• 제목/요약/키워드: Wave models

검색결과 920건 처리시간 0.03초

북한이탈주민 정신건강의 종단적 추세: 외로움, 우울, 삶의 만족도에 대한 4년 추적 연구 (Longitudinal Trajectories of Mental Health Among North Korean Defectors: A Four-Year Follow-Up Study of Loneliness, Depression, and Life Satisfaction)

  • 박소희;홍진표;안지현;이혜린;김명현;장혜인
    • 대한불안의학회지
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    • 제17권2호
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    • pp.49-58
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    • 2021
  • Objective : The purpose of this study was to investigate the longitudinal trajectories of life satisfaction, loneliness, and depression and to identify the factors that influence these trajectories in North Korean Defectors (NKD). Methods : NKD (n=300) who registered in the multi-regional adaptation center (Hana Center), within three years of settling in South Korea, were recruited into this study. Life satisfaction, loneliness, and depression were assessed with self-report questionnaires over a period of 4 years (7 waves of data). Latent growth modeling was conducted to assess the changes in life satisfaction, loneliness, and depression. Results : Findings from both unconditional and conditional models (with gender, South Korea settlement age, household income, marital status, and PTSD at wave 1) indicated a linear increase in loneliness and depression, and a linear decrease in life satisfaction over the 4-year period. In the conditional model, gender predicted the intercept of life satisfaction and depression. In addition, PTSD predicted the intercept of life satisfaction, loneliness, and depression and slope of depression. Conclusion : Our finding suggests that the mental health of NKD tends to deteriorate over time after settling in South Korea. Therefore, continuous support is necessary for their successful adaptation to the South Korean Society.

기혼자녀와 부모의 특성이 세대 간 거주근접성에 미치는 영향 (Effects of Married Child and Parent Characteristics on Intergenerational Residential Proximity)

  • 최희정;남보람
    • 한국가족관계학회지
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    • 제21권1호
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    • pp.123-141
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    • 2016
  • Objective: This study examined correlates of residential proximity between parents and non-coresident married children. A majority of existing studies on intergenerational living arrangement has focused on exploring factors that are associated with intergenerational coresidence only, despite an increasing number of parents and children who do not live together but close by. Because residential proximity facilitates frequent contacts and support exchanges between the two generations, it is important to understand its correlates. Method: The data were drawn from first wave of the Korean Longitudinal Study of Ageing (KLoSA, 2006), a nationally representative sample of adults 45 years or older and their spouses. The analytic sample consisted of 3,950 parents with 10,946 non-coresident married children. Both regression with robust standard errors and sibling fixed effects regression models were estimated using the reg and xtreg procedures in STATA. Results: Younger, less depressed, and more physically impaired parents lived closer to at least one of their married children (within a 30-minute distance by public transportation). Fathers (compared to mothers), parents living in cities (compared to those living in rural areas), parents with at least one co-resident child or fewer numbers of married children tended to have at least one married child living nearby. With regard to child characteristics, married children who were less educated, homeowners, and had more children lived closer to their parents. Also, sons (compared to daughters) lived in closer distance to their parents. Conclusion: Overall, findings suggest that intergenerational residential proximity may primarily be motivated by the childcare needs of married children or parents' needs for assistance with functional impairment. Also, the traditional patrilineal norms of intergenerational support may still be a critical factor in residential decisions as observed in the difference between married sons and daughters in proximity to their parents.

