Zuosinan Chen

About Zuosinan Chen

Zuosinan Chen, With an exceptional h-index of 8 and a recent h-index of 8 (since 2020), a distinguished researcher at Beijing Forestry University, specializes in the field of Forest Hydrology, Ecohydrology, Forest Ecology, Forest Management, Isotope Hydrology.

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

Responses of canopy transpiration and conductance to different drought levels in Mongolian pine plantations in a semiarid urban environment of China

Species difference of transpiration in three urban coniferous forests in a semiarid region of China

The increase of leaf water potential and whole-tree hydraulic conductance promotes canopy conductance and transpiration of Pinus tabulaeformis during soil …

Urban warming increases the temperature sensitivity of spring vegetation phenology at 292 cities across China

Biophysical regulations of transpiration and water use strategy in a mature Chinese pine (Pinus tabulaeformis) forest in a semiarid urban environment

Atmospheric aerosols elevated ecosystem productivity of a poplar plantation in Beijing, China

Seasonal variations in the response of soil respiration to rainfall events in a riparian poplar plantation

Influences of forest cover on soil freeze-thaw dynamics and greenhouse gas emissions through the regulation of snow regimes: A comparison study of the farmland and forest …

Zuosinan Chen Information

University

Position

___

Citations(all)

193

Citations(since 2020)

193

Cited By

19

hIndex(all)

8

hIndex(since 2020)

8

i10Index(all)

7

i10Index(since 2020)

7

Email

University Profile Page

Google Scholar

Zuosinan Chen Skills & Research Interests

Forest Hydrology

Ecohydrology

Forest Ecology

Forest Management

Isotope Hydrology

Top articles of Zuosinan Chen

Responses of canopy transpiration and conductance to different drought levels in Mongolian pine plantations in a semiarid urban environment of China

Agricultural and Forest Meteorology

2024/3/15

Species difference of transpiration in three urban coniferous forests in a semiarid region of China

Journal of Hydrology

2023/2/1

The increase of leaf water potential and whole-tree hydraulic conductance promotes canopy conductance and transpiration of Pinus tabulaeformis during soil …

Trees

2023/2

Urban warming increases the temperature sensitivity of spring vegetation phenology at 292 cities across China

Science of The Total Environment

2022/8/15

Biophysical regulations of transpiration and water use strategy in a mature Chinese pine (Pinus tabulaeformis) forest in a semiarid urban environment

Hydrological Processes

2022/2

Atmospheric aerosols elevated ecosystem productivity of a poplar plantation in Beijing, China

Canadian Journal of Forest Research

2021

Seasonal variations in the response of soil respiration to rainfall events in a riparian poplar plantation

Science of the Total Environment

2020/12/10

Influences of forest cover on soil freeze-thaw dynamics and greenhouse gas emissions through the regulation of snow regimes: A comparison study of the farmland and forest …

Science of the total environment

2020/7/15

Environmental and canopy stomatal control on ecosystem water use efficiency in a riparian poplar plantation

Agricultural and Forest Meteorology

2020/6/15

How to differentiate nighttime transpiration and water recharge in nocturnal sap flow?

EGU General Assembly Conference Abstracts

2020/5

Biophysical controls on nocturnal sap flow in plantation forests in a semi-arid region of northern China

Agricultural and Forest Meteorology

2020/4/15

Sparse Pinus Tabuliformis Stands Have Higher Canopy Transpiration Than Dense Stands Three Decades After Thinning

Forests

2020/1/6

See List of Professors in Zuosinan Chen University(Beijing Forestry University)