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地熱工学における衝撃荷重下の礫岩の熱機械的挙動とメソスケールシミュレーション
Wei Cheng1,2, Huifeng He3, Chengfu Han3
1School of Petroleum Engineering, National Engineering Research Center for Oil & Gas Drilling and Completion Technology, Yangtze University, Wuhan 430100, China.
ACS omega
|January 26, 2026
まとめ
高温は礫岩を著しく弱め、衝撃下での強度を低下させ、脆性を増加させる。本研究では、温度が岩石の破壊にどのように影響するかを詳述しており、地熱工学の安全性にとって極めて重要である。
科学分野:
- 地盤工学
- 岩盤力学
- 材料科学
背景:
- インフラおよびエネルギープロジェクトにとって、極限条件下での礫岩の挙動を理解することは不可欠である。
- 高温と動的荷重は岩石の機械的特性を著しく変化させる。
研究 の 目的:
- 高温・動的荷重下の礫岩の機械的応答を調査する。
- 応力分布と亀裂進展に対する温度の影響を分析する。
主な方法:
- スプリット・ホプキンソン圧力バー(SHPB)システムを用いた衝撃圧縮試験。
- メソスコピック有限要素モデルを用いたシミュレーション。
- フラクタル次元解析。
主要な成果:
- 動的圧縮強度は温度上昇とともに減少し、25℃から300℃で約39.5%低下する。
- 高温はより脆い破壊、反射エネルギーの増加、散逸の減少につながる。
- 破砕度は温度とともに増加し、300℃ではより細かい粒子が生成される。
結論:
- 温度は礫岩の動的機械的応答と破壊モードに критически 影響を与える。
- 本研究結果は、高温層の安定性評価および地熱開発における岩石破砕の最適化に洞察を提供する。
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