日本地球惑星科学連合2023年大会

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[E] 口頭発表

セッション記号 A (大気水圏科学) » A-GE 地質環境・土壌環境

[A-GE28] Energy-Environment-Water Nexus and Sustainable Development

2023年5月25日(木) 15:30 〜 16:45 105 (幕張メッセ国際会議場)

コンビーナ:川本 健(埼玉大学大学院理工学研究科)、Yonghong Hao Hao(Tianjin Normal University)、Jet-Chau Wen(National Yunlin University of Science and Technology)、Wenke Wang(Changan University)、Chairperson:Yonghong Hao Hao(Tianjin Normal University)、Wenke Wang(Changan University)、川本 健(埼玉大学大学院理工学研究科)

15:45 〜 16:00

[AGE28-07] Sensitivity Analysis and Research between Hydraulic Properties and Changes of Hydraulic Parameters during the Pumping Test

*JEN-TSUNG KUO1Jet-Chau Wen2,3 (1.National Yunlin University of Science and Technology、2.Professor of Safety Health and Environmental Engineering, National Yunlin University of Science and Technology、3.Research Center for Soil and Water Resources and Natural Disaster Prevention (SWAN), National Yunlin University of Science and Technology)

キーワード:Sensitivity Analysis, pumping test, Hydrogeological parameters

Sensitivity analysis occupies an important place in any hydrological modeling exercise. In this study we will conduct pumping test in a heterogeneous aquifer with controlled ambient and pumping conditions. Then conduct sensitivity analysis within the influence range of this pumping test and establish an effective sensitivity map, The sensitivity intensity mainly depends on the change of water level drawdown and the specific hydraulic parameters involved in the test, In this way, we can understand the sensitivity influence of each parameter in the test, and establish a perfect pumping test based on this experience.
First, we will use the analytical solution of the sensitivity equation to analyze the sensitivity coefficient. Afterwards, the hydrological calculation software VSAFT2 was used to carry out the modeling analysis of the model to obtain information such as the drawdown of the modeling field and the sensitivity map of hydraulic parameters, and compare the rationality. And extending the results of this study to the three-dimensional space field, it is possible to understand more clearly the direct correlation between the sensitivity impact and the test site during the time, so as to use the characteristics of the three-dimensional space concept to confirm various information and extend the discussion of the source. This will have a great contribution to the changes of water bodies in the future analysis area, groundwater recharge patterns and diffusion control of underground pollution.