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Deciphering site response directivity in landslide-prone slopes from ambient noise spectral analysis
Highlights Analyzing ambient noise horizontal-to-vertical spectral ratios to study site response Evaluating site response defined resonance frequencies with amplification direction. All stations defined by pronounced site response directivity along the same azimuth. Directional spectral peaks matched with topographic and geologic features direction. The landslide is responsible for the directional spectral peaks.
Deciphering site response directivity in landslide-prone slopes from ambient noise spectral analysis
Highlights Analyzing ambient noise horizontal-to-vertical spectral ratios to study site response Evaluating site response defined resonance frequencies with amplification direction. All stations defined by pronounced site response directivity along the same azimuth. Directional spectral peaks matched with topographic and geologic features direction. The landslide is responsible for the directional spectral peaks.
Deciphering site response directivity in landslide-prone slopes from ambient noise spectral analysis
Kazemnia Kakhki, Mohsen (author) / Peters, Franciane Conceição (author) / Mansur, Webe João (author) / SadidKhoii, Ahmad (author) / Rezaei, Sadegh (author)
Engineering Geology ; 269
2020-02-18
Article (Journal)
Electronic Resource
English
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