• Title/Summary/Keyword: 설비자재

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A Sludge Collector Selection Model by Life Cycle Cost Analysis (LCC분석에 의한 슬러지수집기 선정 모델)

  • Lee, Seung-Hoon;Woo, Yu-Mi;Lee, Sung-Rak;Koo, Kyo-Jin;Hyun, Chang-Taek;Hong, Tae-Hoon
    • Korean Journal of Construction Engineering and Management
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    • v.7 no.6
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    • pp.175-184
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    • 2006
  • This study focused on developing Life Cycle Cost(LCC) analysis model for selecting sludge collectors in wastewater treatment system and applying the model to a case study. Cost items are examined through literature review and historical data of a facility. Analysis period, discount rate, energy cost escalation ratio are assumed to reasonable level. Monetary evaluation is performed using historical data and estimations from vendors. Sensitive analysis is executed using Monte Carlo Simulation for assumed factors. Interviews with operators, vendors, constructors, managers are conducted to define factors which indicates ease of maintenance, ease of delivery, technical performance, efficiency, environmental friendship. Factors are representing technical and social factors. Results from LCC analysis and qualitative analysis are evaluate together with Weighted Matrix Evaluation Methods for optimum alternative of sludge collectors.

Suggestion for Integrated Process Quality Control for Facility Management of Smart City at Construction Stage (Smart City 시공단계 시설물 통합품질관리 프로세스 제안)

  • Park, In-Woo;Kim, In-Han;Choi, Jung-Sik
    • Journal of the Korea Institute of Building Construction
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    • v.16 no.6
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    • pp.535-544
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    • 2016
  • Korean government is promoting "K-Smart City" to overseas market which is an integrated solution of construction industry with ICT(Information and Communciations Technologies) industry. Due to nature of Smart City, construction quality and the development quality of the facilities need to be established to improve the overall quality. However, guidelines and regulations to initiate quality control for Smart City are behind the actual demand. This deficiency is bringing quality control for construction and ICT to be controlled separately causing lack of synergy and resulting in overall quality degradation. This research is designed to improve the construction quality of Smart City during its establishment stage by integrating ICT system with on-site construction (Integrated control center and on-site equipment). The adoption of this research to a real Smart City case had resulted in 22% reduction of construction inspection failure (Audit), and also allowed Construction Company to pre-align quality control of all purchased items of ICT Infra that resulted in 18% reduction of nonconformity, thus contributing to an overall quality improvement. This research is expected to be used widely among all construction industry of Smart City.

A Quantitative Risk Analysis of Related to Tower Crane Using the FMEA (타워크레인의 정량적 위험성 평가가법에 관한 연구(FMEA 기법 위주))

  • Shim, Kyu-Hyung;Rie, Dong-Ho
    • Journal of the Korean Society of Safety
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    • v.25 no.6
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    • pp.34-39
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    • 2010
  • The purpose of this study is to suggest objective evaluation model as a plan to utilize as opportunity in establishing judgment standard of mutual inspection criteria and to upgrade inspection ability by reviewing and analyzing level of danger and importance in advance based on inspection results of inspection institutions regarding tower cranes used in construction fields. Tower crane is a mechanical device transporting construction supplies and heavy materials to places over 20~150M high from the ground for the period ranging from a short time of 2~3 months to two years after being installed in construction sites in vicinity of buildings or structures and is an important facility indispensable for construction sites. However, since use period after installation is short and professional technical ability of technicians working on-site about of tower crane is poor, systematic and quantitative safety management is not carried out As a part of researches on procedure of RBI(Risk Based Inspection) possible to apply to Knowledge Based System based on knowledge and experiences of experts as well as to tower cranes for solving these problems, quantitative RPN(Risk Priority Number) was applied to RPN utilizing technique of FMEA(Failure Mode and Effect Analyses). When general RBI 80/20 Rule was applied parts with high level of risks were found out as wire rope, hoist up/down safety device, reduction gear, and etc. However, since there are still many insufficient parts as risk analyses of tower crane were not established, it is necessary for experts with sufficient experiences and knowledge to supplement active RBI techniques and continuous researches on tower cranes by sharing and setting up data base of important information with this study as a starting point.

