LR
Member Since 1991
L Ruby Leung
Battelle fellow, Pacific Northwest National Laboratory
Professional Experience
Pacific Northwest National Laboratory
Battelle fellow
2017 - Present
Education
Texas A&M University College Station
Doctorate
1991
Honors & Awards
Jacob Bjerknes Lecture
Received December 2020
Lecture Title: A Quest to Understand and Model Regional Precipitation and Their Future Changes  Field Photo:
Lecture Title: A Quest to Understand and Model Regional Precipitation and Their Future Changes  Field Photo:
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Bert Bolin Global Environmental Change Award and Lecture
Received December 2019
L. Ruby Leung has been selected as the 2019 Bert Bolin awardee and lecturer of the AGU Global Environmental Change section. She received the award and presented this lecture at AGU’s Fall Meeting 2019, held 9–13 December in San Francisco, Calif. The ...
L. Ruby Leung has been selected as the 2019 Bert Bolin awardee and lecturer of the AGU Global Environmental Change section. She received the award and presented this lecture at AGU’s Fall Meeting 2019, held 9–13 December in San Francisco, Calif. The award recognizes an Earth scientist for “groundbreaking research and/or leadership in global environmental change through cross-disciplinary, interdisciplinary, and transdisciplinary research in the past 10 years.”  
Citation

Dr. Lai-Yung (Ruby) Leung has been a real force advancing the science and modeling frontiers of environmental change. She is an influential researcher and an outstanding community leader. She has pioneered modeling of regional and global climate change using innovative approaches to represent such fine-scale processes as orographic precipitation and mountain snowpack and to integrate natural and human system processes in Earth system models. Using models and observations, her research has advanced understanding of the water cycle and its interactions with anthropogenic forcings. She has demonstrated exemplary leadership in advancing community research in extreme weather and climate through field campaigns, data analysis, and modeling of such phenomena as atmospheric rivers, mesoscale convective systems, tropical cyclones, extreme precipitation, and floods and droughts. In addition to organizing workshops for U.S. climate agencies to identify gaps and priorities in climate and hydrological research, she has been serving as the chief scientist for the U.S. Department of Energy’s Energy Exascale Earth System Model (E3SM). This activity pushes the cutting edge of high-resolution climate modeling and develops unique capabilities to represent human–Earth system interactions. In sum, she exemplifies the spirit of Bolin’s legacy by advancing both science and modeling to address environmental change problems of high societal impacts.

—Rong Fu, University of California, Los Angeles

Response
It is an honor for me to be selected for the Bert Bolin Award and Lecture of the AGU Global Environmental Change section. I am grateful for the nomination and for the committee’s selecting me for the award. I have been fascinated by water for its life-supporting function, the beauty it creates in our environment, and its mysterious ways in connecting the various parts of the Earth system. Hence, water weaves through my journey as a scientist from modeling orographic clouds and precipitation and snowpack in mountainous areas, to collecting data from a research aircraft flying through atmospheric rivers, to modeling storms and land and river processes, to exploring the mechanisms of how precipitation may respond to warming and other human perturbations. I have been blessed with many opportunities to collaborate with wonderful colleagues in my institution and scientists across the community sharing the same passion about water in its various forms in the Earth system. I thank them for being an inspiration and for sharing their ideas and expertise. I am also grateful to the U.S. Department of Energy’s Biological and Environmental Research program for its foresight and continued support of cutting-edge Earth system research and its user facilities enabling the research. Through national and international efforts, we now have an explosion of data from different observing systems and computational models capable of simulating clouds in their glorious details or connecting human and Earth system processes, providing data and tools to test our understanding and predict Earth system evolution. Continued advances in understanding and predicting regional and global environmental change will equip us with powerful knowledge to improve societal resilience to extremes and variability and change. —L. Ruby Leung, Pacific Northwest National Laboratory, Richland, Wash.
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Union Fellow
Received December 2013
Citation
For extraordinary leadership in the development and use of regional climate models to advance climate change and hydroclimate research.
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Publications
Unveiling the Urban Impact on Mesoscale Convective System Rainfall in the Pearl River Delta Urban Ag...

Mesoscale convective systems (MCSs), the primary drivers of extreme rainfall over the Pearl River Delta (PRD) urban agglomeration, are strongly inf...

October 30, 2024
AGU Abstracts
Impacts of Urbanization on Flood Behavior across the Mid-Atlantic Region
ONLINE POSTER SESSION FOR HYDROLOGY X
hydrology | 23 january 2024
Ge Hua, Hong-Yi Li, Taher Chegini, Guta Wakbulcho ...
This data-driven study revealed a nonlinear relationship between urban floods, expressed as mean annual floods (MAF), and urbanization, expressed in t...
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Short-term effects of hurricane Ida on nitrogen cycling: a case study using E3SM
ONLINE POSTER SESSION FOR HYDROLOGY V
hydrology | 22 january 2024
Yilin Fang, Hoang Tran, L. Ruby Leung
When nutrient levels in the soil surpass vegetation demand, nutrient losses due to surface runoff and subsurface leaching become major contributors to...
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MOSART-DOC: a New Large-scale Riverine Dissolved Organic Carbon Model and Its Application over the United States
ONLINE POSTER SESSION FOR HYDROLOGY II
hydrology | 22 january 2024
Lingbo Li, Hong-yi Li, Guta Wakbulcho W. Abeshu, J...
Dissolved organic carbon (DOC), primarily sourced from soil organic carbon (SOC), plays a critical role in regional and global carbon cycles. However,...
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Volunteer Experience
2020 - 2022
Member
Atmospheric Sciences Fellows Committee
2014 - 2022
Editor
JGR Atmospheres Section
2019 - 2020
Member
Atmospheric Sciences Fellows Committee
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