25 Papers
63 Citations
Chao Chen is an academic researcher from Commonwealth Scientific and Industrial Research Organisation. The author has contributed to research in topics: Crop yield & Irrigation. The author has an hindex of 12, co-authored 25 publications. Previous affiliations of Chao Chen include Columbia University & Flinders University.
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Papers
Evaluation of the APSIM model in cropping systems of Asia
Donald S. Gaydon,Donald S. Gaydon,Balwinder-Singh,Enli Wang,P. L. Poulton,Basim Ahmad,Faheem Ahmed,S. Akhter,Ibne Karim M. Ali,R.P.R.K. Amarasingha,A.K. Chaki,A.K. Chaki,Chao Chen,Burhan U. Choudhury,R. Darai,Arun K. Das,Zvi Hochman,Heidi Horan,E.Y. Hosang,P. Vijaya Kumar,Azhar Khan,Alison M. Laing,Lily Y. Liu,M.A.P.W.K. Malaviachichi,K.P. Mohapatra,M.A. Muttaleb,B. Power,Ando M. Radanielson,Gaurav Rai,Muzamil Rashid,W.M.U.K. Rathanayake,Md. Moklesur Rahman Sarker,D.R. Sena,M. Shamim,N. Subash,A. Suriadi,Lalith Suriyagoda,Guocheng Wang,Jing Wang,R.K. Yadav,Christian Roth +40 more
TL;DR: The Agricultural Production Systems Simulator (APSIM) as mentioned in this paper was used to simulate the performance of cropping systems in Asia from several perspectives: crop phenology, production, water use, soil dynamics (water and organic carbon) and crop CO 2 response, as well as its ability to simulate cropping sequences without resetting of soil variables.
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Modelling the effects of climate variability and water management on crop water productivity and water balance in the North China Plain
TL;DR: In this article, the authors investigated how crop productivity and water balance components respond to climate variations and irrigation using a modelling approach, and the validated model was then applied to simulate crop yield and field water balance of the wheat-maize rotation in the North China Plain (NCP).
214
Quantifying the effects of climate trends in the past 43 years (1961–2003) on crop growth and water demand in the North China Plain
TL;DR: In this article, changes in climatic variables, including solar radiation, rainfall, fraction of diffuse radiation (FDR) and temperature, during wheat season (October to May) and maize season (June to September) from 1961 to 2003 at four sites in the North China Plain (NCP), and then evaluates the effects of these changes on crop growth processes, productivity and water demand by using the Agricultural Production Systems Simulator.
118
Contributions of individual variation in temperature, solar radiation and precipitation to crop yield in the North China Plain, 1961–2003
TL;DR: In this paper, the authors investigated the effects of the interannual variability and trends in temperature, solar radiation and precipitation during 1961-2003 on wheat and maize yields in a double cropping system at Beijing and Zhengzhou in the North China Plain (NCP), and examined the relative contributions of each climate variable in isolation.
Designing wheat ideotypes to cope with future changing climate in South-Eastern Australia
Bin Wang,Puyu Feng,Puyu Feng,Chao Chen,De Li Liu,De Li Liu,Cathy Waters,Qiang Yu,Qiang Yu,Qiang Yu +9 more
TL;DR: This paper used process-based biophysical modelling to identify the traits of rain-fed wheat ideotypes and suitable sowing dates needed to adapt to future climate change in south-eastern Australia.
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