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Dive into the research topics where Joseph C. Y. Lee is active.

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Featured researches published by Joseph C. Y. Lee.


Bulletin of the American Meteorological Society | 2017

Assessing State-of-the-Art Capabilities for Probing the Atmospheric Boundary Layer: The XPIA Field Campaign

Julie K. Lundquist; James M. Wilczak; Ryan Ashton; Laura Bianco; W. Alan Brewer; Aditya Choukulkar; Andrew Clifton; Mithu Debnath; Ruben Delgado; Katja Friedrich; Scott Gunter; Armita Hamidi; Giacomo Valerio Iungo; Aleya Kaushik; Branko Kosovic; Patrick Langan; Adam Lass; Evan Lavin; Joseph C. Y. Lee; Katherine McCaffrey; Rob K. Newsom; David Noone; Steven P. Oncley; Paul T. Quelet; Scott P. Sandberg; John L. Schroeder; William J. Shaw; Lynn C. Sparling; Clara St. Martin; Alexandra St. Pé

AbstractTo assess current capabilities for measuring flow within the atmospheric boundary layer, including within wind farms, the U.S. Department of Energy sponsored the eXperimental Planetary boundary layer Instrumentation Assessment (XPIA) campaign at the Boulder Atmospheric Observatory (BAO) in spring 2015. Herein, we summarize the XPIA field experiment, highlight novel measurement approaches, and quantify uncertainties associated with these measurement methods. Line-of-sight velocities measured by scanning lidars and radars exhibit close agreement with tower measurements, despite differences in measurement volumes. Virtual towers of wind measurements, from multiple lidars or radars, also agree well with tower and profiling lidar measurements. Estimates of winds over volumes from scanning lidars and radars are in close agreement, enabling the assessment of spatial variability. Strengths of the radar systems used here include high scan rates, large domain coverage, and availability during most precipita...


Boundary-Layer Meteorology | 2017

Observing and Simulating Wind-Turbine Wakes During the Evening Transition

Joseph C. Y. Lee; Julie K. Lundquist

Wind-turbine-wake evolution during the evening transition introduces variability to wind-farm power production at a time of day typically characterized by high electricity demand. During the evening transition, the atmosphere evolves from an unstable to a stable regime, and vertical stratification of the wind profile develops as the residual planetary boundary layer decouples from the surface layer. The evolution of wind-turbine wakes during the evening transition is examined from two perspectives: wake observations from single turbines, and simulations of multiple turbine wakes using the mesoscale Weather Research and Forecasting (WRF) model. Throughout the evening transition, the wake’s wind-speed deficit and turbulence enhancement are confined within the rotor layer when the atmospheric stability changes from unstable to stable. The height variations of maximum upwind-downwind differences of wind speed and turbulence intensity gradually decrease during the evening transition. After verifying the WRF-model-simulated upwind wind speed, wind direction and turbulent kinetic energy profiles with observations, the wind-farm-scale wake evolution during the evening transition is investigated using the WRF-model wind-farm parametrization scheme. As the evening progresses, due to the presence of the wind farm, the modelled hub-height wind-speed deficit monotonically increases, the relative turbulence enhancement at hub height grows by 50%, and the downwind surface sensible heat flux increases, reducing surface cooling. Overall, the intensifying wakes from upwind turbines respond to the evolving atmospheric boundary layer during the evening transition, and undermine the power production of downwind turbines in the evening.


The Journal of Physical Chemistry | 1993

Picosecond dynamics of the photoreduction of benzophenone by DABCO

Kevin S. Peters; Joseph C. Y. Lee


The Journal of Physical Chemistry | 1992

Role of contact and solvent-separated radical ion pairs in the diffusional quenching of trans-stilbene excited singlet state by fumaronitrile

Kevin S. Peters; Joseph C. Y. Lee


Journal of the American Chemical Society | 1993

Picosecond dynamics of stilbene-olefin contact and solvent-separated radical ion pairs: role of electron transfer and radical ion pair diffusion

Kevin S. Peters; Joseph C. Y. Lee


The Journal of Physical Chemistry | 1993

Picosecond dynamics of trans-stilbene photodimerization

Kevin S. Peters; Steven C. Freilich; Joseph C. Y. Lee


Journal of the American Chemical Society | 1993

Picosecond dynamics for the photocycloaddition of trans-stilbene with tetramethylethylene : no evidence of an exciplex

Kevin S. Peters; Bulang Li; Joseph C. Y. Lee


Wind Energy Science Discussions | 2018

Assessing Variability of Wind Speed: Comparison and Validation of 27 Methodologies

Joseph C. Y. Lee; M. Jason Fields; Julie K. Lundquist


Journal of Physics: Conference Series | 2018

Understanding Biases in Pre-Construction Estimates

Monte Lunacek; M. Jason Fields; Anna Craig; Joseph C. Y. Lee; John Meissner; Caleb Philips; Shuangwen Sheng; Ryan King


98th American Meteorological Society Annual Meeting | 2018

Evaluating the Methodology of Assessing Interannual Variability of Wind Speed

Joseph C. Y. Lee

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Julie K. Lundquist

University of Colorado Boulder

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Kevin S. Peters

University of Colorado Boulder

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M. Jason Fields

National Renewable Energy Laboratory

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Adam Lass

University of Maryland

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Aditya Choukulkar

National Oceanic and Atmospheric Administration

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Aleya Kaushik

University of Colorado Boulder

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Andrew Clifton

National Renewable Energy Laboratory

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Armita Hamidi

University of Texas at Dallas

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Branko Kosovic

National Center for Atmospheric Research

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