移动式宇宙射线中子技术在荒漠光伏电站土壤水分监测中的适用性
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1.中国科学院西北生态环境资源研究院/中国生态系统研究网络临泽内陆河流域研究站/干旱区生态安全与可持续发展全国重点实验室/山水林田湖草沙系统治理国家林业和草原局重点实验室;2.中国科学院大学;3.中国华电集团甘肃能源有限公司;4.中国电建集团北京勘测设计研究院有限公司

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甘肃省科技计划项目(25JRRA493)、中国华电集团有限公司重点科技项目(CHDKJ23-04-01-61)和干旱区生态安全与可持续发展全国重点实验室创新团队(E4520102)资助


Applicability of Mobile Cosmic-Ray Neutron Sensing for Mesoscale Soil Moisture Monitoring in Desert Photovoltaic Power Stations
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1.Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences/ Linze Inland River Basin Research Station, Chinese Ecosystem Research Network/ State Key Laboratory of Ecological Safety and Sustainable Development in Arid Lands/ Key Laboratory of State Forestry and Grassland Administration on “Mountain-River-Forest-Farmland-Lake-Grassland-Desert System Governance”;2.University of Chinese Academy of Sciences;3.Huadian Gansu Energy Corporation Limited;4.POWERCHINA Beijing Engineering Corporation Limited

Fund Project:

Supported by the Gansu Provincial Science and Technology Program (No. 25JRRA493), the Key Science and Technology Project of China Huadian Corporation Ltd. (No. CHDKJ23-04-01-61), and the Innovation Team of the State Key Laboratory of Ecological Safety and Sustainable Development in Arid Lands (No. E4520102)

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    摘要:

    为评估宇宙射线中子技术(Cosmic-Ray Neutron Sensing, CRNS)在荒漠光伏电站中尺度土壤水监测中的适用性,选取甘肃省张掖市三个荒漠光伏电站及其邻近对照区,结合蒙特卡洛中子传输模型(Monte Carlo N-Particle, MCNPX)与移动式CRNS野外观测,采用N0参数法反演土壤水,基于加权函数量化空间代表性。结果表明:(1)光伏组件对近地表中子通量的干扰可忽略;MCNPX模拟结果显示,有/无光伏板条件下总中子通量相对差异约1.27%,快中子段(0.5~1 000 eV)通量相对差异为0.12%;此外,CRNS实测结果显示有/无光伏板条件下中子强度无显著差异(P>0.05);(2)CRNS反演值与烘干法实测值一致(R2 = 0.73,RMSE = 0.01 g·g-1),证实移动式CRNS可准确监测荒漠光伏电站土壤水分;(3)CRNS有效探测深度和水平半径范围分别为21~49 cm和123~151 m,光伏区平均有效探测深度(32 cm)略小于对照区(39 cm)。结果验证移动式CRNS在荒漠光伏电站中尺度土壤水监测的可行性,为干旱区光伏电站土壤水监测提供新技术。

    Abstract:

    【Objective】This study aimed to evaluate the applicability of cosmic-ray neutron sensing (CRNS) for mesoscale soil moisture monitoring in desert photovoltaic (PV) power stations. 【Method】Three desert PV stations and adjacent control areas in Zhangye, Gansu Province, China, were investigated by integrating Monte Carlo N-Particle Transport (MCNPX) simulations with mobile CRNS field observations. Soil moisture was inverted using the N0 parameter method, and spatial representativeness was quantified through neutron weighting functions. 【Result】(1) PV panels exerted negligible interference on near-surface neutron flux. MCNPX simulations revealed a 1.27% relative difference in total neutron flux and a 0.12% difference in the fast neutron range (0.5~1000 eV) between panel-present and panel-absent scenarios. Moreover, mobile CRNS field measurements showed no statistically significant difference (P>0.05) in neutron intensity under panel-present and panel-absent conditions. (2) CRNS-inverted values exhibited strong agreement with oven-dried measurements (R2 = 0.73, RMSE = 0.01 g·g-1), confirming the accuracy of mobile CRNS for soil moisture retrieval in desert PV environments. (3) The effective vertical detection depth and horizontal footprint radius of CRNS were estimated to range from approximately 21~49 cm and 123~151 m, respectively. The mean detection depth within the PV areas (32 cm) was slightly lower than that in the control areas (39 cm). 【Conclusion】Mobile CRNS provides a technically feasible solution for non-invasive, mesoscale soil moisture monitoring in desert PV power stations, offering an innovative approach for hydrological assessment in arid-region solar energy installations.

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王海仙,张勇勇,肖建华,陈 涛,马世军,康文蓉,吴绍雄.移动式宇宙射线中子技术在荒漠光伏电站土壤水分监测中的适用性[J].土壤学报,DOI:10.11766/trxb202508130391,[待发表]
WANG Haixian, ZHANG Yongyong, XIAO Jianhua, CHEN Tao, MA Shijun, KANG Wenrong, WU Shaoxiong. Applicability of Mobile Cosmic-Ray Neutron Sensing for Mesoscale Soil Moisture Monitoring in Desert Photovoltaic Power Stations[J]. Acta Pedologica Sinica, DOI:10.11766/trxb202508130391,[In Press]

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  • 收稿日期:2025-08-13
  • 最后修改日期:2026-06-01
  • 录用日期:2026-07-23
  • 在线发布日期: 2026-08-13
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