• 제목/요약/키워드: A1B scenario

검색결과 192건 처리시간 0.032초

기후변화에 따른 낙동강 유역 농업용수 영향 분석 (Climate Change Impacts on Agricultural Water in Nakdong-river Watershed)

  • 지용근;이진희;김상단
    • 한국농공학회논문집
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    • 제54권3호
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    • pp.149-157
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    • 2012
  • For the systemic management and planning of future agricultural water resources, deriving and analyzing the various results of climate change are necessary to respond the uncertainties of climate change. This study assessed the impact of climate change on the rainfall, temperature, and agricultural water requirement targeting in the Nakdong-river's basin periodically according to socioeconomic driving factors under the scenarios A1B, A2 and B1 of the Special Report on Emission Scenarios (SRES) through the various IPCC GCMs. As a result of future rainfall change (2011~2100), increasing or decreasing tendency of rainfall change for future periods did not show a clear trend for three rainfall observatories, Daegu, Busan and Gumi. The characteristics of the temperature change consistently show a tendency to increase, and in the case of Daegu observatory, high temperature growth was shown. Especially, it was increased by 93.3 % in the period of future3 (2071~2100) for A2 scenario. According to the scenario and periodic analyses on the agricultural water demand, which was thought to be dependent on rainfall and temperature, the agricultural water demand increased at almost every period except during the Period Future1 (2011~2040) with different increase sizes, and the scenario-specific results were shown to be similar. As for areas, the agricultural water demand showed more changes in the sub-basin located by the branch of Nakdong-river than at the mainstream of the River.

화력발전의 신재생에너지 전환에 따른 경제적 파급효과 분석 (An Analysis of the Economic Effects of the New and Renewable Energy Transformation of Thermal Power Generation)

  • 임상수
    • 자원ㆍ환경경제연구
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    • 제32권2호
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    • pp.127-147
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    • 2023
  • 본 연구는 정부의 탄소중립 정책 중 하나인 화력발전을 신재생에너지로 대체하는 경우 에 대한 경제적 파급효과를 분석하는 것을 목적으로 한다. 이러한 분석을 위해 화력발전을 신재생에너지로 100% 대체하는 경우를 시나리오 A로 설정하고, 60%로 대체하는 경우를 시나리오 B로 설정한다. 또한 이렇게 화력발전을 신재생에너지로 대체할 때 비용이 발생하게 되는데 현행과 동일한 비용인 경우를 시나리오 1, 현행보다 비용이 120% 증가한 경우를 시나리오 2로 설정한다. 따라서 화력발전을 신재생에너지로 전환할 때 시나리오는 크게 이와 같이 4가지 경우로 정리된다. 화력발전을 신재생에너지로 전환하는 경우, 화력발전의 생산유발계수는 시나리오와 관계없이 현행 수준보다 감소하는 것으로 나타났다. 그러나 화력발전을 신재생에너지로 100% 전환하는 경우 부가가치유발계수와 온실가스배출량 유발계수는 현행 수준보다 감소한 반면 화력발전을 신재생에너지로 60% 대체하는 경우 부가가치유발계수와 온실가스배출량 유발계수는 현행 수준보다 증가했다. 또한 대부분의 업종의 온실가스배출량 유발계수는 감소하는 것으로 나타난 반면 생산유발계수와 부가가치유발계수는 증가하는 것으로 나타났다. 정부 정책의 목적은 화력발전을 신재생에너지로 전환시켜 온실가스배출량을 축소시키는 것이기 때문에 시나리오 화력발전을 신재생에너지로 100% 전환하는 경우가 더 적합한 것으로 보인다. 다만, 이로 인해 일부 업종의 생산유발계수와 부가가치유발계수가 감소하는 부작용이 발생하므로 이를 해결하기 위한 정부의 지원 정책이 필요하다.

