• 제목/요약/키워드: Project Down Flow

검색결과 18건 처리시간 0.026초

지속성장을 위한 사회적 책임(CSR)의 전략적 활용: 중국 내 자동차 기업에 대한 탐색적 사례연구 (The Role of Corporate Social Responsibility for Sustainable Growth: An Exploratory Case Study on Auto Corporations)

  • 백서인;권상집
    • 지식경영연구
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    • 제16권3호
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    • pp.103-128
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    • 2015
  • This study sheds light on the role of corporate social responsibility in firms' growth by investigating how and what corporate social activities may flow down china auto industry market. This study results based on in-depth case studies from 5 international auto corporations suggest that positive diverse corporate social responsibility amplified that the influence of commitment to the customer on firm's brand loyalty and sustainable growth. The most important thing is that strategic corporate social responsibility activities including new venture creation support and national project program will have a positive influence on the firm's growth and brand reputation. We build on advanced solutions to examine the unique and joint activities of auto corporations based on china auto industry market and important factors affecting sustainable growth in auto corporations. Contributions and implication of this study for current and future corporate social responsibility research are discussed.

환태평양 시대의 부산항 물류산업 합리화 (The Rationalization of PDM in Pusan Port for the Period of Round Pacific Area)

  • Park, S. Y.;Park, C. S.
    • 한국항만학회지
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    • 제6권1호
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    • pp.93-110
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    • 1992
  • The most change in this century is supposed to be declination of ideology, and block of world economy. Addition to down full of cold war atmosphere around Northeast Asia, not only economic and social mood in this region is dramatically changed, but also it gave birth to the block of Northeast economy that accerlated new hub of world economy. According to dramatic change of economic surroundings the dynamic potential of growth in this region will be guided to enlarge inter-regional trade and increase volume of trade, thus suggests to grow steadily transportation. cargos in this region will have to arrange the system of delivery and inner transportation, accessary facilities, inter-regional harbors if North America and EC has connected easily. As have accerlated GATT and UR represented multilateralism and regionalism, it has regulated to increase trades of region due to relief of the trade barrier through specific areas has agreed with separately. The flow of regionalism of world economy has appeared to realize EC and NAFTA centered U.S.A, and also has presented to free trade region or one-size market agreement in Asia as APEC, EAEG in Malaysia, and etc. In defense to this block and internationalism of world economy, Pusan has to come forward to the hub of Northeast others has proposed a project to dominate the Northeast, Economy Association Agreement as Far East comprehensive development project in USSR, Hunchun development project in NK, and East Sea development project in PRC, Niigate regional development in Japan, Duman River development project in NK, and East Sea development project in Korea. As this exercise has proceed, Pusan also have arranged development strategy definitely and prepared provisions systematically. Engaging to participate center of delivery system is meant to be completed complex functions, namely the transfer storage processing & assembly function of international commodity. Pusan has ability to be terminal point of TSR. it had been connected to EC as the biggest economy block and TKR as complex transportation root to Far East, it would be the center of inground and seabase delivery terminal to Rotterdom as the biggest container pier and major piers to North-East and South East Asia. In order to provide a Role of 21 century's internationalization, Pusan has appealed to participate in management information research and development connected to Pohang-Ulsan-Changwon-Masan, and has utilized efficiently the resources such as man, material, money and information.

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부영양한 한강하류수역에서 식물플랑크톤의 1차생산 (Primary Productivity of Phytoplankton at the Eutrophic down Reach of a Regulated River (the Han River, Korea))

