• Title/Summary/Keyword: shipyard

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A Study on the Methods for Finding Initial Equilibrium Position of a Lifting Block for the Safe Erection (블록의 탑재 안전성을 위한 초기 평형 자세 탐색 방법 연구)

  • Chun, Do-Hyun;Roh, Myung-Il;Ham, Seung-Ho;Lee, Hye-Won
    • Journal of the Society of Naval Architects of Korea
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    • v.55 no.4
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    • pp.297-305
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    • 2018
  • In a shipyard, block lifting is an important process in the production of ships and offshore structures. Block lifting is a sensitive process because lifting blocks have to be erected with exact positions and orientations. If we use a numerical method for the process, it is important to find tensions of wires and positions of equalizers to maintain the initial equilibrium position of the block. At this time, equations of motion of the block should be solved to calculate the initial equilibrium position of the block. Because the solving technique changes according to the number of equalizers, a suitable equation for the corresponding problem is required. In this study, three types of equations are proposed to find the initial equilibrium position of the block according to the number of equalizers. The Newton-Raphson's method is used to solve nonlinear simultaneous equations and the optimization method is used to determine the appropriate solution to the undetermined problem. To evaluate the applicability of the proposed methods, the dynamic simulations are performed using the tensions calculated from the proposed methods, and the results are discussed. The results show that the proposed methods can be effectively used to determine initial equilibrium position of the block for the block lifting.

For 5-years the Longitudinal Study on the Effect of Noise Exposure and Aging to the Changes of Hearing Threshold Level (청력에 대한 연령과 소음 노출의 영향에 관한 5년간 청력역치 변화)

  • Chae, Chang Ho;Kim, Ja Hyun;Son, Jun Seok
    • Journal of Korean Society of Occupational and Environmental Hygiene
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    • v.25 no.4
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    • pp.573-583
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    • 2015
  • Objectives: This study was carried out to evaluate the effect of noise exposure and aging on changes in hearing threshold level and the relationship between age and noise. Materials: The author selected 274 male shipyard and assembly line workers as the noise exposed group and 582 males not exposed to noise as the general population group. Data were collected from five years of consecutive annual audiometric tests performed from 2008 to 2012. Results: In the general population and noise exposed groups, there was a reverse phenomenon that hearing threshold level for 2009 was lower than that of 2008, which seemed to be due to the learning effect, but from 2010 hearing threshold level increased. In the noise exposed group, the mean hearing threshold level in the left ear was significantly higher than that for right ear. In the general population group, the older was the age, the higher was the hearing threshold level, especially at 4000 Hz. In the general population and noise exposed groups, frequency, age group and noise exposure independently affected hearing threshold level, and there was no relationship between age and noise exposure. Over all frequencies, the change of hearing threshold level was larger in the noise exposed group than in the general population group. In the noise exposed group below thirty years old, the change at 4000 Hz was remarkable. Conclusions: Age and noise exposure seem to affect hearing threshold level independently and contribute to an additive effect on hearing threshold level.

Big Data Platform Based on Hadoop and Application to Weight Estimation of FPSO Topside

  • Kim, Seong-Hoon;Roh, Myung-Il;Kim, Ki-Su;Oh, Min-Jae
    • Journal of Advanced Research in Ocean Engineering
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    • v.3 no.1
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    • pp.32-40
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    • 2017
  • Recently, the amount of data to be processed and the complexity thereof have been increasing due to the development of information and communication technology, and industry's interest in such big data is increasing day by day. In the shipbuilding and offshore industry also, there is growing interest in the effective utilization of data, since various and vast amounts of data are being generated in the process of design, production, and operation. In order to effectively utilize big data in the shipbuilding and offshore industry, it is necessary to store and process large amounts of data. In this study, it was considered efficient to apply Hadoop and R, which are mostly used in big data related research. Hadoop is a framework for storing and processing big data. It provides the Hadoop Distributed File System (HDFS) for storing big data, and the MapReduce function for processing. Meanwhile, R provides various data analysis techniques through the language and environment for statistical calculation and graphics. While Hadoop makes it is easy to handle big data, it is difficult to finely process data; and although R has advanced analysis capability, it is difficult to use to process large data. This study proposes a big data platform based on Hadoop for applications in the shipbuilding and offshore industry. The proposed platform includes the existing data of the shipyard, and makes it possible to manage and process the data. To check the applicability of the platform, it is applied to estimate the weights of offshore structure topsides. In this study, we store data of existing FPSOs in Hadoop-based Hortonworks Data Platform (HDP), and perform regression analysis using RHadoop. We evaluate the effectiveness of large data processing by RHadoop by comparing the results of regression analysis and the processing time, with the results of using the conventional weight estimation program.

