• Title/Summary/Keyword: Gimhae International Airport

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Noise Analysis of New Runway at the Gimhae International Airport using Aviation Environmental Design Tool (AEDT) (AEDT (aviation environmental design tool)을 이용한 김해 국제공항 신 활주로 소음 분석)

  • Lim, Eun-Ha;Hwang, Ho-Yon
    • Journal of Advanced Navigation Technology
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    • v.22 no.5
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    • pp.343-350
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    • 2018
  • The number of international passengers at Gimhae International Airport, the fourth-largest airport in Korea, is gradually increasing. This raised the need for a new airport in southeastern region, and Ministry of Land, Infrastructure and Transport decided to build a new runway for Gimhae International Airport. In this study, to predict the noise generated by a new runway, the noise analysis using the aviation environmental design tool (AEDT) of Federal Aviation Administration (FAA) was performed. In this paper, when a new runway was built at the Gimhae International Airport, an area of noise damage that is increasing than the present was predicted using arrival and departure data of airlines in a day.

Empirical Analysis of Airplane Route for Reduction of Aircraft Noise at Gimhae International Airport (김해국제공항 항공기 소음 저감을 위한 비행기항적실증분석)

  • Kim, Bong-Ki;Lee, Seung-Won
    • Journal of Environmental Science International
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    • v.30 no.3
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    • pp.257-266
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    • 2021
  • This study explored measures to reduce noise applicable to Gimhae international airport centering on densely packed housing areas. Especially, as for measures to relieve noise damage on the densely packed housing areas in Gimhae-si, the noise reduction effect is expected to be doubled if the west runway (36L/18R) is used as the preferred runway for the 36 direction takeoff, as well as if the flight bypasses the densely packed housing areas by means of sophisticated navigation using the area navigation (RNAV) procedure based on performance-based navigation (PBN). Takeoff toward the south connects the flight path to the South Sea which has comparatively low noise impact, relieving noise damage on the densely packed housing areas (apartment complexes in Naeoe-dong of Gimhae-si, etc.) near the northern end of the runway. The operation of the runway displaced threshold is currently being implemented on the west runway (36L/18R) of Gimhae international airport. It has been found that swing landing in spring and summer when the wind blows from the south has a noise reduction effect on the noise sensitive areas at the side and end of the west runway (Gangdong-dong and Jukdong-dong of Gangseo-gu and Buram-dong of Gimhae-si, etc.).

Comparison of Noise Reduction Policy in Medium-sized Airports (중형 규모 공항의 소음저감 정책 분석)

  • Kim, Young-Rok;Lim, Jae-Hwan;Choi, Youn-Chul;Song, Ki-han;Shin, Hong-Woo
    • Journal of the Korean Society for Aviation and Aeronautics
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    • v.26 no.4
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    • pp.155-163
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    • 2018
  • The development in air transport increases noise around the airport. In order to reduce the noise around the airport, International Civil Aviation Organization has made a lot of effort since the 1970s and Many countries, including South Korea, are implementing many noise reduction policies. This paper investigates those noise reduction policies of medium-sized airports with similar frequency to Gimpo, Jeju and Gimhae airports in South Korea and compares eleven airports in Europe, eleven airports in Asia and five airports in America, including Oceania. According to the research, European countries developed and applied the navigation procedure to avoid the noise area according to the characteristics of the airport. In Asia, there are not as many domestic noise reduction policies. In case of the United States, it provides information only on noise-sensitive areas around airports. After having investigated various policies, this research has examined the noise reduction policy of South Korea. It is concluded that new navigation procedures which reduce noise should be developed.

A Study of Analysis for Domestic Airport Efficiency Considering Undesirable Output (유해산출물을 고려한 국내 공항 효율성 측정에 관한 연구)

  • Kang, Dalwon;Jeong, Donghun;Jeon, Seungjoon
    • Journal of the Korean Society for Aviation and Aeronautics
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    • v.26 no.4
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    • pp.27-35
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    • 2018
  • Recently, Intense competition is expected to bring about continuous change with the rapid global aviation industry. In particular, domestic passenger demand has been steadily increasing over the past five years, with domestic and international shipments growing at a CAGR of 8.4% and 10.0%, respectively. In addition to the economic value of the airport, social interest due to greenhouse gas emissions is also rising. In this study, we analyzed the efficiency of airport operation by using DEA model(Directional Technology Distance Function) considering undesirable output for 14 airports in Korea. As a result of analysis, all airports except Gimhae, Yangyang, Cheongju and Yeosu were analyzed as efficient airports. However, only Gimpo, Gimhae, Jeju, Muan, Daegu and Gwangju were analyzed as efficient airports considering the undesirable output.