Influences of pH on Heavy Metal Leaching in Water Supply Pipelines (상수도관내 중금속 용출에 대한 수소이온농도의 영향 평가 연구)

  • Lee, Jeongwon;Noh, Yoorae;Park, Joonhong
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.37 no.1
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    • pp.73-82
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    • 2017
  • In Korea, previous certification of water supply infrastructure was mainly focused on economical and physical aspects. Recently, hygienic safety of water supply service has become a sensitive and important issue to our people for evaluating the water quality with growth of economy and education system. According on water quality in 497 Korean water supply facilities, pH values in the supplied water have ranged between 5.8-8.5. However, little is known about metal leachability at the pH conditions observed in the real water supply systems because a fixed pH condition (pH 7.0) has been used in the current standard method, 'Hygienic Safety Testing Method', in water supply. In this work, we examined the effects on heavy metal leachability with pH differences in the water supply pipes which are typically used in Korea. As a result, the amounts of metal leachability were tended to increase when pH levels were decreased. Especially at pH 5.8, Cu leachability from Cu pipes was found to exceed the public health standard level even after applying a normalization factor (NF) given by the current Korea standard method. The Cr and Cu leached from stainless steel pipes, Cd, Pb, Cu, and Zn from Cu-based pipe fittings, and Zn from Zn-based pipe fittings were exceeded the Korean hygienic safety standards while, after applying the NF, concentrations of the leached metals were satisfied with the current Korean standard. The findings from this work provide implications on the needs of reforming the current hygienic safety standard methodology.

최근 우리나라 조선산업의 모습과 장래 전망

  • 김영훈
    • Bulletin of the Society of Naval Architects of Korea
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    • v.32 no.4
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    • pp.64-67
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    • 1995
  • 우리나라 조선산업이 21세기에 명실상부한 선진 조선국으로 발돋움하기 위해서는 단기적으로는 가격경쟁력의 강화가 요구되나 장기적으로는 기술자립화를 통해 과거 가격위주의 경쟁체제에서 기술위주의 경쟁체제로 전환함으로써 질적인 성장을 추구해야 할 것이다. 또한 우리나라의 조 선산업은 세계조선시장을 리드하는 선도국으로서 세계선박수급구조의 안정화에 노력하고 지구 해양환경보호를 위한 국제적인 프로그램에 적극 참여하는 한편, 후발조선국에 대한 기술협력, 기술지도 등 국제협력도 강화하여 명실상부한 선진조선국의 면모를 갖추어야 할 것이다. 이를 효과적으로 추진하기 위해서는 다음과 같은 과제를 해결해야 할 것이다. 첫째, 효율적 기술개발을 통한 건조기술의 재고가 그 무엇보다도 중요하다. 즉 단기적으로는 주요 대체수요 선박이면서 국내 주력건조선박인 탱커, 벌크케리어 등 재래단순형 선박에 대해 성에 너지화, 성인력화 및 표준선형화하고, 선박 생산공정의 개선, 생산성 향상을 통해 가격경쟁력을 지속적으로 확보해야할 것이다. 그러나 중장기적으로는 가스운반선,카페리선, 초고속선 등의 부가가치선박에 대한 건 조기술의 자립화로 이들 선종을 주력선종화하여 해외 수주 경쟁력을 재고시켜야 한다. 이와함께 심해탐사장비, 해양구조부유물 등의 해양개발장비의 개발로 사업영역을 확대해야할 것이다. 상 기의 각종 기술재발을 효율적으로 추진하기 위해서는 범국가적인 연구체제의 구성을 통한 산학연 공동연구형태로 추진하는 것이 바람직하다. 둘째, 핵심 조선기자재의 국산화와 품질 향상이 필 요하다. 향후 조선기자재의 국산화추진은 과거 개발 품목의 확대에서 벗어나 핵심적이고 부가 가치가 높은 품목 위주의 질적 국산화로 전환되어야 할 것이며, 이때 국산화이후 조선소의 적 극적인 구매가 전제되어야 할 것이다. 또한 기자재의 품질, 성능검사기능의 강화와 다수요 품목을 중심으로한 표준화, 규격화의 확대 추진으로 지속적인 품질향상과 원가절감을 도모해야한다. 특히 조선기자재업체의 영세상을 감안하여 조선소 인근지역에 단지화함으로써 생산설비의 현 대화, 자재의 공동구매, 물류비용의 절감 등을 기해 가격경쟁력을 강화해야 할 것이다. 또한 업계 공동의 해외판매망, A/S망의 직수출을 늘려야 할 것이다. 셋째, 국제협력 강화로 통상환경에 적극 대응해야 한다. 다자간조선협정 발효에 따른 제소 가능성에 대비하여 관민차원의 국제협 력을 강화하는 한편, 회계 기준의 통일, 제소사례의 연구 등을 업계 공동으로 추진하는 것이 바 람직하다. 또한 향후 2010년이후에 중국을 비롯한 후발조선국에 대해 조선협정에의 참여를 유도, 세계조선시장의 수급안정화에 노력해야할 것이다. 그외에 국제적으로 추진되는 지구그린화에 주도적 역할을 수행해야 할 것이다. 넷째, 선박금융제도의 개선과 신금융상품의 개발이 요구된다. 내수 수요인 계획조선의 지원조건을 개선하고 연불수출자금을 BBC자금으로 활용토록하여 국내 선주들의 신조를 유도해야 할 것이다. 그 외에 향후 금융개방화에 맞추어 해외자금을 활용한 리스금융, 상사금융 등의 민간신용제도를 더욱 활성화하고 선진국의 선박금융기법에 대한 연구 및 도입 등 선주들에게 다양한 선박건조자금을 제공하여 내수기반 확충에도 노력해야 할 것 이다.

