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    四

    四国電力

    Shikoku Electric Power
    企业
    137论文总数
    524引用总数

    The Shikoku Electric Power Company (四国電力, Shikoku Denryoku, "Yonden" for short) is the electric provider for the 4 prefectures of the Shikoku island in Japan with few exceptions. Their image character is Akari-chan (あかりちゃん).On April 12, 1991 the company instituted Akari-chan as their image character and at the same time introduced the romanized nickname of Yonden (yon is another reading for 4, which occurs in Shikoku).The company controls numerous 'ko-gaisha' (subsidiaries), such as an electronic parts maker, a cable media company, electric services pro diver and also an internet service provider called "Akari-net". Those who sign a contract with Yonden may be eligible to get free internet access. Yonden institutes automatic filtering of web content..

    论文量&引用量时间轴

    机构学者

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    Naoki Nishizaka
    Naoki Nishizaka
    Shikoku Electric Power Co., Inc.
    论文:15引用:0H-index:0
    Michiharu Ikeda
    Michiharu Ikeda
    Shikoku Research Institute Inc.
    论文:13引用:0H-index:0
    Yoshio Yoshida
    Yoshio Yoshida
    The Kansai Electric Power Co., Inc
    论文:10引用:0H-index:0
    Masayuki Hatano
    Masayuki Hatano
    Electric Power Development Co., Ltd
    论文:8引用:0H-index:0
    Takeshi Tsuji
    Takeshi Tsuji
    National University Corporation Kyushu University, Earth Science and Technology
    论文:7引用:0H-index:0
    Koji Yamaji
    Koji Yamaji
    Shikoku Electric Power Co., Inc
    论文:6引用:0H-index:0
    yuki ohno
    yuki ohno
    Department of Civil and Architectural Engineering, Shikoku Electric Power Company Incorporation
    论文:6引用:0H-index:0
    Fujio Ishiguro
    Fujio Ishiguro
    Mitsubishi Electric Corporation
    论文:5引用:0H-index:0
    Yuichiro Amano
    Yuichiro Amano
    Civil Engineering Dept, Shikoku Research Institute
    论文:5引用:0H-index:0

    论文(137)

    年份
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    排序
    1The Aleatory Variability of Response Spectrum Amplitude Near the Seismic Source Based on a Single-Site Ground Motion Model for Crustal Earthquakes in Japan
    Tetsuo SHIOTA,Hongjun SI, Tomoyuki KIDO,Hiroyuki FUJIWARA
    2026Journal of Japan Association for Earthquake Engineering(2026)
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    2Characteristics of Far-Field Surface Ruptures Caused by Two Recent Strike-Slip Earthquakes: Insights into Fault Displacement Prediction
    Naoki Nishizaka, Kozo Onishi, Michiharu Ikeda, Hongjun Si, Kazuya Yamamoto, Takeshi Tsuji

    Probabilistic fault displacement hazard analysis (PFDHA) is essential for assessing the safety of critical facilities, both near the fault and in far-field areas (more than 3 km away). However, the conventional equations for strike-slip faults have limitations in reliably assessing far-field fault displacement hazards because of incomplete far-field surface rupture data, nonunique surface rupture classifications, and a failure to consider the triggering of pre-existing active faults. Recently, surface ruptures caused by two strike-slip earthquakes, the 2016 Kumamoto and the 2019 Ridgecrest earthquakes, have been intensively investigated based on remote sensing techniques and field surveys. In this study, we used these surface rupture data to revise conventional equations for strike-slip faults to capture characteristics of the attenuation of fault displacement in the far field as a function of distance from the subsurface earthquake source fault, without classifying surface ruptures as principal or distributed. In the revised equations, we introduced a new term related to the distance from the mapped, pre-existing active faults, and we considered reactivation of those faults and undetected faults around them. Our revised equations using individual earthquake datasets showed that both the conditional probability of surface rupture and the conditional probability of exceedance on the surface ruptures increase markedly near mapped, pre-existing active faults. The proximity to mapped, pre-existing active faults is more important than the conventional approach in far-field fault displacement prediction. The fault displacement characteristics seemed to differ at each tectonic setting. Revised equations developed in other regions where robust and extensive surface rupture data are available could be utilized for PFDHA at far-field sites with similar tectonic settings. The insights gained from this study might contribute to the improvement of PFDHA.

    2026Seismological Research Letters(2026)
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    3Practical Application of Probabilistic Fault Displacement Hazard Analysis Based on Distance from the Earthquake Source Fault
    Naoki NISHIZAKA, Kozo ONISHI,Yoshihiko ISHIKAWA, Hiromichi YANO,Jun'ichi MIYAKOSHI,Michiharu IKEDA,Takeshi TSUJI
    2026Journal of Japan Association for Earthquake Engineering(2026)
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    4STUDY ON DAMAGE ESTIMATION INDEX FOR STEEL FRAME OFFICE BUILDINGS
    Kotaro AKIYAMA,Mitsuhiro MIYAMOTO, Yuta NISHIUCHI, Ryosuke HINEI, Junya SAKAMOTO
    2026Journal of Structural Engineering B(2026)
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    5Estimation of Subsurface Structure Model and Bedrock Ground Motions Using Vertical Array Seismic Observation Records at a Crystalline Bedrock Site
    Naoki NISHIZAKA,Yoshihiko ISHIKAWA, Chiaki NAGAI, Yasutomo YAMAUCHI, Hiroaki SATO,Takeshi TSUJI
    2026Journal of Japan Association for Earthquake Engineering(2026)
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    合作机构(60)

    關西電力公司合作论文 26
    株式会社四国総合研究所合作论文 15
    電力中央研究所合作论文 15
    電源開発株式会社合作论文 15
    三菱重工业合作论文 13
    九州電力合作论文 12
    广岛大学合作论文 12
    香川大学合作论文 11
    北海道電力合作论文 10
    东京大学合作论文 9

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