라오스 산촌마을의 생산구조전환을 위한 투자 경제성 기초 분석 (Fundamental Economic Feasibility Analysis on the Transition of Production Structure for a Forest Village in LAO PDR)

  • 이보휘;김세빈;이준우;이학준;이상진;이중구;백운기;박범진;구승모
    • 한국산림휴양학회지
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    • 제22권4호
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    • pp.11-22
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    • 2018
  • 본 연구는 라오스에 소재한 전형적인 농 산촌 마을을 선정하여, 마을 단위를 대상으로 생산구조를 전환할 경우의 소득증대에 대한 경제적 타당성을 분석하였다. 대상지는 라오스 쌍퉁구에 위치한 농부아 마을로써 산림지역이 혼재된 논농사 위주의 마을이다. 이 마을이 취할 수 있는 소득 제고 전략은 단기적으로 손쉽게 소득을 제고할 수 있는 작목으로 노니(Morinda citrifolia)가 꼽힌다. 사업 기간은 20년으로 가정하고, 1ha 면적에 $3m{\times}3m$ 간격으로 식재한 총 1,100본을 대상으로, 묘목 생존율과 노니 수매가격에 따라 시나리오 1, 2, 3을 구분하였다. 일반적으로 노니는 생장이 좋은 편이나, 본 연구에서는 생산 경험 부족, 병충해 등의 리스크를 감안하여 기본 시나리오 1을 묘목 생존율(=열매 생산량)을 기존 자료(하와이)보다 보수적으로 설정하였다. 시나리오 1은 노니 묘목의 생존율이 1년생이 50%, 2년생이 60%, 3년생부터 20년생까지 70%로 유지된다고 가정하였다. 시나리오 2는 묘목 생존율이 10%씩 감소되어 40%, 50%, 60%로 제약을 두었고, 시나리오 3은 묘목생존율이 10% 감소되고, 노니 수매가격 또한 10% 감소된 경우로 가정하였다. 이러한 조건하에 라오스 시장 할인율 10%를 기준으로, 3개 시나리오 모두 IRR이 각각 24.81%, 19.02%, 16.30%로 모두 경제성이 있음이 확인되었다. 또한 ha당 B/C도 각각 시나리오 1, 2, 3에 대해서 할인율 10%를 기준으로 모두 1.71, 1.47, 1.31로 분석되었다. 분석결과는 향후 농부아 마을은 대체 작목(노니)를 통한 저소득 영농구조를 탈피할 수 있는 좋은 계기가 될 것을 시사하며, 각종 정부 및 민간 투자사업을 계획할 때 수행하는 사전진단 절차 단계에서 유용한 의사결정 정보로써 활용이 가능하다.

기후변화 취약성 지수 산출을 위한 한반도 관측 기후 특성 분석 (Analysis of Climate Characteristics Observed over the Korean Peninsula for the Estimation of Climate Change Vulnerability Index)

  • 남기표;강정언;김철희
    • 환경영향평가
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    • 제20권6호
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    • pp.891-905
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    • 2011
  • Climate vulnerability index is usually defined as a function of the climate exposure, sensitivity, and adaptive capacity, which requires adequate selection of proxy variables of each variable. We selected and used 9 proxy variables related to climate exposure in the literature, and diagnosed the adequacy of them for application in Korean peninsula. The selected proxy variables are: four variables from temperature, three from precipitation, one from wind speed, and one from relative humidity. We collected climate data over both previous year (1981~2010) and future climate scenario (A1B scenario of IPCC SERES) for 2020, 2050, and 2100. We introduced the spatial and temporal diagnostic statistical parameters, and evaluated both spatial and time variabilities in the relative scale. Of 9 proxy variables, effective humidity indicated the most sensitive to climate change temporally with the biggest spatial variability, implying a good proxy variable in diagnostics of climate change vulnerability in Korea. The second most sensitive variable is the frequency of strong wind speed with a decreasing trend, suggesting that it should be used carefully or may not be of broad utility as a proxy variable in Korea. The A1B scenario of future climate in 2020, 2050 and 2100 matches well with the extension of linear trend of observed variables during 1981~2010, indicating that, except for strong wind speed, the selected proxy variables can be effectively used in calculating the vulnerability index for both past and future climate over Korea. Other local variabilities for the past and future climate in association with climate exposure variables are also discussed here.