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Flexible Unit Floor Plan of a Modular House Considering the Production System (생산 시스템을 고려한 모듈러주택의 가변형 평면계획 연구)

  • Lee, Ji-Eun
    • Land and Housing Review
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    • v.12 no.3
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    • pp.67-78
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    • 2021
  • After World War II, modular housing was developed as a means of quickly and efficiently meeting the housing supply demand. For the past 30 plus years, efforts have been made to improve modular housing in South Korea and to increase their competitiveness in the housing market. This study investigated modular houses based on a steel framed rahem structure which provides a flexible floor plan where walls are easily reconfigured to create rooms of various sizes and functions. Similar to the factory production methods used in the automotive industry, the modular housing industry can also benefit by standardizing such aspects as building components, manufacturing and construction methods, materials, process management, and floor plans. This study examined the feasibility of using a 3m × 3m module for developing various floor plans which are easy to produce and transport. Each 3m × 3m module can be configured to meet different living needs resulting in a complete home when multiple modules are connected. The module configurations can be varied to meet ground transportation and crane limitations. This study found that a 3m × 3m steel framed modular unit is a promising step towards providing residents with plans that meet their living preferences while improving and increasing the supply of modular houses.

Implementation of IoT-based carbon-neutral modular smart greenhouse (IoT 기반 탄소중립 모듈형 스마트 온실 구현)

  • Seok-Keun Park;Kil-Su Han;Min-Soon Lee;Changsun Shin
    • Smart Media Journal
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    • v.12 no.5
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    • pp.36-45
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    • 2023
  • Recently, in digital agriculture, the types and utilization of greenhouses based on IoT are spreading, and greenhouses are being modernized, enlarged, and even factoryized using smart technology. However, a specific standardization plan has not been proposed according to the equipment for data collection in the smart greenhouse and the size or shape of the greenhouse. In other words, there is a lack of standard data for facility equipment, such as the type and number of sensors and equipment according to the size of the greenhouse, the type of greenhouse construction film and materials suitable for crops and carbon neutrality. Therefore, in this study, the suitability of the implementation, installation and quantity of IoT equipment for data collection was tested, and some standard technologies were presented through the implementation of data collection and communication methods. In addition, impact strength, tensile, tear, elongation, light transmittance, and lifespan issues for PE, PVC, and EVA, which account for about 90% of existing greenhouses, were presented, and the shape, size, and environmental problems of greenhouses made of films were presented. presented in the text. In this research paper, a standardized carbon-neutral modular smart greenhouse using nano-material film was implemented as a solution to environmental problems such as greenhouse size, farm crop type, greenhouse lifespan, and film, and its performance with existing greenhouses was analyzed and presented. Through this, we propose a modularized greenhouse that can be expanded or reduced freely without distinction in the size of the greenhouse or the shape of farmhouse crops, and the lifespan is extended and standardized. Finally, the average characteristics of greenhouses using existing PE, PVC, and EVA films and the characteristics of greenhouses using new carbon-neutral nanomaterials are compared and reviewed, and a plan to implement an expandable IoT greenhouse that supports carbon neutrality is proposed.

Development of Digital Twin System for Smart Factory Education (스마트 공장 교육을 위한 디지털 트윈 시스템 개발)

  • Kweon, Oh-seung;Kim, Seung-gyu;Kim, In-woo;Lee, Ui-he;Kim, Dong-jin
    • Journal of Venture Innovation
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    • v.6 no.1
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    • pp.59-73
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    • 2023
  • In the era of the 4th Industrial Revolution, manufacturing is the implementation of smart factories through digital transformation, and refers to consumer-centered intelligent factories that combine next-generation digital new technologies and manufacturing technologies beyond the existing factory automation level. In order to successfully settle such a smart factory, it is necessary to train professionals. However, education for smart factories is difficult to have actual field mechanical facilities or overall production processes. Therefore, there is a need for a system that can visualize and control the flow and process of logistics at the actual production site. In this paper, the logistics flow of the actual site was implemented as a small FMS, a physical system, and the production process was implemented as a digital system. In real-time synchronization of the physical system and the digital system, the location of AGV and materials, and the process state can be monitored to see the flow of logistics and process processes at the actual manufacturing site. The developed digital twin system can be used as an effective educational system for training manpower in smart factories.

