| [1] |
DING Jingyu, LIU Xin, DONG Lihu, HAO Yuanshuo.
Effect of UAV-LiDAR point density on aboveground biomass estimation in Larix olgensis plantations
[J]. Chinese Journal of Applied Ecology, 2025, 36(11): 3245-3255.
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| [2] |
ZHANG Shenlin, WU Tianjun, HAN Ling, WANG Liuhua, SUN Hailian.
Spatial and temporal variations in grassland aboveground biomass and their drivers in central Inner Mongolia, China
[J]. Chinese Journal of Applied Ecology, 2025, 36(11): 3315-3326.
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| [3] |
YANG Congying, DING Ying, MA Fulin, ZHOU Huakun, WANG Xiaoli, ZHANG Qiang, LIU Xiaowei, MUTALIFU Wubuli, GUO Liang.
Climate change affects plant aboveground biomass by regulating the growth periods in alpine grasslands of the Tibetan Plateau, China
[J]. Chinese Journal of Applied Ecology, 2024, 35(5): 1260-1268.
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| [4] |
LIANG Rui-ting, WANG Yi-fu, QIU Si-yu, SUN Yu-jun, XIE Yun-hong.
Comparison of artificial neural network with compatible biomass model for predicting aboveground biomass of individual tree
[J]. Chinese Journal of Applied Ecology, 2022, 33(1): 9-16.
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| [5] |
WANG Jun-feng, ZHANG Li-hua, ZHAO Rui-feng, XIE Zhong-kui.
Responses of plant growth of different life-forms to precipitation changes in desert steppe
[J]. Chinese Journal of Applied Ecology, 2020, 31(3): 778-786.
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| [6] |
ZHANG Kai, CHEN Li-ru, XU Hui-min, LI Yang-yang.
Spatial variability of plant community characteristics and its influencing factors in a small watershed of wind-water erosion crisscross region on the Loess Plateau, China
[J]. Chinese Journal of Applied Ecology, 2019, 30(8): 2521-2530.
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| [7] |
GOU Rui-kun, CHEN Jia-qi, DUAN Gao-hui, YANG Rui, BU Yuan-kun, ZHAO Jun, ZHAO Peng-xiang.
Inversion of aboveground biomass of Pinus tabuliformis plantations based on GF-2 data
[J]. Chinese Journal of Applied Ecology, 2019, 30(12): 4031-4040.
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| [8] |
LUO Xu, WANG Yu-li, ZHANG Jin-quan.
Simulating the effects of climate change and fire disturbance on aboveground biomass of boreal forests in the Great Xing’an Mountains, Northeast China.
[J]. Chinese Journal of Applied Ecology, 2018, 29(3): 713-724.
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| [9] |
WANG Jin-chi, DENG Hua-feng, HUANG Guo-sheng, WANG Xue-jun, ZHANG Lu.
Compatible biomass models of natural spruce (Picea asperata).
[J]. Chinese Journal of Applied Ecology, 2017, 28(10): 3189-3196.
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| [10] |
WANG Yu-xia, LIANG Wei-wei, CHEN Jun, GUAN Qing-qing, WEI Zhi-cheng, BAI Hui-min, FENG Zhao-jia.
Estimating aboveground biomass of Trifolium repens community using measuring plates.
[J]. Chinese Journal of Applied Ecology, 2016, 27(6): 1886-1892.
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| [11] |
ZHAO Ying-hui, LI Si-qi, ZHEN Zhen, LI Feng-ri, WEI Qing-bin.
Estimation and spatial-temporal pattern of forest aboveground biomass and NPP in Heihe Region, Heilongjiang Province, China
[J]. Chinese Journal of Applied Ecology, 2016, 27(10): 3070-3080.
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| [12] |
DAI Er-fu, ZHOU Heng, WU Zhuo, WANG Xiao-fan, XI Wei-min, ZHU Jian-jia.
Simulation study on the effects of climate change on aboveground biomass of plantation in southern China: Taking Moshao forest farm in Huitong Ecological Station as an example
[J]. Chinese Journal of Applied Ecology, 2016, 27(10): 3059-3069.
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| [13] |
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Influence of nitrogen and phosphorus addition on the aboveground biomass in Inner Mongolia temperate steppe, China.
[J]. Chinese Journal of Applied Ecology, 2015, 26(8): 2291-2297.
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| [14] |
LIANG Bei1, DI Li1, ZHAO Chuan-yan2, PENG Shou-zhang2, PENG Huan-hua3, WANG Chao3.
Spatial distribution of aboveground biomass of shrubs in Tianlaochi catchment of the Qilian Mountains.
[J]. Chinese Journal of Applied Ecology, 2014, 25(2): 367-373.
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| [15] |
LIU Feng1, TAN Chang1, LEI Pi-feng2.
Estimating individual tree aboveground biomass of the mid-subtropical forest using airborne LiDAR technology.
[J]. Chinese Journal of Applied Ecology, 2014, 25(11): 3229-3236.
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