  • 남궁현;황길순;김갑수;김범철
    • 생태와환경
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    • 제34권4호통권96호
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    • pp.267-276
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    • 2001
  • 수도권의 중심부를 가로지르는 한강의 하류수역은 조수의 영향을 받을 수 있는 하구의 상단부에 위치해 있다. 한강 하류수역은 한강종합개발사업의 일환으로 이루어진 준설과 수중보 건설에 의해서 강물이 정체되었으며, 또한 지천으로부터 유입되는 많은 오염물질에 의해서 식물플랑크톤의 대량 발생을 촉진할 수 있는 환경으로 변화되었다. 본 연구에서는 부영양한 한강 하류수역에서 식물플랑크톤의 1차생산을 측정하였으며, 더불어 내부생성유기물과 외부기원유기물을 산정하였다. 1차생산력은 C-14 uptake법과 P-I 모델법으로 측정하였다. 1차생산력의 범위는 $140{\sim}4,890\;mgC\;m^{-2}\;d^{-1}$ (중앙값 $1,865\;mgC\;m^{-2}\;d^{-1}$)이었으며, 국내의 부영양한 호수와 유사한 수준이었다. 식물플랑크톤의 생물량 변동은 봄철에 최대치를 보였으며, 유량의 변화와 관련이 있는 것으로 나타났다. 외부기원유기물은 여름철 흥수기를 제외한 연중 내내 지천을 통하여 유입되는 오염물질에 의해서 좌우되었다. 총 유기물 부하량에 대하여 식물플랑크톤의 1차생산이 차지하는 기여도는 40.9%로서, 유수 생태계로서는 높은 수준이었다.

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우리나라 지열발전 pilot plant 프로젝트의 발전량 추정 (Estimating generation capacity of geothermal power generation pilot plant project)

  • 송윤호;이태종;윤운상
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2011년도 춘계학술대회 초록집
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    • pp.197.1-197.1
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    • 2011
  • 2010년 12월에 착수한 인공 지열 저류층 생성기술(EGS)를 이용한 지열발전 pilot plant 프로젝트에서 계획된 5 km 깊이의 doublet 시스템에서 실현 가능한 발전량 목표를 추정하였다. 지하 5 km 에서의 암반 온도는 경북 포항지역의 평균 지온증가율은 $33^{\circ}C$/km로 하였을 때 지표온도를 감안하면 $180^{\circ}C$로 추정된다. 암반과의 열교환을 통해 생산되는 지열수의 온도를 $160^{\circ}C$, 발전 후 주입수의 온도를 $60^{\circ}C$로 생각할 수 있고, 이때 binary 발전의 열효율은 0.11이 가능하다. 최근의 EGS에서 실현 가능한 생산 유량인 40 kg/sec을 가정한다면 총 발전량은 1.848 MW로 계산되며, 지열수 양수 펌프와 binary 발전의 냉각에너지 소요량을 고려하면 순 발전량 1.5 MW가 가능해진다.

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Evaluation of system design modifications for full system decontamination of Kori Unit 1

  • Kim, HakSoo;Kim, JeongJu;Kim, ChoRong
    • Nuclear Engineering and Technology
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    • 제54권10호
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    • pp.3949-3956
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    • 2022
  • Kori Unit 1 is planning a system decontamination project to reduce radiation exposure of decommissioning workers, prevent the spread of contamination and down-grade the level of classification of radioactive waste. The system decontamination range for Kori Unit 1 will be the entire primary system, including RCS, CVCS and RHRS. Some system design modifications are required for the system decontamination operation. In this paper, major system design modifications were evaluated based on the conditions that system restoration is needed after completion of system decontamination. The major system design modifications are CIDF connection location to system, system decontamination operating pressure control, RCP seal water injection and formation of letdown flow. It was evaluated that there was no negative effect on the system due to the system design modifications. However, as the RCP seal water is injected into the system in the oxidation process, the concentration of the oxidizing agent is diluted. Therefore, the oxidizing agent injection and system decontamination operation procedures should be developed to address the dilution effect of the oxidizing agent. The system design modifications dealt in this paper will be finally confirmed through on-site investigation in the future, and if necessary, the system design modifications will be re-evaluated.

Earthquake impacts on hydrology: a case study from the Canterbury, New Zealand earthquakes of 2010 and 2011

