• 제목/요약/키워드: air transportation demand

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미시적 탄소배출량 및 대기확산 모형을 이용한 이동오염원에 의한 대기 질 영향 분석 (Impact Analysis of Air Quality of Mobile Sources using Microscopic Emission and Dispersion Model)

  • 양충헌;양인철;윤천주;성정곤
    • 한국도로학회논문집
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    • 제15권4호
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    • pp.167-175
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    • 2013
  • PURPOSES : The objective of this study is to investigate the capability of the combined model of traffic simulation, emission and air dispersion models on the impact analysis of air quality of mobile sources such as vehicles. METHODS : The improvement of the quality of life brings about the increasing interest of the public environment. Many endeavors including the travel demand management, the application of the state-of-the-art ITS technologies, the promotion of eco-friendly vehicles have been tried in transportation area to reduce the modal emissions. Especially, it is expected that the increasing number of eco-friendly vehicles in the road network would be able to reduce the pipe-tail emissions tremendously. From this perspective, we have performed a study on the impact analysis of the popularization of the eco-friendly vehicle in the place of the fossil fuel energy powered vehicles on the surrounding air quality using the combined framework of microscopic traffic simulation, emission and air dispersion model. RESULTS : The combined model successfully captured the effect of moving to the eco-friendly vehicles on the air quality, and the results showed that the increasing usage of eco-friendly vehicles can improve the surrounding air quality tremendously and that the air dispersion model plays a crucial role in the investigation of the air quality change around the main corridor. CONCLUSIONS : This study demonstrated the capability of the combined model showing the spatio-tempral change of emission concentration.

A Study on the prospect of Sea & Air multi-transport in the perspective of international logistics environment

  • Chung, Tae-Won;Han, Jong-Khil
    • 한국항해항만학회지
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    • 제34권7호
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    • pp.587-594
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    • 2010
  • The positive and negative opinion to cargo demand of Incheon's SAMT in the near future remains cloudy. Considering port and shipping environmental changes and the logistics situation of China which explains the lack of facilities in Chinese airports, the creating of SAMT cargoes of the Incheon region could catches a favorable opportunity to be a logistics hub in the North-East Asia. On the other hand, as open-sky policy and direct-call service has been carried out between China and N.A.(North America), Incheon could cause a loss of competitiveness in SAMT because the enhancement in the aspect of the connectivity of Chinese airlines and shipping lines makes customer sent to last destination their cargoes whenever they want. In the same context, this paper analyses on conditions of domestic and international SAMT and proposes in this uncertainty future forecasting of SAMT of Incheon by scenario planning according to changes in integrated SAMT, measuring the likelihood of final scenario. This study shows the Sea & Air multi-transport volume will have either slight increase or decrease from the current condition. Consequently, RFS expansion and system & service improvement through strong ties with major cities in China will be required in a short run aspect. Nonetheless, we also need to take domestic & international transportation environment into account in the long run.

항공 수요예측 및 고객 수하물 컨베이어 확장 모형 연구 : 인천공항을 중심으로 (Air Passenger Demand Forecasting and Baggage Carousel Expansion: Application to Incheon International Airport)

  • 윤성욱;정석재
    • 대한교통학회지
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    • 제32권4호
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    • pp.401-409
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    • 2014
  • 본 연구는 시설 확장비용과 승객들의 지체시간 감소에 따른 편익을 고려한 항공의 핵심 시설 확장 문제를 다루고자 한다. 이를 위해 우리는 시계열 예측방법으로 널리 알려진 ARIMA model를 활용하여 계절 및 주기를 갖는 항공피크 수요를 예측한다. 승객이 공항에 도착한 후에 공항 내에서의 승객들의 흐름과 지체를 고려하여 실제 지체 편익을 추정하기 위해 이산사건 시뮬레이션 모형을 설계한다. 비용과 편익 간의 상충관계를 통해 우리는 컨베이어의 경제적 확장 대수를 결정한다. 인천공항의 사례를 활용한 실험이 수행되었으며, 실험 결과는 본 접근방법이 계절에 따른 승객의 도착 유형과 공항 내의 동적인 흐름을 반영한 시설의 확장 문제를 해결하는 데 효과적임을 보인다.

수소 에너지 생산, 수송 및 이용에 대한 통합시스템 해석 (Analysis of the total system for production, transportation and utilization of hydrogen energy)

  • 오병수;서석진
    • 한국수소및신에너지학회논문집
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    • 제9권1호
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    • pp.38-45
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    • 1998
  • An energy crisis is expected in near future. Fossil fuel such as oil and natural gas has been used and will be no longer supplied enough to demand in the beginning of coming century. The use of the fuel makes a lot of environmental pollution to threaten human being's health especially in big cities and produces a lot of $CO_2$ to make green house effect of the earth. It is the time to use clean fuel such as hydrogen to prevent the expected energy crisis and the pollution. A new engine such as fuel cell can be used instead of the conventional internal combustion engine with 2 to 3 times higher efficiency of the conventional engine. The fuel cell uses hydrogen and oxygen and produces electric energy and pure water, which is a calm engine without air pollution. In big cities the city buses and the taxies powered by hydrogen fuel cells are suggested to be operated for clean environment. A model of the total energy system for production, transportation and utilization of hydrogen is calculated.