Hormesis as a Confounding Factor in Epidemiological Studies of Radiation Carcinogenesis

  • Sanders Charles L.
    • Journal of Radiation Protection and Research
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    • v.31 no.2
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    • pp.69-89
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    • 2006
  • Biological mechanisms for ionizing radiation effects are different at low doses than at high doses. Radiation hormesis involves low-dose-induced protection and high-dose-induced harm. The protective component is associated with a reduction in the incidence of cancer below the spontaneous frequency, brought about by activation of defensive and repair processes. The Linear No-Threshold (LNT) hypothesis advocated by the International Commission on Radiological Protection (ICRP) and the Biological Effects of ionizing Radiation (BEIR) Report VII for cancer risk estimations Ignores hormesis and the presence of a threshold. Cancer incidences significantly less than expected have been found in a large number of epidemiological studies including, airline flight personnel, inhabitants of high radiation backgrounds, shipyard workers, nuclear site workers in scores of locations throughout the world, nuclear power utility workers, plutonium workers, military nuclear test site Participants, Japanese A-bomb survivors, residents contaminated by major nuclear accidents, residents of Taiwan living in $^{60}Co$ contaminated buildings, fluoroscopy and mammography patients, radium dial painters, and those exposed to indoor radon. Significantly increased cancer was not found at doses <200 $mSv^*$. Evidence for radiation hormesis was seen in both sexes for acute or chronic exposures, low or high LET radiations, external whole- or partial body exposures, and for internal radionuclides. The ubiquitous nature of the Healthy Worker Effect (HWE)-like responses in cellular, animal and epidemiological studies negates the HWE as an explanation for radiation hormesis. The LNT hypothesis is wrong and does not represent the true nature of the dose-response relationship, since low doses or dose-rates commonly result in thresholds and reduce cancer incidences below the spontaneous rate. Radiation protection organizations should seriously consider the cost and health implications of radiation hormesis.

Creative City Policy in France: Case studies on Creative City Development Projects of Nantes (프랑스의 창조도시정책: 낭트의 창조도시 개발사업을 중심으로)

  • Bae, Jun Gu
    • Journal of the Economic Geographical Society of Korea
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    • v.19 no.4
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    • pp.616-629
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    • 2016
  • This study aims to analyze a creative city development case of the Nantes City in France focused on vitalizing creativity by urban regeneration and to get some policy implications through reflecting on process, governance and performance of the Nantes case. The Nantes City tried to overcome its regional economic depression caused by closing shipyard through its creative city program. The Nantes creative city program has been maintained for 20 years, which succeeded in both transforming economic structure of the Nantes city and improving the image of it. As a result, the Nantes city is regarded as a best city for living in France. It established own city model by participating in European projects, referring to cases of other cities and adopting specialists' views. In the process of creative city, the Nantes distinguished itself from other cities in sizes and circumstances and devoted itself to interactions between the city and culture projects, focused on clear objectives and dynamic co-works. In addition, the Nantes changed creatively buildings and spaces to regenerate deserted regions, and established some high valueadded creative industry on the basis of historic and cultural resources.

Risk Assessment for Cardiocerebrovascular Disease in Middle Age Women Workers (중년여성 근로자의 뇌심혈관질환 발병위험도 평가)

  • Choi, Jun-Young;Jeon, Mi-Yang;Seo, Yeong-Mi;Choi, So-Young
    • Journal of the Korea Convergence Society
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    • v.8 no.8
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    • pp.137-145
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    • 2017
  • The purposed of this study was to identify cardiocerebrovascular disease risk assessment and the factors that affect cardiocerebrovascular disease risk. The subjects of this study were 1340 middle age women worker in one shipyard. This study was base on worker health check up data. Data were analyzed using SPSS18.0 program. "healthy group" were 1078(80.4%), "low risk group" were 45(3.4%), "moderate risk group" were 150(11.2%), "high risk group" were 67(5.0%). Age, HDL, LDL, smoking, family history of stroke, hypertension were the factors that affected the risk cardiocerebrovascular disease. Results of this study can be used as fundamental data for developing cardiocerebrovascular disease preventive program in middle aged women.