  • Davie, Tim;Smith, Jeff;Scott, David;Ezzy, Tim;Cox, Simon;Rutter, Helen
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2011년도 학술발표회
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    • pp.8-9
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    • 2011
  • On 4 September 2010 an earthquake of magnitude 7.1 on the Richter scale occurred on the Canterbury Plains in the South Island of New Zealand. The Canterbury Plains are an area of extensive groundwater and spring fed surface water systems. Since the September earthquake there have been several thousand aftershocks (Fig. 1), the largest being a 6.3 magnitude quake which occurred close to the centre of Christchurch on 22February 2011. This second quake caused extensive damage to the city of Christchurch including the deaths of 189 people. Both of these quakes had marked hydrological impacts. Water is a vital natural resource for Canterburywith groundwater being extracted for potable supply and both ground and surface water being used extensively for agricultural and horticultural irrigation.The groundwater is of very high quality so that the city of Christchurch (population approx. 400,000) supplies untreated artesian water to the majority of households and businesses. Both earthquakes caused immediate hydrological effects, the most dramatic of which was the liquefaction of sediments and the release of shallow groundwater containing a fine grey silt-sand material. The liquefaction that occurred fitted within the empirical relationship between distance from epicentre and magnitude of quake described by Montgomery et al. (2003). . It appears that liquefaction resulted in development of discontinuities in confining layers. In some cases these appear to have been maintained by artesian pressure and continuing flow, and the springs are continuing to flow even now. In spring-fed streams there was an increase in flow that lasted for several days and in some cases flows remained high for several months afterwards although this could be linked to a very wet winter prior to the September earthquake. Analysis of the slope of baseflow recession for a spring-fed stream before and after the September earthquake shows no change, indicating no substantial change in the aquifer structure that feeds this stream.A complicating factor for consideration of river flows was that in some places the liquefaction of shallow sediments led to lateral spreading of river banks. The lateral spread lessened the channel cross section so water levels rose although the flow might not have risen accordingly. Groundwater level peaks moved both up and down, depending on the location of wells. Groundwater level changes for the two earthquakes were strongly related to the proximity to the epicentre. The February 2011 earthquake resulted in significantly larger groundwater level changes in eastern Christchurch than occurred in September 2010. In a well of similar distance from both epicentres the two events resulted in a similar sized increase in water level but the slightly slower rate of increase and the markedly slower recession recorded in the February event suggests that the well may have been partially blocked by sediment flowing into the well at depth. The effects of the February earthquake were more localised and in the area to the west of Christchurch it was the earlier earthquake that had greater impact. Many of the recorded responses have been compromised, or complicated, by damage or clogging and further inspections will need to be carried out to allow a more definitive interpretation. Nevertheless, it is reasonable to provisionally conclude that there is no clear evidence of significant change in aquifer pressures or properties. The different response of groundwater to earthquakes across the Canterbury Plains is the subject of a new research project about to start that uses the information to improve groundwater characterisation for the region. Montgomery D.R., Greenberg H.M., Smith D.T. (2003) Stream flow response to the Nisqually earthquake. Earth & Planetary Science Letters 209 19-28.

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How effective has the Wairau River erodible embankment been in removing sediment from the Lower Wairau River?

