The University of Tokyo · 공학
Shinji Nakaya 교수의 연구실은 지하수 순환과 지질학적 유체의 이동을 안정성 동위원소(tracer)를 활용해 규명하는 데 초점을 맞추고 있으며, 지진 발생 메커니즘과 다중 척도의 지진 활동성 분석을 통해 대규모 지진의 전조 현상과 고장 파손 메커니즘을 해석합니다. 특히, 다중 척도 분석(Multifractal analysis)과 분수기하학적 모델링을 통해 지하 구조의 연결성 및 파손 전파 특성을 수치적으로 분석하며, 지속 가능한 자원 관리 및 자연재해 예측에 기여하고자 합니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
Stable isotopes of oxygen and hydrogen have the potential to serve as tracers for both source and flow paths in a groundwater system. The ratios of stable isotopes of oxygen ( δ 18 O) and hydrogen ( δ D) can be used as natural tracer parameters to separate multiflow groundwater paths by applying a simple inversion analysis method to determine the differences between observed and calculated δ 18 O and δD data in a simple mixing model. The model presented here assumes that the distribution of natu
The b value of an earthquake catalogue, defined as the slope of the Gutenberg‐Richter frequency‐magnitude relationship (log N = a − bM ), is typically close to unity in many tectonic settings. However, analysis of seismicity data for the subducting slab along the Kuril Trench reveals a zone of anomalously low b values near the hypocenter of the 2003 Tokachi‐oki earthquake ( M 8.0). The zone of low b value (0.50–0.65) at depths of less than 80 km in the subducting slab changes in location with ti
The temporal variation of multifractal properties in spatial distribution of seismicity in the region affected by the main shock of the Western Tottori Prefecture, Japan, earthquake of October 6, 2000 ( M = 7.3) and its aftershock sequence are investigated. We use earthquake catalog data from 1985 to 2001 in order to understand the process and mechanism preceding a large, shallow earthquake. A monotonous decrease of multifractal dimension D q with a wide range of q appeared clearly for about two
The temporal variation in the b value (which is defined as the slope of the Gutenberg‐Richter frequency N –magnitude M relationship), log N = a − bM , and the multifractal dimension of the spatial distribution D q of seismic activity are analyzed using earthquake catalog data for regions affected by two recent large earthquakes in Japan. An anomalous decrease in D q and an increase in b value appear as a common seismic rupture response during the period of decreasing seismic energy release in th
We numerically investigate fracture connectivity and percolation conditions in fractured hard rocks using a three‐dimensional binary fractal fracture network (3D‐BFFN) model based on three fractal geometric parameters: the fractal dimensions (D 2 ) of the spatial distribution of fractures, the exponent of the power‐law cumulative fracture length distribution ( a ), and the maximum fracture length ( l max ) normalized by the domain length (L), l max /L. Numerical results clarify that the percolat
Velocities of reactive and non-reactive flows, where NO2 molecules were seeded, were measured by a NO-based Laser Induced Fluorescence (LIF) method. NO2 dilute gases were injected from a round tube with an inner diameter of 2 cm and its flow rate was 10 liters/minute or 20 liters/minute. Experiments were performed for 4 conditions—non-reactive flows of NO2 dilute gases at two flow rates, an unburnt gas flow of the premixed flame with NO2 addition, and an unburnt gas flow of the diffusion flame w