Jingwen Zhang

About Jingwen Zhang

Jingwen Zhang, With an exceptional h-index of 13 and a recent h-index of 13 (since 2020), a distinguished researcher at University of Illinois at Urbana-Champaign, specializes in the field of Ecohydrology, Water resources planning and management, Data analysis, Data-driven models.

His recent articles reflect a diverse array of research interests and contributions to the field:

Evaluation of artificial intelligence algorithms with sensor data assimilation in estimating crop evapotranspiration and crop water stress index for irrigation water management

Combining remotely sensed evapotranspiration and an agroecosystem model to estimate center‐pivot irrigation water use at high spatio‐temporal resolution

Simulation-optimization based real-time irrigation scheduling: A human-machine interactive method enhanced by data assimilation

Agricultural nitrate export patterns shaped by crop rotation and tile drainage

Modelling daily reference evapotranspiration based on stacking hybridization of ANN with meta-heuristic algorithms under diverse agro-climatic conditions

High spatial-temporal resolution estimation of irrigation timing and amount based on the data-model fusion

Sustainable irrigation based on co-regulation of soil water supply and atmospheric evaporative demand

Real-time reservoir flood control operation enhanced by data assimilation

Jingwen Zhang Information

University

Position

postdoc

Citations(all)

779

Citations(since 2020)

680

Cited By

318

hIndex(all)

13

hIndex(since 2020)

13

i10Index(all)

14

i10Index(since 2020)

14

Email

University Profile Page

Google Scholar

Jingwen Zhang Skills & Research Interests

Ecohydrology

Water resources planning and management

Data analysis

Data-driven models

Top articles of Jingwen Zhang

Evaluation of artificial intelligence algorithms with sensor data assimilation in estimating crop evapotranspiration and crop water stress index for irrigation water management

Smart Agricultural Technology

2023/8/1

Combining remotely sensed evapotranspiration and an agroecosystem model to estimate center‐pivot irrigation water use at high spatio‐temporal resolution

Water Resources Research

2023/3

Simulation-optimization based real-time irrigation scheduling: A human-machine interactive method enhanced by data assimilation

Agricultural Water Management

2023/2/1

Agricultural nitrate export patterns shaped by crop rotation and tile drainage

Water Research

2023/2/1

Modelling daily reference evapotranspiration based on stacking hybridization of ANN with meta-heuristic algorithms under diverse agro-climatic conditions

Stochastic Environmental Research and Risk Assessment

2022/10

High spatial-temporal resolution estimation of irrigation timing and amount based on the data-model fusion

AGU Fall Meeting Abstracts

2021/12

Sustainable irrigation based on co-regulation of soil water supply and atmospheric evaporative demand

Nature communications

2021/9/20

Real-time reservoir flood control operation enhanced by data assimilation

Journal of Hydrology

2021/7/1

Challenges and opportunities in intelligent decision-making for the center pivot irrigation system in the US

2021

Assessing different plant‐centric water stress metrics for irrigation efficacy using soil‐plant‐atmosphere‐continuum simulation

Water Resources Research

2021

Incorporating a plant water supply-demand framework into Noah-MP land surface model to simulate hydrological fluxes for agroecosystems

AGU Fall Meeting Abstracts

2020/12

Development of a plant water stress index based on soil moisture supply and atmospheric evaporative demand for agricultural irrigation management

AGU Fall Meeting Abstracts

2020/12

Connections between the hydrological cycle and crop yield in the rainfed US Corn Belt

Journal of Hydrology

2020/11/1

Evaluating the effect of transpiration in hydrologic model simulation through parameter calibration

Journal of Hydrologic Engineering

2020/5/1

See List of Professors in Jingwen Zhang University(University of Illinois at Urbana-Champaign)

Co-Authors

academic-engine