technical Information Program., ed. Large-eddy simulation of laminar-turbulent breakdown at high speeds with dynamic subgrid-scale modeling. [Washington, D.C.]: National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Program, 1993.

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24

United States. National Aeronautics and Space Administration. Scientific and Technical Information Program., ed. Large-eddy simulation of laminar-turbulent breakdown at high speeds with dynamic subgrid-scale modeling. [Washington, DC]: National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Program, 1993.

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25

United States. National Aeronautics and Space Administration. Scientific and Technical Information Program., ed. Large-eddy simulation of laminar-turbulent breakdown at high speeds with dynamic subgrid-scale modeling. [Washington, DC]: National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Program, 1993.

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26

United States. National Aeronautics and Space Administration. Scientific and Technical Information Program., ed. Large-eddy simulation of laminar-turbulent breakdown at high speeds with dynamic subgrid-scale modeling. [Washington, D.C.]: National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Program, 1993.

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27

United States. National Aeronautics and Space Administration. Scientific and Technical Information Program., ed. Large-eddy simulation of laminar-turbulent breakdown at high speeds with dynamic subgrid-scale modeling. [Washington, DC]: National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Program, 1993.

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28

Dr. John S. Horvath P.E. Subgrade Modeling and Models in Foundation Engineering. John S. Horvath Consulting Engineer, 2018.

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29

Consultants, Bartley, and Transfund New Zealand, eds. Mechanistic design of pavements incorporating a stabilised subgrade. Wellington, N.Z: Transfund New Zealand, 1998.

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30

Prezzi, Monica, Min Sang Lee, and Yoon Seok Choi. Quality Assessment of Geogrids Used for Subgrade Treatment. Joint Transportation Research Program, 2012.

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31

Recommended Practice for Stabilization of Sulfate-Rich Subgrade Soils. Washington, D.C.: Transportation Research Board, 2009. http://dx.doi.org/10.17226/22997.

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32

N, Little Dallas, Texas Transportation Institute, and Texas. Dept. of Transportation., eds. Identification of the structural benefits of base and subgrade stabilization. College Station: Texas Transportation Institute, Texas A & M University System, 1994.

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33

Estimating Stiffness of Subgrade and Unbound Materials for Pavement Design. Washington, D.C.: Transportation Research Board, 2008. http://dx.doi.org/10.17226/13598.

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34

Recommended Practice for Stabilization of Subgrade Soils and Base Materials. Washington, D.C.: Transportation Research Board, 2009. http://dx.doi.org/10.17226/22999.

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35

Popp, Karl, and Werner Schiehlen. System Dynamics and Long-Term Behaviour of Railway Vehicles, Track and Subgrade. Springer, 2010.

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36

1948-, Shoaf R. A., and Cox Catherine S. 1962-, eds. Chaucer's Troilus and Criseyde: Subgit to alle poesye : essays in criticism. Binghamton, N.Y: Medieval & Renaissance Texts & Studies, 1992.

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37

Cox, Catherine S. Chaucer's Troilus and Criseyde: "Subgit to Alle Poesye" : Essays in Criticism. Mrts, 1992.

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38

McMahon, Michael E. The variation of subgrain misorientation in aluminum with large steady-state creep strain. 1986.

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39

Yildirim, Irem Zeynep, Monica Prezzi, and Meera Vasudevan. Use of Soil-Steel Slag-Class-C Fly Ash Mixtures in Subgrade Applications. Joint Transportation Research Program, 2013.

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40

Richard, Liu, Texas. Dept. of Transportation., and University of Houston. Dept. of Electrical and Computer Engineering., eds. Establishment of reliable methodologies to determine in-situ moisture content of base and subgrade soils. Houston, Tex: University of Houston, 1999.

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41

Mieszczanski, Paul P. The variation in the subgrain size in aluminum deformed to large steady-state creep strains. 1985.

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42

Wu, Zhijun, Hanhua Zhu, Mengchong Chen, and Yongli Zhao. Controlling Differential Settlement of Highway Soft Soil Subgrade: A New Method and Its Engineering Applications. Springer, 2018.

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43

A National Database of Subgrade Soil-Water Characteristic Curves and Selected Soil Properties for Use with the MEPDG. Washington, D.C.: Transportation Research Board, 2010. http://dx.doi.org/10.17226/22936.

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44

(Editor), Karl Popp, and Werner Schiehlen (Editor), eds. System Dynamics and Long-Term Behaviour of Railway Vehicles, Track and Subgrade (Lecture Notes in Applied and Computational Mechanics). Springer, 2002.

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45

Proposed Enhancements to Pavement ME Design: Improved Consideration of the Influence of Subgrade and Unbound Layers on Pavement Performance. Washington, D.C.: Transportation Research Board, 2019. http://dx.doi.org/10.17226/25583.

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46

Pavement Subgrade, Unbound Materials, and Nondestructive Testing: Proceedings of Sessions of Geo-Denver 2000 : August 5-8, 2000, Denver, Colorado (Geotechnical Special Publication, 98). Amer Society of Civil Engineers, 2000.

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