Influence of Greenhouse Gas Emissions from Commercial Aircraft at Korean International Airports on Radiative Forcing and Temperature Change (국내 대규모 공항의 항공기 온실가스 배출에 따른 복사강제력 및 기온변화 영향 연구)

  • Song, Sang-Keun;Shon, Zang-Ho;Jeong, Ju-Hee
    • Journal of Korean Society for Atmospheric Environment
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    • v.30 no.3
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    • pp.223-232
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    • 2014
  • Monthly variations of radiative forcing (RF) and mean temperature changes by greenhouse gases emitted from commercial aircraft were estimated based on the simplified expression at four international airports (Incheon, Gimpo, Jeju, and Gimhae Airports) during the years of 2009~2010. The highest RF and mean temperature change in the study area occurred at Incheon Airport, whereas the lowest RF and mean temperature change at Gimhae Airport. During 2009~2010, the mean RF and mean temperature change estimated from aircraft $CO_2$ emissions at Incheon Airport were approximately 30.0 $mW/m^2$ and $0.022^{\circ}K$, respectively. The mean RF and mean temperature changes caused by other greenhouse gas $N_2O$ was significantly small (<<0.1 $mW/m^2$ and << $1{\times}10^{-3}^{\circ}K$). Meanwhile, $CH_4$ emissions caused negative mean RF ($-4.45{\times}10^{-3}mW/m^2$ at Incheon Airport) and the decrease of mean temperature ($-3.83{\times}10^{-6}^{\circ}K$) due to consumption of atmospheric $CH_4$ in the aircraft engine.

Influence in the Management Performance by the Airport Safety Management System (공항 안전관리시스템이 경영성과에 미치는 영향)

  • Song, Jong-Sun;Kim, Ki-Woong;Lee, Yung-kil
    • Journal of the Korean Society for Aviation and Aeronautics
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    • v.23 no.3
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    • pp.64-80
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    • 2015
  • In this article, we verify to influence in the management performance by the safety management system that is recommended by the ICAO for the safety management on the airside area in the airport. Also, We present a comprehensive mediator effect that the employees perceive safety culture and safety behavior. We design how participants were selected as study the employees from 4 airports on the airside areas of the Incheon International Airport, Gimpo International Airport, Jeju International Airport and Gimhae International Airport in the Korea using the simple random sampling method. The instrument for data collection was a questionnaire, and it was developed. Data analysis was to conduct structural equation modeling. Test of the hypotheses were verified to Maximum Likelihood Estimator. As a result of the analysis, safety behavior and risk management of the safety management system found out that affect management performance. Also, the employees of a high awareness about safety policy could be seen that is a high impact on management performance through a safety culture and a safety behavior. Safety behavior has significant mediator effect within the relationship between the safety management system and management performance. So, We provide guidance of the safety policies for the safety management on the airside area in the airport.

Emissions of Air Pollutants and Greenhouse Gases from Aircraft Activities at the Gimhae International Airport (김해공항에서 항공기에 의한 대기오염물질과 온실가스의 배출량 산정 및 특성 분석)

  • Song, Sang-Keun;Shon, Zang-Ho
    • Journal of Korean Society for Atmospheric Environment
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    • v.28 no.2
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    • pp.190-202
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    • 2012
  • Emissions of air pollutants and greenhouse gases (GHGs) by aircraft at the Gimhae International Airport (GIA) were investigated using the Emissions and Dispersion Modeling System (EDMS) version 5.1.3. The number of Landing and Take-Off (LTO) at the GIA for aircraft B737 was dominant, accounting for more than 60% of the total LTOs. For air pollutant emissions, CO was the most dominant pollutant by aircraft, followed by $NO_x$, VOCs, $SO_x$, etc. The emissions of CO, $NO_x$, and VOCs in 2009 (and 2010) at the GIA were 974 (968), 447 (433), 118 (122) ton/yr, respectively. The emissions of GHGs such as $CO_2$, $CH_4$, and $N_2O$ in 2009 (and 2010) were 110,795 (111,114), -0.157 (-0.151), and 1,989 (1,998) ton/yr, respectively. The negative number in $CH_4$ emission represents the consumption of atmospheric $CH_4$ in the engine. In addition, the emissions of most air pollutants (except for $PM_{10}$) and GHGs were estimated to be high in Taxi-Out and Climb-Out modes.

Impact of Air Pollutant Emissions from Aircraft on the Air Pollution around Airport (항공기 배출량 산정 방법에 따른 공항주변 대기오염 영향분석연구)

  • Han, Seung-Jae;Yoo, Jung-Woo;Lim, Yoon-Jin;Lee, Soon-Hwan;Lee, Hwa-Woon
    • Journal of Environmental Science International
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    • v.23 no.12
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    • pp.2089-2099
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    • 2014
  • Emissions from aircraft have impacts on the air pollution of airport and the surrounding area. There are methods of emissions calculated as Tier 1, Tier2, Tier 3A and Tier 3B. Thus, this study investigated emissions from aircraft at the Gimhae International Airport using EDMS(Emissions & Dispersion Modeling System) program. Results of estimation from aviation emissions, Tier 3B considering all parts which can occur at the airport has the largest amount emissions. In order to understand the relation between aviation emissions and distribution of ozone concentration over airport area, numerical evaluation were carried out. Although the difference of surface ozone distribution between numerical assessment with and without aviation emissions was little, effects of air pollution at airport area from aviation emissions of NOx and VOCs.