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도로이동오염원 배출량 산정을 위한 Bottom-Up Approach 기법의 개선에 관한 연구 (An Improvement of Bottom Up Approach for Estimating the Mobile Emission Level)

  • 최기주;이규진;안성채
    • 대한교통학회지
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    • 제27권4호
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    • pp.183-193
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    • 2009
  • 교통 환경문제로 대표되는 차량의 배기가스에 의한 대기오염은 삶의 질과 국민보건에 대한 관심뿐 아니라 범세계적인 문제로 인식되고 있다. 본 연구에서는 교통수요모형과 GIS를 이용하여 도로이동오염원에 대한 시공간적 고해상도의 배출량 산정 방식을 제시하여 정부와 지자체가 효과적으로 대기 질 개선 정책을 수립 추진할 수 있는 기반을 마련하고자 하였다. 이에 차량의 통행특성을 반영하는 Bottom-Up Approach 기법을 기반으로 총 주행거리를 실측치로 보정한 교통모형과 차량의 특성에 적합한 배출계수를 적용할 수 있는 대기모형을 이용한 개선된 기법을 제시하였다. 즉, 새로운 대안으로 교통-대기 통합패러다임에 의해 이를 연계한 도로이동오염원의 배출량 산정기법을 제시함으로써, 도로이동오염원 배출량의 신뢰도 개선이 기대되어진다.

도로 기반시설 개선과 교통흐름 변화에 따른 소형 경유자동차의 대기오염물질 배출특성 (Air Pollutant Emission Characteristics of a Light Duty Diesel Vehicle Affected by Road Infrastructure Improvement and Traffic flow Changes)

  • 길지훈;이태우;이상은;정성운;윤보섭;김정수;최광호
    • 한국분무공학회지
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    • 제21권4호
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    • pp.214-222
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    • 2016
  • Changes in road infrastructure affect driving patterns and pollutant emission characteristics. we analyzed the changes in driving patterns and pollutant emission characteristics of the driving route via measured driving patterns at year 2009 and 2016. Since 2009, there has been an increase in population and traffic demand, including residential areas and industrial facilities. Traffic conditions were improved such as the opening of the highway Inter-Change to Seoul and the construction of underground driveway. As a result, the average vehicle speed increased. More detail comparisons have made on the changes of the underground driveway section and the crossroad section, which are expected to have significant changes in the transportation infrastructure. The vehicle speed distribution of the underground driveway changed from low speed to high speed, and the increase of the time spent at the high speed and high load caused the increase of NOx emissions. The vehicle speed also increased at the crossroad section, and the consequence NOx and $CO_2$ emissions decreased. It is mainly because the decreased time spent at idle, which results from the proper traffic demand management at this area.

저비용항공사 체계적 안전관리 활동을 통한 경영활성화 방안에 대한 연구 (A Study on the Revitalization Method of National Carrier(Low cost carrier) Safety Management System)

  • 민경창;황호원
    • 산경연구논집
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    • 제9권6호
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    • pp.37-47
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    • 2018
  • Purpose - In this study, the safety related tasks for low cost carriers' were examined and measures to improve them were suggested. As the air demand increases rapidly, number of passenger has mushroomed in Korea and in order to keep with the demand low cost carriers have played a role. However, low cost carriers' safety related tasks are not reliable level so far. Thus, in this study, the low cost carriers' current situations in terms of safety are investigated, especially regarding how well the ICAO's new safety policies are applied. Research design, data, and methodology - The results of the Ministry of Land, Infrastructure and Transportation' investigation are introduced and field study results are analysed. Current status of retaining experts, staffs, administrators in terms of aviation safety tasks of low cost carriers is compared to those of major airliner and low cost carriers' aviation safety culture is also analyzed by examining the systems and questioning staffs. Especially the culture regarding aviation safety is very important because the culture surrounding the safety tasks plays a major role in every respect of conducting the tasks. Results - Overall the current status of low cost carriers' aviation safety tasks is below standard. Especially retaining experts and staffs is basically below the required level. Also, system and organization to conduct safety tasks are not satisfactory. In particular, aviation safety culture is not settled to operate appropriately. Conclusions - The International Civil Aviation Organization (ICAO) and member states are continuing to launch new safety policies in response to the surging demand for air travel worldwide. The most urgent and important issue among the various safety policies is to reduce air accidents. In order to reduce the number of accidents, ICAO decided to reduce the number of accidents by using the Reactive Safety Management. ICAO has to ensure that each member country can implement proactive safety management for aviation safety. A safety management system (Safety Management System) is a system in which each member state implements a fulfillment standard. The current situation and problems of the safety management system for each airline are suggested and proposed for improvements.

