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Titlebook: Engineering Geology for a Habitable Earth: IAEG XIV Congress 2023 Proceedings, Chengdu, China; Volume 5: Megacity D Sijing Wang,Runqiu Huan

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发表于 2025-3-27 00:32:47 | 显示全部楼层
https://doi.org/10.1007/978-3-642-52068-6plex system to reduce the computational consumption. The presented model is tested against with existing benchmark to verify its feasibility. The results show that the new model owns a reliable ability to capture the dynamic characteristics of submarine landslide and its induced tsunami wave generat
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Alain Bélanger,Patrick Sabourinhan 110 thousand m.. Since the mid-80 s of the twentieth century, the landslide on the Oreanda site has been stable. The current stage of landslide activity began in 2007. Complex engineering geological investigations were performed on the site. The obtained results was the basis of the performed sl
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Full Thickness Skin Graft (FTSG)ved based on SNR. Four models are studied, which are the proposed AR model and LSTM model with the initial time series at irregular intervals, the proposed AR model and LSTM model with the augmented time series at regular intervals. The prediction effects of four models are compared and analyzed by
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https://doi.org/10.1007/978-1-4842-5778-4followed by pre-processing of the observed data. The source wavelet is estimated using a source correction filtering technique. A pre-conditioned conjugate gradient algorithm updates the model, and a multi-scale strategy is employed to escape local minima. We applied the proposed Love-wave full wave
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Machine Learning Fundamental Concepts,of the Great Wall of the Ming Dynasty, basic physical and mechanical properties and SEM experiment of the Great Wall soil were carried out, and the main mineral composition, chemical composition, and microstructure characteristics of rammed soil of the Great Wall were obtained. According to the natu
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Tools for development on HANA XSA,lly analysed, including geological structure, engineering geology, hydrogeology, environmental geology and ground and underground space status. The corresponding research results can be used as reference for underground space development and utilization in coastal megacities.
发表于 2025-3-28 00:37:47 | 显示全部楼层
Carrying Capacity of Urban Underground Space and Influencing Factors Analysis for a Costal Megacitylly analysed, including geological structure, engineering geology, hydrogeology, environmental geology and ground and underground space status. The corresponding research results can be used as reference for underground space development and utilization in coastal megacities.
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