The Error of the Method of Angular Sections of Microwave Sounding of Natural Environments in the System of Geoecological Monitoring

  • Fedoseeva, E.V.;Kuzichkin, O. R.
    • International Journal of Computer Science & Network Security
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    • 제21권6호
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    • pp.47-53
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    • 2021
  • The article deals with the problems of application of microwave methods in systems of geoecological monitoring of natural environments and resources of the agro-industrial complex. It is noted that the methods of microwave radiometry make it possible, by the power of the measured intrinsic radio-thermal radiation of the atmosphere, when solving inverse problems using empirical and semi-empirical models, to determine such parameters of the atmosphere as thermodynamic temperature, humidity, water content, moisture content, precipitation intensity, and the presence of different fractions of clouds.In addition to assessing the meteorological parameters of the atmosphere and the geophysical parameters of the underlying surface based on the data of microwave radiometric measurements, it is possible to promptly detect and study pollution of both the atmosphere and the earth's surface. A technique has been developed for the analysis of sources of measurement error and their numerical evaluation, because they have a significant effect on the accuracy of solving inverse problems of reconstructing the values of the physical parameters of the probed media.To analyze the degree of influence of the limited spatial selectivity of the antenna of the microwave radiometric system on the measurement error, we calculated the relative measurement error of the ratio of radio brightness contrasts in two angular directions. It has been determined that in the system of geoecological monitoring of natural environments, the effect of background noise is maximal with small changes in the radiobrightness temperature during angular scanning and high sensitivity of the receiving equipment.

디지털 데이터 중심의 AI기반 환경인지 생산기술 개발 방향 (Development of AI-based Cognitive Production Technology for Digital Datadriven Agriculture, Livestock Farming, and Fisheries)

  • 김세한
    • 전자통신동향분석
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    • 제36권1호
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    • pp.54-63
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    • 2021
  • Since the recent COVID-19 pandemic, countries have been strengthening trade protection for their security, and the importance of securing strategic materials, such as food, is drawing attention. In addition to the cultural aspects, the global preference for food produced in Korea is increasing because of the Korean Wave. Thus, the Korean food industry can be developed into a high-value-added export food industry. Currently, Korea has a low self-sufficiency rate for foodstuffs apart from rice. Korea also suffers from problems arising from population decline, aging, rapid climate change, and various animal and plant diseases. It is necessary to develop technologies that can overcome the production structures highly dependent on the outside world of food and foster them into export-type system industries. The global agricultural industry-related technologies are actively being modified via data accumulation, e.g., environmental data, production information, and distribution and consumption information in climate and production facilities, and by actively expanding the introduction of the latest information and communication technologies such as big data and artificial intelligence. However, long-term research and investment should precede the field of living organisms. Compared to other industries, it is necessary to overcome poor production and labor environment investment efficiency in the food industry with respect to the production cost, equipment postmanagement, development tailored to the eye level of field workers, and service models suitable for production facilities of various sizes. This paper discusses the flow of domestic and international technologies that form the core issues of the site centered on the 4th Industrial Revolution in the field of agriculture, livestock, and fisheries. It also explains the environmental awareness production technologies centered on sustainable intelligence platforms that link climate change responses, optimization of energy costs, and mass production for unmanned production, distribution, and consumption using the unstructured data obtained based on detection and growth measurement data.

5G 주파수 대역에서의 실내 복도 전파 경로손실 측정 및 분석 (Measurement and analysis of indoor corridor propagation path loss in 5G frequency band)

  • 김형중;최동유
    • 한국정보통신학회논문지
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    • 제26권5호
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    • pp.688-693
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    • 2022
  • 본 논문에서는 5G 이동통신에 활용되고 있는 주파수 대역인 3.7 GHz, 28 GHz에 대한 건물 복도에서 채널 전파 경로손실을 측정하고, CI (Close-In), FI (Floating-Intercept) 채널 모델과 비교·분석하였다. 전파 경로손실 측정을 위해 송신기 (Tx)로부터 수신기 (Rx)를 10 m 씩 이동시키며 측정을 수행하였다. 측정 결과 3.7 GHz, 28 GHz에서의 CI 모델의 PLE (Path Loss Exponent)값은 각각 1.5293, 1.7795이며, 표준편차는 각각 9.1606, 8.5803으로 분석되었다. FI 모델에서 α값은 각각 79.5269, 70.2012, β값은 각각 -0.6082, 1.2517이며, 표준편차는 각각 5.8113, 4.4810으로 분석되었다. CI 모델과 FI 모델을 통한 분석 결과에서 FI 모델의 표준편차가 CI 모델에 비해 적으므로 FI 모델이 실제 측정 결과와 유사함을 알 수 있었다.

