Reference List
- 1
Michael J Brown, Akshay A Gowardhan, Mathew A Nelson, Michael D Williams, and Eric R Pardyjak. Quic transport and dispersion modelling of two releases from the joint urban 2003 field experiment. International Journal of Environment and Pollution, 52(3-4):263–287, 2013.
- 2
Behnam Bozorgmehr, Pete Willemsen, Jeremy Gibbs, Rob Stoll, Jae-Jin Kim, and Eric Pardyjak. Utilizing dynamic parallelism in cuda to accelerate a 3d red-black successive over relaxation wind-field solver. Environmental Modelling & Software, 137:104958, 01 2021. doi:10.1016/j.envsoft.2021.104958.
- 3
Jae-Jin Kim, Eric Pardyjak, Do-Yong Kim, Kyoung-Soo Han, and Byung-Hyuk Kwon. Effects of building-roof cooling on flow and air temperature in urban street canyons. Asia-Pacific Journal of Atmospheric Sciences, 50(3):365–375, 2014.
- 4
Arash Nemati Hayati, Rob Stoll, JJ Kim, Todd Harman, Matthew A Nelson, Michael J Brown, and Eric R Pardyjak. Comprehensive evaluation of fast-response, reynolds-averaged navier–stokes, and large-eddy simulation methods against high-spatial-resolution wind-tunnel data in step-down street canyons. Boundary-Layer Meteorology, 164(2):217–247, 2017.
- 5
Marina Neophytou, Akshay Gowardhan, and Michael Brown. An inter-comparison of three urban wind models using oklahoma city joint urban 2003 wind field measurements. Journal of Wind Engineering and Industrial Aerodynamics, 99(4):357–368, 2011.
- 6
Balwinder Singh, Bradley S Hansen, Michael J Brown, and Eric R Pardyjak. Evaluation of the quic-urb fast response urban wind model for a cubical building array and wide building street canyon. Environmental fluid mechanics, 8(4):281–312, 2008.
- 7
PA Taylor and HW Teunissen. The askervein hill project: overview and background data. Boundary-layer meteorology, 39(1-2):15–39, 1987.
- 8
RE Mickle, NJ Cook, AM Hoff, NO Jensen, JR Salmon, PA Taylor, G Tetzlaff, and HW Teunissen. The askervein hill project: vertical profiles of wind and turbulence. Boundary-Layer Meteorology, 43(1-2):143–169, 1988.
- 9
Tony Favaloro, Eric R Pardyjak, and Michael J Brown. Toward Understanding the Sensitivity of the QUIC Dispersion Modeling System to Real Input Data. PhD thesis, Department of Mechanical Engineering, University of Utah, 2008.
- 10
ER Pardyjak, SO Speckart, F Yin, and JM Veranth. Near source deposition of vehicle generated fugitive dust on vegetation and buildings: model development and theory. Atmospheric Environment, 42(26):6442–6452, 2008.
- 11
Steven E Koch, Mary DesJardins, and Paul J Kocin. An interactive barnes objective map analysis scheme for use with satellite and conventional data. Journal of climate and applied meteorology, 22(9):1487–1503, 1983.
- 12
Thomas Michael Booth and ER Pardyjak. Validation of a data assimilation technique for an urban wind model. Department of Mechanical Engineering, University of Utah, 2012.
- 13
Jordan G Powers, Joseph B Klemp, William C Skamarock, Christopher A Davis, Jimy Dudhia, David O Gill, Janice L Coen, David J Gochis, Ravan Ahmadov, Steven E Peckham, and others. The weather research and forecasting model: overview, system efforts, and future directions. Bulletin of the American Meteorological Society, 98(8):1717–1737, 2017.
- 14
K Jerry Allwine and Julia E Flaherty. Joint urban 2003: study overview and instrument locations. Technical Report, Pacific Northwest National Lab.(PNNL), Richland, WA (United States), 2006.
- 15
missing journal in nelson20085
- 16
N Bagal, ER Pardyjak, and MJ Brown. Improved upwind cavity parameterization for a fast response urban wind model. In 84th Annual AMS Meeting. Seattle, WA. 2004.
- 17
Akshay A Gowardhan, Michael J Brown, and Eric R Pardyjak. Evaluation of a fast response pressure solver for flow around an isolated cube. Environmental fluid mechanics, 10(3):311–328, 2010.
- 18
Rainer Röckle. Bestimmung der Strömungsverhältnisse im Bereich komplexer Bebauungsstrukturen. na, 1990.
- 19
H Kaplan and N Dinar. A lagrangian dispersion model for calculating concentration distribution within a built-up domain. Atmospheric Environment, 30(24):4197–4207, 1996.
- 20
Balwinder Singh. Testing and development of a fast response Lagrangian dispersion models. PhD thesis, Department of Mechanical Engineering, University of Utah, 2005.
- 21
B Singh, ER Pardyjak, MJ Brown, and MD Williams. Testing of a far-wake parameterization for a fast response urban wind model. In Sixth Symposium on the Urban Environment/14th Joint Conference on the Applications of Air Pollution Meteorology with the Air and Waste Management Association, Atlanta, January J, volume 8. 2006.
- 22
Nilesh Bagal, Balwinder Singh, Eric R Pardyjak, and Michael J Brown. Implementation of rooftop reciculation parameterization into the quic fast response urban wind model. Technical Report, Los Alamos National Laboratory, 2004.
- 23
missing journal in pol2006implementation