A case study on the economic feasibility of different patterns of green care and healing complexes

  • Koo, Seungmo;Kim, Dae Sik;Koo, Hee Dong;Lee, Han Joon;Park, Bum Jin;Kim, Kyoung-Chan
    • 농업과학연구
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    • 제44권3호
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    • pp.451-461
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    • 2017
  • Korean agriculture has recently focused on the 6th dimension of industrialization, which includes the functions of healing and care. The green care and healing business is one of the most representative models, satisfying modern consumers' needs for care or healing in rural agricultural environments. Many studies have shown physical and social benefits from green care and healing, but studies regarding economic performance are rarely found. The present study aimed to analyze the economic feasibility of different green care and healing farm complexes proposed in recent domestic research, with various possible combinations of business scenarios. The results show that most of the scenarios are economically feasible as B/C (benefit-cost ratio) and IRR (internal rate of return) are 1.19 and 8.53%, respectively, under scenario 1. This study also performed a break-even analysis for providing more flexible decision-making information. Overall, scenario 1 from green care and healing site and scenario 4 from green care and healing cluster are found to be superior to the other scenarios in terms of B/C and IRR. The scenarios in this study reflect the domestic farms or complexes which have similar functions of care or healing. Therefore, the results of this study provide information on practical policies and business implications in making decisions on the specific size and operational patterns when adopting green care and healing complexes by central or local governments and private sectors in the future.

Assessment of Future Climate Change Impact on DAM Inflow using SLURP Hydrologic Model and CA-Markov Technique

  • Kim, Seong-Joon;Lim, Hyuk-Jin;Park, Geun-Ae;Park, Min-Ji;Kwon, Hyung-Joong
    • 대한원격탐사학회지
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    • 제24권1호
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    • pp.25-33
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    • 2008
  • To investigate the hydrologic impacts of climate changes on dam inflow for Soyanggangdam watershed $(2694.4km^2)$ of northeastern South Korea, SLURP (Semi-distributed Land Use-based Runoff Process) model and the climate change results of CCCma CGCM2 based on SRES A2 and B2 were adopted. By the CA-Markov technique, future land use changes were estimated using the three land cover maps (1985, 1990, 2000) classified by Landsat TM satellite images. NDVI values for 2050 and 2100 land uses were estimated from the relationship of NDVI-Temperature linear regression derived from the observed data (1998-2002). Before the assessment, the SLURP model was calibrated and verified using 4 years (1998-2001) dam inflow data with the Nash-Sutcliffe efficiencies of 0.61 to 0.77. In case of A2 scenario, the dam inflows of 2050 and 2100 decreased 49.7 % and 25.0 % comparing with the dam inflow of 2000, and in case of B2 scenario, the dam inflows of 2050 and 2100 decreased 45.3 % and 53.0 %, respectively. The results showed that the impact of land use change covered 2.3 % to 4.9 % for the dam inflow change.

용담댐 운영이 하류 기준유량 설정에 미치는 영향 (Effect of Yongdam Dam Operation to Level of Reference Flows Downstream)

  • 노재경;유재민;오진영
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2006년도 학술발표회 논문집
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    • pp.1772-1776
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    • 2006
  • The Ministry of Environment is determining reference flows and goal water qualities in many stations over all around riverbasin to control TMDL. Reference flow is now defined to 10 years averaged 275th minimum flow$(Q_{275})$. Dam operation takes direct effect on flows downstream. The Yongdam mutipurposed dam was constructed in 2002 and TMDL managing stations between the Daecheong dam and the Yongdam dam are the Geumbon B, C, D, E, and F in main stream of the Geum river. Geumbon F is the Daecheong dam site. Observed flows are ideal to be used to set reference flows, but simulated flows are more practical to be used to set reference flows from the cause of the Yongdam dam's operation. A system for simulating daily storages of the Yongdam dam was constructed and the DAWAST model was selected to simulate daily streamflows. Analysis period was selected for 10 years from 1996 to 2005. Scenario was set as follows; Firstly, observed outflows from the Yongdam dam are used from 2002 to 2005 and the Yongdam dam does not exist from 1995 to 2001. Secondly, the Yongdam dam existed also from 1995 to 2001 and simulated outflows from the Yongdam dam are used from 1996 to 2005 with provision of constant outflow of $7.0m^3/s$ and water supply to the Jeonju region outsided watershed of $900,000m^3/day$. In case of scenario 1 reference flows at the Geumbon B, C, D, E, F are 4.52, 6.69, 7.96, 11.17, and $13.21m^3/s$, respectively. And in case of scenario 2 reference flows at the Geumbon B, C, D, E, F are 6.27, 8.48, 9.58, 12.73, and $15.12m^3/s$, respectively.