포화된 경사 사질토 지반의 액상화 수치모델 거동평가 (Evaluation of Liquefaction Model using Dynamic Centrifuge Test)

  • 이진선;이상운
    • 한국지반공학회논문집
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    • 제38권11호
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    • pp.31-42
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    • 2022
  • 본 논문에서는 원심모형시험을 이용한 국제공동연구인 LEAP-2017의 결과를 이용하여 액상화 수치모델의 거동에 대한 검증을 실시하였다. 동적원심모형시험은 Ottawa F-65모래로 수면 아래 조성된 경사각 5°의 지반에 1Hz 테이퍼형 사인파를 가진하여 시행되었다. 원심모형시험의 원형스케일로 모델링 된 수치해석 모델은 유한차분법을 이용한 2차원 및 3차원 해석을 시행하였다. 수치해석의 검증은 깊이별 가속도와 간극수압 시간이력, 잔류변위에 대해 이루어 졌다. 검증결과, 모든 모델에서 시험과 유사한 가속도 시간이력을 나타내었으나, 일부모델이 나타내는 간극수압의 변화는 시험결과와 차이를 나타내었다. 수치해석결과로 나타난 액상화 후 잔류변위는 원심모형시험 대비 매우 작은 크기로 확인되어, 이에 대해서는 추후 LEAP-2017에 참여한 다른 기관의 시험결과와 비교분석이 필요한 것으로 확인되었다.

표준관입시험 및 시추공 정보를 이용한 국내 전단파속도 예측 (VS Prediction Model Using SPT-N Values and Soil Layers in South Korea)

  • 허기석;곽동엽
    • 한국지반공학회논문집
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    • 제38권8호
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    • pp.53-66
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    • 2022
  • 국토지반정보 통합DB센터(GeoInfo)는 전국 건설현장에서 생산되는 많은 수의 지반조사결과 자료를 배포하고 있다. GeoInfo에는 많은 수의 표준관입시험(Standard Penetration Test, SPT) 자료가 존재하지만, 전단파속도(VS) 데이터는 아직 부족한 실정이다. 따라서 풍부한 SPT 데이터로부터 VS를 예측하기위해 본 연구에서는 GeoInfo에서 배포하는 자료를 이용하여 새로운 N-VS 모델을 제안하였다. 본 연구는 지층 또는 토층에 구분없이 하나의 모델을 제안한다. 단, 지층에 따라 VS의 최대값을 설정하여 N치의 과대 예측에 의한 VS의 과대 예측을 방지하였다. 모델 개발에 사용하지 않은 검증용 데이터를 활용하여 선행연구에서 제시한 N-VS모델과 본 연구에서 개발한 모델을 비교해 본 결과, 본 연구에서 제안한 모델이 가장 우수한 성능을 보여주었다. 제안한 N-VS 모델은 GeoInfo의 많은 데이터로부터 유추된 경험식이기에 GeoInfo의 SPT 데이터를 VS로 변환하는데 가장 적합할 것으로 판단된다.

Seismic isolation of nuclear power plant based on layered periodic foundation

  • Mi Zhao;Qun Chen;Junqi Zhang;Xiuli Du
    • Earthquakes and Structures
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    • 제24권4호
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    • pp.259-274
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    • 2023
  • In this paper, mechanical properties of periodic foundation made of concrete and rubber are investigated by a parametric study using the finite element method (FEM). Periodic foundation is a special type of seismic isolation foundation used in civil engineering, which is inspired by the meso-scale structure of phononic crystals in solid-state physics. This type of foundation is capable of reducing the seismic wave propagating though the foundation, therefore providing additional protection for the structures. In the FEM analysis, layered periodic foundation is frequently modelled due to its simplicity in numerical modeling. However, the isolation effect of periodic foundation on nuclear power plant has not been fully discussed to the best knowledge of authors. In this work, we construct four numerical models of nuclear power plant with different foundations to investigate the seismic isolation effects of periodic foundations. The results show that the layered periodic foundation can increase the natural period of the nuclear power plant like traditional base isolation systems, which is beneficial to the structures. In addition, the seismic response of the nuclear power plant can also be effectively reduced in both vertical and horizontal directions when the frequencies of the incident waves fall into some specific frequency bandgaps of the periodic foundation. Furthermore, it is demonstrated that the layered periodic foundation can reduce the amplitude of the floor response spectrum, which plays an important role in the protection of the equipment.