Study on System Support for Offshore Plant Piping Process Using 3D Simulator

  • Kim, Hyun-Cheol;Lee, Gyu-Hong
    • Journal of Ocean Engineering and Technology
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    • v.34 no.3
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    • pp.217-226
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    • 2020
  • An offshore plant is an offshore platform that can process oil and gas resources in rough seas with a poor working environment. Moreover, it is a complex structure with different types of offshore facilities and a large amount of outfitting that connects different offshore installations. In particular, an enormous amount of various piping materials is installed in a relatively narrow space, and thus, the difficulty of working is relatively high compared to working in ships or ground plants. Generally, when the 3D detailed design is completed, an offshore plant piping process is carried out at the shipyard with ISO 2D fabrication drawings and ISO 2D installation drawings. If a worker wants to understand the three-dimensional piping composition in the working area, he can only use three-dimensional viewers that provide limited functionality. As offshore plant construction progresses, correlating work with predecessors becomes more complicated and rework occurs because of frequent design changes. This viewer function makes it difficult to identify the 3D piping structure of the urgently needed part. This study deals with the process support method based on a system using a 3D simulator to improve the efficiency of the piping process. The 3D simulator is based on the Unity3D engine and can be simulated by considering the classification and priority of 3D models by the piping process in the system. Further, it makes it possible to visualize progress information of the process. In addition, the punch content can be displayed on the 3D model after the pipe inspection. Finally, in supporting the data in relation to the piping process, it is considered that 3D-simulator-supported piping installing could improve the work efficiency by more than 99% compared to the existing method.

Cumulative Angular Distortion Curve of Multi-Pass Welding at Thick Plate of Offshore Structures

  • Ha, Yunsok;Choi, Jiwon
    • Journal of Advanced Research in Ocean Engineering
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    • v.1 no.2
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    • pp.106-114
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    • 2015
  • In the fabrication of offshore oil and gas facilities, the significance of dimension control is growing continuously. But, it is difficult to determine the deformation of the structure during fabrication by simple lab tests due to the large size and the complicated shape. Strain-boundary method (a kind of shrinkage method) based on the shell element was proposed to predict the welding distortion of a structure effectively. Modeling of weld geometry in shell element is still a difficult task. In this paper, a concept of imaginary temperature pair is introduced to handle the effect of geometric factors such as groove shape, plate thickness and pass number, etc. Single pass imaginary temperature pair formula is derived from the relation between the groove area and the FE mesh size. By considering the contribution of each weld layer to the whole weldment, multi-pass imaginary temperature is also derived. Since the temperature difference represents the distortion increment, cumulative distortion curve can be drawn by integrating the temperature difference. This curve will be a useful solution when engineers meet some problems occurred in the shipyard. A typical example is shown about utilization of this curve. Several verifications are conducted to examine the validity of the proposed methodology. The applicability of the model is also demonstrated by applying it to the fabrication process of the heavy ship block. It is expected that the imaginary temperature model can effectively solve the modeling problem in shell element. It is also expected that the cumulative distortion curve derived from the imaginary temperature can offer useful qualitative information about angular distortion without FE analysis.

A Study on Improvement of Management Supervisor Education for Large Shipyard (대형 조선소 관리감독자 교육 개선에 관한 연구)

  • Han, Sam Sung;Kang, Ji Woong;Yun, Yu Seong
    • Journal of the Korean Society of Safety
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    • v.32 no.6
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    • pp.110-115
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    • 2017
  • Currently, the Ministry of Employment and Labor is strengthening monitor programs in regards to occupational industrial safety and health act compliance in business operations. However, industrial accidents occur persistently. Therefore, the study strives to diagnose and understand the issues in its educational stature, targeting managing supervisors in large scale shipbuilding industry whose completed the regular safety and health act sessions. This research considered a total of 3,252 employees whose completed theory-based cluster sessions for three months since February, 2016. The group is divided into two categories; 551 participants whose completed 8 hours of training and 2,701 participants whose completed 4 hours of training. Technical statistics were used to measure the knowledge of safety and health, educational environment, curriculum and educational effects on managing supervisors. A t-test was used to analyze the difference between the training hours. The result indicated that the target participants' knowledge on safety and health before the session was 50.24 points average (100 point scale), showing low standards in general. In depth analysis indicated that both 8 hours and 4 hours groups scored lowest in educational methods and communications between the lecturer and participants factors within the educational curriculum category. Meanwhile, transition in knowledge acquirement, work attitude, and work behaviors scored the highest in the analysis, showing a high satisfaction factors in educational effects. Therefore, the improvement in educational time and period can increase the efficacy of the educational programs. Also, theory-based cluster programs based on lectures suggests positive influence in knowledge acquirement and behavioral transitions.

Numerical Study on Shape Optimization of a Heaving Hemisphere Wave Energy Converter (상하 운동 반구형 파력 발전기의 최적 형상 조건 수치해석)

  • Kim, Sung-Jae;Koo, Weoncheol;Heo, Kyung-Uk;Heo, Sanghwan
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.18 no.4
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    • pp.254-262
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    • 2015
  • Parametric study on submerged body shape of an oscillating hemisphere point absorber was conducted to predict the optimal relation between radius and draft of the body. As an additional damping due to power takeoff system, the optimal damping same as wave radiation damping was applied to the PTO system to produce the maximum wave power. Body response spectrum and power spectrum were obtained for various peak frequencies on wave spectra. It was found that the maximum power can be generated when the peak frequency of available wave power was 20% greater than that of wave spectrum.