Situation of Geological Occurrences and Utilization, and Research Trends of North Korean Coal Resources (북한 석탄 자원의 부존 및 활용현황과 연구동향)

  • Sang-Mo Koh;Bum Han Lee;Otgon-Erdene Davaasuren
    • Economic and Environmental Geology
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    • v.57 no.3
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    • pp.281-292
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    • 2024
  • North Korea relies heavily on coal as the primary energy source, playing an important role in all energy demand sectors except for the transportation sector. Approximately half of the total electricity is generated through coal-fired power plants, and coal is used to produce heat and power for all industrial facilities. Furthermore, coal has been a significant contributor to earning foreign currency through long-term exports to China. Nevertheless, since the 1980s, indiscriminate mining activities have led to rapid depletion of coal production in most coal mines. Aging mine facilities, lack of investment in new equipment, shortages of fuel and electricity, difficulties in material supply, and frequent damage from flooding have collectively contributed to a noticeable decline in coal production since the late 1980s. North Korea's coal deposits are distributed in various geological formations from the Proterozoic to the Cenozoic, but the most critical coal-bearing formations are Ripsok and Sadong formations distributed in the Pyeongnam Basin of the Late Paleozoic from Carboniferous to Permian, which are called as Pyeongnam North and South Coal Fields. Over 90% of North Korea's coal is produced in these coal fields. The classification of coal in North Korea differs from the international classification based on coalification (peat, lignite, sub-bituminous coal, bituminous coal, and anthracite). North Korean classification based on industrial aspect is classified into bituminous coal, anthracite, and low-grade coal (Chomuyeontan). Based on the energy factor, it is classified into high-calorie coal, medium calorie coal, and low-calorie coal. In North Korea, the term "Chomuyeontan" refers to a type of coal that is not classified globally and is unique to North Korea. It is a low-grade coal exclusively used in North Korea and is not found or used in any other country worldwide. This article compares North Korea's coal classification and the international coal classification of coal and provides insights into the geological characteristics, reserves, utilization, and research trends of North Korean coal resources. This study could serve as a guide for preparing scientific and industrial agendas related to coal collaboration between North Korea and South Korea.

In-House Subcontracting and Industrial Relations in Japanes Steel Industry (일본 철강산업의 사내하청과 노사관계)

  • Oh, Haksoo
    • Korean Journal of Labor Studies
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    • v.24 no.1
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    • pp.107-156
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    • 2018
  • This article examines the history of the in - house subcontracting and the stabilization of labor - management relations in the steel industry in Japan. The ratio of in-house subcontract workers among steel workers has increased steadily until the mid-2000s, and about 70% in case of the largest company. In-house subcontracting was used as a strategy of the company to increase the quantity flexibility of employment and to save labor costs. The in-house subcontracting company needed company-specialized skills, and the internal labor market was formed because the rate of full-time workers was high and the turnover rate was low. The in-house subcontractor introduced long-term business relationship with the steel factory by introducing the equipment and materials necessary for the performance of the work, and the factory implemented the productivity improvement policy of the in-house subcontractor, and the win-win relationship between the factory and in-house subcontractor was developed. The trade union did not oppose the idea that the expansion of in-house subcontracting contributed to corporate profits, the stability of employment of the members and maintenance of their working conditions. Since 2000, the steel factory has pursued the transformation of in - house subcontractors into subsidiaries, which has been supported by capital relations. By the way, since the mid-2000s, there has been an increase in the number of regular workers' employment. The major factors are as follows: more strengthened compliance with laws and regulations, the higher quality request of customers, stricter keeping of deadlines, and problem in recruiting of workers at in-house subcontract companies. The wage gap between the factory and in - house subcontracting was less at company B than at company S, and the wage level of in - house subcontracting was about 90% of the factory at company B. The relatively small gap at company B seems to be due to the union's movement of narrowing the gap, low market dominance and unfavorable labor market. The internal labor market has been formed in the in-house subcontracting, and the wage gap is not large, and the possibility of labor disputes is low. Industrial relations are stable in the in-house subcontract company as well as the factory. The stabilization of labor-management relations in the steel industry in Korea is required to reduce the wage gap between the factory and in-house subcontract enterprises by raising productivity and expanding the internal labor market at in-house subcontract enterprises.