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Wind engineering

Cochran, L. S., and J. E. Cerniak. 1992. Full- and model-scale cladding pressures on the Texas Tech University experimental building. /. Wind Engineering and Industrial Aerodynamics, vols. 41-44, pp. 1589-1600. [Pg.598]

Cowen, 1. R., I. P. Castro, and. A. G. Robins. 1997. Numerical considerations for sinuilations of flow and di.spersion around buildings. In 2nd Conference on Computational Wind Engineering, Colorado. [Pg.598]

Delaunay, D., D. Lakehal, C. Barre, and C. Sacre. 1997. Numerical and wind runnel siinula-rioiis of gas dispersion around a rectangular building. J. Wind Engineering and Industrial. Aerodynamics, vols. 67-68, pp. 721-732. [Pg.598]

Data and design methods for wind loading are given in the Engineering Sciences Data Unit (ESDU) Wind Engineering Series (www.ihsedsu.com). [Pg.839]

Electricity Generation-Wind Engineering Advisory Services... [Pg.322]

Tsoutsos TD, Zoulias El, Lymberopoulos N, Glockner R (2004). H-SAPS Market potential analysis for the introduction of hydrogen energy technology in stand alone power systems. Wind Engineering 28(5) 615-619... [Pg.162]

The California market incentives helped wind and CSP developers and investors move their technologies forward, reducing cost and acquiring valuable operational experience that improved reliability. Wind engineers developed their qualifications standards during this same period like early PV technologies, wind systems often suffered from poor reliability until their certification standards were established and required in the marketplace. [Pg.73]

Figure 17.4 An update to the the original F-scale by a team of meteorologists and wind engineers, was implemented in the U.S. on 1 February 2007. Figure 17.4 An update to the the original F-scale by a team of meteorologists and wind engineers, was implemented in the U.S. on 1 February 2007.
Bottema, M., and Mestayer, P.G. (1998) Urban roughness mapping-validation techniques and some first results, J. Wind Engineering Industrial Aerodynamics, 74-76, 163-173. [Pg.366]

Chang, C.H. and Meroney, R.N. (2003) Concentration Distributions from a Point Source Within Urban Street Canyons Wind Tunnel and Computational Data, J. of Wind Engineering and Industrial Aerodynamics Vol. 91, No. 9, 1141-1154. [Pg.369]

Hunt, A., and Castro, I.P. (1981) Scalar dispersion in model-building wakes, J. Wind Engineering and Industrial Aerodynamics 17, 89-115. [Pg.382]

Kothari, K.M., Peterka, J.A., and Meroney, R.N. (1986) Perturbation analysis and measurements of building wakes in a stably-stratified turbulent boundary layer, Journal of Wind Engineering and Industrial Aerodynamics, 25,49-74. [Pg.386]

Meroney, R.N., Pavageau, M Rafailidis, S., and Schatzmann, M. (1996) Study of Line Source Characteristics for 2-d Physical Modelling of Pollutant Dispersion in Street Canyons,./. Wind Engineering Industrial Aerodynamics Vol. 62, 37-56. [Pg.392]

Meroney, R.N. (2003) Fire Whirls and Building Aerodynamics, Proceedings of 11th Int. Conf. On Wind Engineering, 2-5 June 2003, Texas Tech University, Lubbock, TX. [Pg.392]

Murakami, S. (1992) Computational Wind Engineering One, Proceedings of the 1st International Symposium on Computational Wind Engineering (Cwe92), Tokyo, Japan, August 21-23, 1992, Elsevier Science. [Pg.393]

Theurer, W., Baechlin, W and Plate, E.J. (1992) Model Study of the Development of Boundary Layers Above Urban Areas, Journal of Wind Engineering... [Pg.405]

Wu, G., and Meroney, R.N. (1995) Impact of changes of surface roughness on surface layer winds, turbulence, and plume dispersion, Proceedings of 9th Int. Conf. on Wind Engineering, New Delhi, India... [Pg.408]

Many expert colleagues contributed to this book. Prof. Robert Meroney (Colorado State University), a pioneer of the use of wind tunnels for simulating complex wind engineering phenomena, has, in this volume, reviewed important new research into numerical simulation of the propagation of fires in forests and urban canopies. [Pg.425]

Powell, M., Soukup, G., Cocke, S., Gulati, S., Morisseau-Leroy., N., Hamid, S., Dorst, N., Axe, L. 2005, State of Florida hurricane loss projection model Atmospheric science component. Journal of Wind Engineering and Industrial Aerodynamics, 93(8), 651-674. [Pg.1159]

Weekes, X, Balderrama, A., Gurley, K.., Pinelli, J.-R, Pita, G.L., Hamid, S. (2009), Physical Damage Modeling of Commercial-Residential Stmctures in Hurricane Winds Accepted for 11th American Conference of Wind Engineering. Puerto Rico. [Pg.1159]

Jeary A.P. 1997 Damping in Structures. Journal of Wind Engineering and Industrial Aerodynamics. 72 345-355. [Pg.106]

Li, Q. S., Liu, D. K., Fang, J. Q., Tam, C. M. (2000). Multi-level optimal design of buildings with active control under winds using genetic algorithms. Journal of Wind Engineering and Industrial Aerodynamics, S5(l), 65-86. doi 10.1016/80167-6105(00)00004-0... [Pg.372]

Anderson, M.B., Garard, A.D. and Hassan, U., "Teeter Excursions of a Two-Blade Horizontal-Axis Wind-Turbine Rotor in a Turbulent Velocity Field," Journal of Wind Engineering and Industiral Aerodynamics, Vol. 17, 1984, pp. 71-88. [Pg.135]

Kristensen, L. and Frandsen, S., "Model for Power Spectra of the Blade of a Wind Turbine Measured from the Moving Frame of Reference," Journal of Wind Engineering and Industrial Aerodynamics, Vol. 10, 1982, pp. 249-262. [Pg.135]


See other pages where Wind engineering is mentioned: [Pg.698]    [Pg.1087]    [Pg.836]    [Pg.836]    [Pg.1]    [Pg.25]    [Pg.360]    [Pg.369]    [Pg.386]    [Pg.424]    [Pg.169]    [Pg.193]    [Pg.4]    [Pg.158]    [Pg.158]    [Pg.552]    [Pg.686]    [Pg.484]    [Pg.215]   
See also in sourсe #XX -- [ Pg.205 ]




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