Predicting rock brittleness indices from simple laboratory test results using some machine learning methods

  • Davood Fereidooni;Zohre Karimi
    • Geomechanics and Engineering
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    • 제34권6호
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    • pp.697-726
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    • 2023
  • Brittleness as an important property of rock plays a crucial role both in the failure process of intact rock and rock mass response to excavation in engineering geological and geotechnical projects. Generally, rock brittleness indices are calculated from the mechanical properties of rocks such as uniaxial compressive strength, tensile strength and modulus of elasticity. These properties are generally determined from complicated, expensive and time-consuming tests in laboratory. For this reason, in the present research, an attempt has been made to predict the rock brittleness indices from simple, inexpensive, and quick laboratory test results namely dry unit weight, porosity, slake-durability index, P-wave velocity, Schmidt rebound hardness, and point load strength index using multiple linear regression, exponential regression, support vector machine (SVM) with various kernels, generating fuzzy inference system, and regression tree ensemble (RTE) with boosting framework. So, this could be considered as an innovation for the present research. For this purpose, the number of 39 rock samples including five igneous, twenty-six sedimentary, and eight metamorphic were collected from different regions of Iran. Mineralogical, physical and mechanical properties as well as five well known rock brittleness indices (i.e., B1, B2, B3, B4, and B5) were measured for the selected rock samples before application of the above-mentioned machine learning techniques. The performance of the developed models was evaluated based on several statistical metrics such as mean square error, relative absolute error, root relative absolute error, determination coefficients, variance account for, mean absolute percentage error and standard deviation of the error. The comparison of the obtained results revealed that among the studied methods, SVM is the most suitable one for predicting B1, B2 and B5, while RTE predicts B3 and B4 better than other methods.

Systematic comparisons among OpenFAST, Charm3D-FAST simulations and DeepCWind model test for 5 MW OC4 semisubmersible offshore wind turbine

  • Jieyan Chen;Chungkuk Jin;Moo-Hyun Kim
    • Ocean Systems Engineering
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    • 제13권2호
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    • pp.173-193
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    • 2023
  • Reliable prediction of the motion of FOWT (floating offshore wind turbine) and associated mooring line tension is important in both design and operation/monitoring processes. In the present study, a 5MW OC4 semisubmersible wind turbine is numerically modeled, simulated, and analyzed by the open-source numerical tool, OpenFAST and in-house numerical tool, Charm3D-FAST. Another commercial-level program FASTv8-OrcaFlex is also introduced for comparison for selected cases. The three simulation programs solve the same turbine-floater-mooring coupled dynamics in time domain while there exist minor differences in the details of the program. Both the motions and mooring-line tensions are calculated and compared with the DeepCWind 1/50 scale model-testing results. The system identification between the numerical and physical models is checked through the static-offset test and free-decay test. Then the system motions and mooring tensions are systematically compared among the simulated results and measured values. Reasonably good agreements between the simulation and measurement are demonstrated for (i) white-noise random waves, (ii) typical random waves, and (iii) typical random waves with steady wind. Based on the comparison between numerical results and experimental data, the relative importance and role of the differences in the numerical methodologies of those three programs can be observed and interpreted. These comparative-study results may provide a certain confidence level and some insight of potential variability in motion and tension predictions for future FOWT designs and applications.