1.Yang X, Zheng L N, Yang Q, Wang Z K, Cui S, Shen Y Y*. Modelling the effects of conservation tillage on crop water productivity, soil water dynamics and evapotranspiration of a maize-winter wheat-soybean rotation system on the Loess Plateau of China using APSIM[J]. Agricultural Systems, 2018, 166, 111-123.
2.Yang X, Li Z, Cui S, Deng J Q, Lai X F, Shen Y Y*. Cropping system productivity and evapotranspiration in the semiarid Loess Plateau of China under future temperature and precipitation changes: an APSIM-based analysis of rotational vs. continuous systems[J]. Agricultural Water Management, 2020, 229, 105959.
3.Yang X, Menefee D, Cui S*, Rajan N*. Assessing the impacts of projected climate changes on maize (Zea mays) productivity using crop models and climate scenario simulation[J]. Crop & Pasture Science, 2021, 72(12), 969-984.
4.Yang X*, Jia P, Hou Q, Zhu M. Quantitative sensitivity of crop productivity and water productivity to precipitation during growth periods in the Agro-Pastoral Ecotone of Shanxi Province, China, based on APSIM[J]. Agricultural Water Management, 2023, 283: 108309.
5.杨轩,谭广洋,沈禹颖*.秸秆还田对旱作冬小麦后茬土壤水分的影响及其APSIM模拟[J].干旱区研究, 2013, 30(4): 609-614.
6.杨轩,王自奎,曹铨,张小明,沈禹颖*.陇东地区几种旱作作物产量对降水与气温变化的响应[J].农业工程学报, 2016, 32(9): 106-114.
7.杨轩*,贾鹏飞,侯青青,朱敏.北方农牧交错带气候变化对粮草轮作生产的影响[J].山西农业大学学报(自然科学版), 2022, 42(1): 77-89.
8.杨轩*,贾鹏飞,侯青青,朱敏.基于APSIM模型的未来气候中燕麦产量变化及对水分胁迫的敏感性[J].中国草地学报, 2022, 44(10): 20-29.
9.成华强,侯青青,朱敏,杨轩*.气候变化与轮作制度对晋北饲用燕麦产草量的影响[J].作物学报, 2024, 50(10): 2599-2613.
10.朱敏,牛帅帅,侯青青,杨轩*,徐洪雨. 山西晋中盆地紫花苜蓿生产对水分和气温的响应[J].草地学报, 2024, 32(1): 207-218.
11.侯青青,成华强,朱敏,杨轩*,夏方山. 晋北两种饲草作物的APSIM模型参数敏感性分析[J].草地学报, 2023, 31(10): 3114-3122.
12.丁新宇,王自奎,杨轩,杜珊珊,沈禹颖*.保护性耕作对旱作农田干湿交替过程中土壤呼吸速率的影响[J].中国农业科学, 2017, 50(24): 4759-4768.
13.Li Z,Yang X, Cui S, Yang Q, Yang X L, Li J C, Shen Y Y*. Developing sustainable cropping systems by integrating crop rotation with conservation tillage practices on the Loess Plateau, a long-term imperative[J]. Field Crops Research, 2018, 222: 164-179.
14.Li Z, Menefee D, Yang X, Cui S*. Simulating productivity of dryland cotton using APSIM, climate scenario analysis, and remote sensing[J]. Agricultural and Forest Meteorology, 2022, 325: 109148.
15.Li Z, Zhang Q, Yang Q, Yang X, Li J C, Cui S, Shen Y Y*. Yield, water productivity and economic return of dryland wheat in the Loess Plateau in response to conservation tillage practices[J]. Journal of Agricultural Science, 2017, 155(08): 1-15.