교육.훈련

Characterization of Seismic Sources
피앤에스컨설팅은 ‘지진원 특성화’ 과정을 제공합니다.

이 과정은 3일 과정으로서 대면 강의로 이루어집니다(상세과정 보기).

교육방법: 대면 강의
교육기간: 2025.04.15(화) ~2025.04.17(목)
교육장소: 국립부경대학교 대연캠퍼스 장보고관 3층 리더십홀
준비물: 노트북
교 육 비
- 일반: 1,500,000원/인
- 학생: 500,000원/인
특전
수강생 전원에게 SeisParEst 6개월 라이센스 제공
같은 기관/단체에서 2인 이상 수강 시 SeisParEst 1년 라이센스 제공
참가신청

교육 시작 2주 전까지 참가신청서 를 메일로 통지(pnsol2023@gmail.com)

- 학생(학부생, 대학원생)의 경우 재학증명서 첨부

- 같은 기관에서 여러 명이 참가하는 경우 이 양식 이용

교육 참가자 이름으로 교육비 계좌입금(우리은행 1005-604-735789, 주식회사 피앤에스컨설팅)

일차 강의 내용
1일 차 Preparation for training
Program download & installation

Seismic hazard analysis
DSHA
PSHA

Uncertainties
Aliatory uncertainty
Epistemic uncertainty

PSHA theory
Elementary probability theory
Integration of aliatory uncertainty
Integration of epistemic uncertainty

PSHA inputs
Seismic source & source model
Classification of seismic sources
Determination of seismicity parameters
2일 차 Practice I
SeisHazCal user’s manual
Practice with Test Set I
Practice with Test Set II
3일 차 Practice II
SeisHazPrPr user’s manual
Practice with Test Set III
Seismic hazard mapping
4일 차 Performance-based approach
Theory
Example analysis
Seismic hazard calculation
Construction of seismic hazard curves
Hazard de-aggregation & controlling earthquakes
Uniform hazard spectra
Evaluation of GMRS
5일 차 Comparison of GMPEs
DrawGMM user’s manual
Example analysis
- NGA West 2 GMPEs
일차 강의 내용
1일 차 Preparation for training
Program download & installation

Fundamental statistics
Probability theory
Sample mean & variance
Frequently used distributions
Special topics (order statistics, one function of two random variables, central limit theorem)
Distribution of sample mean & variance
Probabilistic estimation
Interval estimation
Point estimation (maximum likelihood method, method of moments, least-squares method)
Statistical test
Statistical hypotheses
Error types
Test Procedure
Test examples (population mean, population variance, distributions)
Monte Carlo Simulation
Parametric function
Transform method
Rejection method
2일 차 Preparation of earthquake catalogs
Origin parameters
Integration of earthquake catalogs

Completeness analysis of earthquake catalogs
Background
Categories of completeness analysis methods
Catalog-based completeness analyses: six methods

Magnitude distribution models
Exponential model
Characteristic earthquake model
Characterization of seismic sources
Types of seismic sources and their parameters
3일 차 Estimation of the Richter-b
Estimation of earthquake occurrence rates
Estimation of Mmax: 11 methods
Iterative scheme for the simultaneous estimation

Use of geologic & geodetic information
Estimation of Mmax
Estimation of earthquake occurrence rates

Topical issues
Effect of catalog integration
Earthquake double-counting

Practice with SeisParEst
User manual
Seismic source specific catalog: culling earthquakes
Evaluation of catalog completeness (6 methods)
11 methods for evaluation of seismic source characteristics
Interpretation & use of evaluation results