山体地形下土壤含水量、孔隙率对雷电电磁场传播特性影响及其对雷击灾害的预防
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国家自然科学基金(42205082);江苏省自然科学基金(BK20220657);江苏科技大学2021年引进博士科研启动(1032932108)


Simulated Effects of Soil Water Content and Porosity on Lightning Electromagnetic Field Propagation over Mountainous Terrain
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    摘要:

    为研究山体地形下土壤特性对于雷电电磁场传播的影响,基于时域有限差分(finite-difference time-domain,FDTD)方 法建立二维算法模型,利用多孔土壤电导率计算模型考虑不同的山体坡度下,计算不同土壤类型以及土壤含水量、孔隙率在 近观测点处的雷电电磁场(lightning electromagnetic fields,LEMFs)。 结果表明:水平电场更易受土壤特性变化影响,在高孔隙 率条件下,即平坦地面土壤孔隙率为 25% 时土壤含水量从 50% 下降至 1% 时水平电场峰值提升了约 67% ;而在低含水量条件 下,即平坦土壤含水量为 1% 时土壤孔隙率从 1% 上升至 25% 时水平电场提升了约 54% ;同时在不同山体坡度情况下,水平电 场在陡峭山体地形下更容易受土壤含水量影响,而土壤孔隙率的影响并不会因为山体坡度变化发生改变。 研究成果量化了 不同类型土壤对雷电电磁场的影响,明确了雷击高风险地质条件,为复杂地形下关键设施的选址优化及其雷电灾害预警提供 了重要的科学依据。

    Abstract:

    To investigate the influence of soil properties on the propagation of lightning electromagnetic fields ( LEMFs ) over mountainous terrain, a two-dimensional algorithmic model based on the finite-difference time-domain ( FDTD) method was established. A porous soil conductivity model was incorporated to evaluate the lightning electromagnetic fields( LEMFs) at a nearby observation point under different mountain slopes, considering various soil types, water content and porosities. The results indicate that the horizontal electric field is more sensitive to changes in soil properties. Under high porosity conditions (25% ) , the peak horizontal electric field increases by approximately 67% when the soil water content decreases from 50% to 1% . Conversely, with low water content (1% ) , the peak horizontal electric field increases by about 54% when the soil porosity rises from 1% to 25% . Additionally, under varying mountain slopes, the horizontal electric field is more susceptible to soil water content in steep terrain, while the effect of soil porosity remains consistent regardless of the slope. These research findings quantify influence of different soil type on lightning electromagnetic fields, identify the geological conditions associated with high lightning-strike risk, and provide an important scientific basis for optimizing the siting of critical infrastructure and improving lightning disaster early warning in complex terrains.

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牛家伟,张金波,陶艳,等. 山体地形下土壤含水量、孔隙率对雷电电磁场传播特性影响及其对雷击灾害的预防[J]. 科学技术与工程, 2026, 26(24): 10249-10258.
Niu Jiawei, Zhang Jinbo, Tao Yan, et al. Simulated Effects of Soil Water Content and Porosity on Lightning Electromagnetic Field Propagation over Mountainous Terrain[J]. Science Technology and Engineering,2026,26(24):10249-10258.

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  • 收稿日期:2025-09-23
  • 最后修改日期:2026-06-13
  • 录用日期:2026-02-28
  • 在线发布日期: 2026-09-02
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