공기주입형 쿠션 베스트 개발 (Development of an Air Cushion Vest)

  • 손수민;최혜선
    • 한국의류학회지
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    • 제36권2호
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    • pp.179-193
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    • 2012
  • The development of modern transportation technology has required many people in spaces (such as vehicle seats, airports, and train stations) for long periods. The public seats provided in these places are manufactured in a standard size; however, fatigue sets in if the seats are unsuitable for the person's physical size. For this reason, this study developed an air cushion vest that would enhance the comfort of vehicle seats. Passengers in vehicles, trains, airplanes, and buses were observed and surveyed to understand the demand for seat comfort. Our analysis found that the greatest source of discomfort was involuntary nodding of the head while asleep and discomfort around the waist area. For this reason, the air cushion vest was designed to support the head and the waist. The neck cushion of this vest was designed to strengthen head support to counter forward nodding because existing commercial neck cushions had no support for forward nodding. For the waist cushion, at lumbar and below-lumbar parts were chosen as the key parts to be supported, the cushion was designed to contain air at those parts. To cover the embedded waist cushion, the vest was designed to be long. The closure was constructed with zippers from the neck to waistline, and with invisible snaps from the waistline to the hemline so that the wearer could open them easily while seated. A subjective comfort evaluation was conducted to verify the effectiveness of the developed vest. In the test, the developed cushions received a better evaluation than cushions currently available on the market. The volume of the vest could be adjusted by the inflow and outflow of air. It was proven that the vest was effective in terms of comfort and portability. This shows that the developed vest could enhance passenger comfort while sitting on vehicle seats.

직접분사식 바이오에탄올-가솔린 혼합연료의 분무 및 희박연소 특성에 관한 실험적 연구 (An Experimental Study on the Spray and Lean Combustion Characteristics of Bio-enthanol-Gasoline Blended Fuel of GDI)

  • 박기영;강석호;김인구;임철수;김재만;조용석;이성욱
    • 한국분무공학회지
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    • 제19권3호
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    • pp.115-122
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    • 2014
  • As a demand for an automobile increases, air pollution and a problem of the energy resources come to the fore in the world. Consequently, governments of every country established ordinances for green-house gas reduction and improvement of air pollution problem. Especially, as international oil price increases, engine using clean energy are being developed competitively with alternative transportation energy sources development policy as the center. Bio ethanol, one of the renewable energy produced from biomass, gained spotlight for transportation energy sources. Studies are in progress to improve fuel supply methods and combustion methods which are key features, one of the engine technologies. DI(Direct Injection), which can reduce fuel consumption rate by injecting fuel directly into the cylinder, is being studied for Green-house gas reduction and fuel economy enhancement at SI(Spark Ignition). GDI(Galoine Direct Injection) has an advantage to meet the regulations for fuel efficiency and $CO_2$ emissions. However it produces increased number of ultrafine particles, that yet received attention in the existing port-injection system, and NOX. As fuel is injected into the cylinder with high-pressure, a proper injection strategy is required by characteristics of a fuel. Especially, when alcohol type fuel is considered. In this study, we tried to get a base data bio-ethanol mixture in GDI, and combustion for optimization. We set fuel mixture rate and fuel injection pressure as parameters and took a picture with a high speed camera after gasoline-ethanol mixture fuel was injected into a constant volume combustion chamber. We figured out spraying characteristic according to parameters. Also, we determine combustion characteristics by measuring emissions and analyzing combustion.

도시철도의 전동차와 PSD 인터페이스 고찰 (Study for Interface Between EMU and PSD in Metro)

  • 선종민;조은제;양동석;박희철
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2011년도 정기총회 및 추계학술대회 논문집
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    • pp.1397-1404
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    • 2011
  • Metro serves more than a basic function of transporting passengers between short distances but became a crucial part of civic culture due to the fact that citizens demand various facilities for better life style. Therefore, domestic metro cuts off train noise and air dust, provides pleasant platform surroundings by offering effective HVAC, and establishes PSD (Platform Screen Door) system to prevent falls into train tracks. To control and interlock EMU Door and PSD to avoid passenger complaint and revenue service obstructions, stability and reliability of on-board & wayside equipment are required foremost and each line needs to build optimum interface between on-board & wayside equipment. To control PSD, we would like to introduce examples of Busan Metro(BTC : Busan Transportation Corporation) which already utilizes interface between on-board & wayside equipment in various ways and consider optimum interface between on-board & wayside equipment in future PSD system.

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