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배출권거래제의 국제적 적용이 한국산업과 무역에 미치는 효과 (The effect of international linkage of emissions trading markets on Korean industries)

  • 오경수
    • 무역학회지
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    • 제47권1호
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    • pp.115-130
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    • 2022
  • In this study, I focus on analyzing how the effects of implementing ETS are different depending on whether Korean ETS linking with carbon markets in other countries. The global computable general equilibrium (CGE) model built in this study analyzes the chages in the production and trade of industrial sectors according to the international linkage of ETS compared to the reference scenario of emissions reduction targets and implementation of ETS. From the analysis of internatioanl linkage of carbon markets scenarios, Annex B countries-South Korea carbon market linkage with individual ETS in China worse the economic outcomes in South Korea the most. This means South Korea lose the international competitiveness compared to China in this scenario. On the other hand, Annex B-China carbon market linkage with Korean individual ETS implementation reduce the decreases in production and trading. The most effective way is to join a global emissions trading market with China. The results are consistent in most industries of South Korea. These results are caused by that the supply of emission allowance is increased and the price of emissions allowances is dropped by China's participation to the carbon market, which can be understood to reduce the carbon reduction cost for industrial sectors. In addition, it can be also concluded that the determinant of the negative impact of ETS on changes in production and trade is more sensitive to the price of emissions allowances than to the characteristics of production and trade structure.

시나리오를 이용한 울산 내항의 혼잡 분석 (Congestion Analysis in the Inner Harbour of Ulsan Using a Scenario)

  • 하창승;백인흠
    • 수산해양교육연구
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    • 제19권2호
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    • pp.278-287
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    • 2007
  • Since traffic congestion ratio at any given port fluctuates on the number of arriving and departing vessels, the total tonnage of freight volume being handled, and the number of berth in operation and other factors, there exists a need to numerically analyze the waterway traffic volume. However, there are no effective regulations in regards to the waterway traffic analysis prior to expansion of a port facility. The current analysis requires the traffic analysis in relation only to the width of the waterway, which clearly falls short of achieving a comprehensive evaluation study that could be used in consideration of port expansion.This study provides five scenarios to execute a comprehensive evaluation study and base for the sensitivity study by analyzing the scenarios. As a result of the sensitivity analysis, the A, B, and C scenarios varies the average arrival ratio of the berth shows 1.1, 1.19, and 1.28 times of delays respectively. Also, The D and E scenarios take place malfunctions of pier shows 1.21 and 1.53 times of delays respectively. Therefore, various strategies of harbor development and method of harbor management are needed for the flexible correspondence to the environmental changes such as the excessive increasing of the freight volume and often taking place of malfunctioning.

On the Optimization of Raman Fiber Amplifier using Genetic Algorithm in the Scenario of a 64 nm 320 Channels Dense Wavelength Division Multiplexed System

  • Singh, Simranjit;Saini, Sonak;Kaur, Gurpreet;Kaler, Rajinder Singh
    • Journal of the Optical Society of Korea
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    • 제18권2호
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    • pp.118-123
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    • 2014
  • For multi parameter optimization of Raman Fiber Amplifier (RFA), a simple genetic algorithm is presented in the scenario of a 320 channel Dense Wavelength Division Multiplexed (DWDM) system at channel spacing of 25 GHz. The large average gain (> 22 dB) is observed from optimized RFA with the optimized parameters, such as 39.6 km of Raman length with counter-propagating pumps tuned to 205.5 THz and 211.9 THz at pump powers of 234.3 mW, 677.1 mW respectively. The gain flattening filter (GFF) has also been optimized to further reduce the gain ripple across the frequency range from 190 to 197.975 THz for broadband amplification.