  • Kyle, Christensen
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2015년도 학술발표회
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    • pp.237-237
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    • 2015
  • The district of Marlborough has had more than its share of river management projects over the past 150 years, each one uniquely affecting the geomorphology and flood hazard of the Wairau Plains. A major early project was to block the Opawa distributary channel at Conders Bend. The Opawa distributary channel took a third and more of Wairau River floodwaters and was a major increasing threat to Blenheim. The blocking of the Opawa required the Wairau and Lower Wairau rivers to carry greater flood flows more often. Consequently the Lower Wairau River was breaking out of its stopbanks approximately every seven years. The idea of diverting flood waters at Tuamarina by providing a direct diversion to the sea through the beach ridges was conceptualised back around the 1920s however, limits on resources and machinery meant the mission of excavating this diversion didn't become feasible until the 1960s. In 1964 a 10 m wide pilot channel was cut from the sea to Tuamarina with an initial capacity of $700m^3/s$. It was expected that floods would eventually scour this 'Wairau Diversion' to its design channel width of 150 m. This did take many more years than initially thought but after approximately 50 years with a little mechanical assistance the Wairau Diversion reached an adequate capacity. Using the power of the river to erode the channel out to its design width and depth was a brilliant idea that saved many thousands of dollars in construction costs and it is somewhat ironic that it is that very same concept that is now being used to deal with the aggradation problem that the Wairau Diversion has caused. The introduction of the Wairau Diversion did provide some flood relief to the lower reaches of the river but unfortunately as the Diversion channel was eroding and enlarging the Lower Wairau River was aggrading and reducing in capacity due to its inability to pass its sediment load with reduced flood flows. It is estimated that approximately $2,000,000m^3$ of sediment was deposited on the bed of the Lower Wairau River in the time between the Diversion's introduction in 1964 and 2010, raising the Lower Wairau's bed upwards of 1.5m in some locations. A numerical morphological model (MIKE-11 ST) was used to assess a number of options which led to the decision and resource consent to construct an erodible (fuse plug) bank at the head of the Wairau Diversion to divert more frequent scouring-flows ($+400m^3/s$)down the Lower Wairau River. Full control gates were ruled out on the grounds of expense. The initial construction of the erodible bank followed in late 2009 with the bank's level at the fuse location set to overtop and begin washing out at a combined Wairau flow of $1,400m^3/s$ which avoids berm flooding in the Lower Wairau. In the three years since the erodible bank was first constructed the Wairau River has sustained 14 events with recorded flows at Tuamarina above $1,000m^3/s$ and three of events in excess of $2,500m^3/s$. These freshes and floods have resulted in washout and rebuild of the erodible bank eight times with a combined rebuild expenditure of $80,000. Marlborough District Council's Rivers & Drainage Department maintains a regular monitoring program for the bed of the Lower Wairau River, which consists of recurrently surveying a series of standard cross sections and estimating the mean bed level (MBL) at each section as well as an overall MBL change over time. A survey was carried out just prior to the installation of the erodible bank and another survey was carried out earlier this year. The results from this latest survey show for the first time since construction of the Wairau Diversion the Lower Wairau River is enlarging. It is estimated that the entire bed of the Lower Wairau has eroded down by an overall average of 60 mm since the introduction of the erodible bank which equates to a total volume of $260,000m^3$. At a cost of $$0.30/m^3$ this represents excellent value compared to mechanical dredging which would likely be in excess of $$10/m^3$. This confirms that the idea of using the river to enlarge the channel is again working for the Wairau River system and that in time nature's "excavator" will provide a channel capacity that will continue to meet design requirements.

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초분광수심법 기반 대하천 합류부 하상측정 성능 평가 (Performance evaluation of hyperspectral bathymetry method for morphological mapping in a large river confluence)

  • 김동수;서영철;유호준;권영화
    • 한국수자원학회논문집
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    • 제56권3호
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    • pp.195-210
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    • 2023
  • 국내 대하천은 2010년 대규모 정비사업 이후 자연적 안정화를 위한 추가 재퇴적 및 침식이 진행 중에 있어 정밀 하상 모니터링이 요구되고 있다. 초분광수심법은 저수심의 고해상도 하천 수심측정 측면에서 종래의 접촉식 수심측정 기법을 대체하거나 보완할 수 있는 방법으로 각광을 받기 시작하였다. 본 연구는 초분광수심법에서 대표적인 최적밴드비기법을 소개하고 국내 대하천인 낙동강과 황강 합류부에서 평수기 전형적인 탁도조건에서 초분광수심법을 적용하여 수심맵을 산정하여 국내 하천으로의 적용성을 평가하였다. 이를 위해 수심영역별 최적밴드비기법으로 도출되는 상관도와 평균제곱근오차를 적용하여 최대측정가능수심을 산정하였고 최대추정가능수심 이상은 관계식 구축 시와 수심맵 산정 시 제외시켰다. 그리고 수심과 최적밴드비 관계(d-X)에 비선형성을 검토하여 적용하였다. 국내 대하천인 낙동강-황강 합류부에 적용한 결과는 다음과 같다. 첫째, 초분광수심법은 주로 저수심부에서 정밀한 수심맵을 효율적으로 산정할 수 있음을 보여주었고 최대측정가능수심은 통상적 탁도에서 낙동강의 경우 2.5 m로 나타났고, 탁도가 높은 지류의 경우 1.25 m로 나타났다. 둘째, 최대측정가능수심은 초분광수심법 하상 도출 시 다양한 시나리오의 배제수심을 고려하여 산정 및 적용되어야 하고, 이때 최적밴드비기법 적용 시 평균제곱근오차가 기존의 상관도 방식에 비해 최대측정가능수심 산정에 우수하였다. 셋째, 황강 합류부의 탁도가 높아 측정가능수심이 인근 낙동강에 비해 절반으로 낮아져 초분광수심법은 탁도가 높은 환경일 경우 한계가 있음을 확인하였다.