• Title/Summary/Keyword: TURN

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다목적 회항조선 Double 30 ( woo ) Turn 조성법의 개발에 관한 연구 ( On the New Development of Double 30 ( woo ) Turn Maneuvers )

  • Woo, B.G.
    • Journal of Korean Port Research
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    • v.8 no.1
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    • pp.65-74
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    • 1994
  • There are some turn maneuvers, such as hard Round Turn, Turning Short Round, Williamson Turn and Single Turn, of effectively returning a ship back close to the original track in case of emergency situations of man-overboard and intentional delay of port entrance time, and so forth. But the author developed the new turn maneuvers of Double 30 (woo) Turn originally by means of simulation experiments of Full-Mission Shiphandling Simulator. The conclusions of this study are as follows: 1) By comparison of existing Williamson Turn and Turning Short Round this Double 30(woo) Turn is all-weather multipurpose turn maneuvers in some respects, 2) According to simulation experiments this Double 30 (woo) Turn saved approximately 20-35% of total turning time to the original position and reduced maximum advances by 8-10% approximately in comparison to that of Williamson Turn, 3) Except for emergency men-overboard the Reverse Williamson Turn was proposed as a new reverse maneuver of returning a ship back to the original track.

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Study on Calculation of Bus Stop Set-back Distance to Operate Turn lanes at Intersection on Median Exclusive Bus Lanes (중앙버스전용차로 교차로에서 회전차로 운영시 버스정지선 후퇴거리 산정에 관한 연구)

  • Im, Dong-wook;Lee, Young-Ihn
    • The Journal of The Korea Institute of Intelligent Transport Systems
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    • v.15 no.6
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    • pp.80-89
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    • 2016
  • The median exclusive bus lanes with the purpose of improving public transport as part of a public transport promoting policy propel to improves the speed of the bus and guarantee punctuality security of public transportation for citizen satisfaction. In Median Exclusive bus lanes, Intersection operational methods are classified as turn prohibition, left turn, left turn U-Turn after turn prohibition. However, there are not clear criteria for applying for turn left U-Turn and related researches. The purpose of this study is to search a method for more safely operation when we operate turn left U-Turn in median exclusive bus lanes intersection. As a result, Bus stop in median exclusive bus lane should set back 12m for left turn, 17m for left turn U-turn during 60km/h and set back 13m for left turn, 17m for left turn U-turn during 50km/h.

A Study on Dijkstra Algorithm in Crossroad Including Left-turn Restriction, U-turn, and P-turn (교차로에서의 좌회전 금지, U-turn, P-turn을 고려한 개선된 Dijkstra Algorithm에 관한 연구)

  • Kim, Sung-Soo;Jun, Young-Joo;Cha, Young-Min
    • Journal of Industrial Technology
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    • v.21 no.A
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    • pp.231-240
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    • 2001
  • U-turn and P-turn as well as left-turn restriction exist in real traffic network. the optimal route should be selected for considering these using shortest path algorithms. But, the traditional algorithms have some limitations to use for considering there. The objective of this paper is to modify Dijkstra algorithm in order to find the optimal path in real traffic network. The continuous three nodes are used to check turn-restrictions and exclude these from and optimal path. A virtual connection is used to consider U-turn and P-turn.

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A Study on Efficient Management of Bicycle Traffic Flow at Four-Legged Intersections (4지 신호교차로에서 효율적 자전거 교통류 처리방안 연구)

  • Mok, Sueng Joon;Kim, Eung Cheol;Heo, Hee Bum
    • International Journal of Highway Engineering
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    • v.15 no.3
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    • pp.177-189
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    • 2013
  • PURPOSES: This study aims to suggest a proper left-turn treatment method for the bicycle traffic flow at four-legged intersections. METHODS: Four types of crossing methods are proposed and analyzed : (1) indirect left turn, (2) direct left turn, (3) direct left turn on a Bike Box, and (4) direct left turn on bike left turn lane. The VISSIM simulation tests were conducted based on forty-eight operation scenarios prepared by varying vehicle and bicycle traffic volumes. RESULTS : The results from the four-legged signalized intersections suggest that (1) the indirect left turn is appropriate when vehicle demand is high, (2) the direct left turn is efficient on most traffic situation but the safety is a concern, (3) the direct left turn on a Bike Box is appropriate when bicycle demand is high while vehicle demand is not, and (4) the direct left turn on a bike left turn lane is appropriate when both vehicle and bicycle demand are low. CONCLUSIONS : The direct left turn of bicycle provides more efficiency than the indirect left turn at the four-legged intersections but to apply the methods and to study more, advanced evaluation methods, related law, and insurance programs are needed.

A Study on U-Turn Location and Length Estimation at Signalized Intersection (신호교차로에서 U-Turn허용구간의 위치 및 적정길이 산정에 관한 연구)

  • Lee, Jung-Hwan;Park, Je-Jin;Ha, Tae-Jun
    • Journal of Korean Society of Transportation
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    • v.26 no.1
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    • pp.203-213
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    • 2008
  • U-Turn offers convenience to drivers. U-Turn increases efficiency of traffic flow. But Standard of U-Turn is not clear. It caused many problems of traffic flow and traffic safety. This study estimate length between U-Turn location with front intersection based on stopping sight distance and left-turn vehicle's queue length. Variables are used traffic volume and operation speed. This study Analysis of U-Turn vehicle's behaviors and classification of conflict form by investigation. U-Turn length estimating based on relationship analysis between conflict with U-Turn length. Variables are used lane changing angles and operation speed. This study estimates length between U-Turn location with back intersection based on gap acceptance theory. Variables are used traffic volume, operation speed and lane changing angles. So, U-Turn location and length estimated considering traffic flow and traffic safety.

A Study on Appropriate Breadth for U-turn Setup (U-turn 설치를 위한 적정 폭원에 관한 연구)

  • Lee, Jin-Uk;Kim, Gi-Hyeok
    • Journal of Korean Society of Transportation
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    • v.27 no.3
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    • pp.39-47
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    • 2009
  • Currently, the minimum breadth as a point available for U-turn setup is designated as "over 9m for one way" in the traffic safety facilities practical manuals, and vehicles allowed to make a U-turn are limited to passenger cars. However, as passenger cars have recently become larger and SUVs (Sports Utility Vehicles) are being popularized, they fail to make a U-turn in one attempt. This causes a traffic jam and a problem with traffic safety. This study proposed, compared, and tested the measured values of actual differences in the turning radius of U-turn by actual cars with estimated values by using PC-Crash, a car accident simulation program. Then, the study forecasted the turning radius of U-turns of Korean passenger cars by using PC-Crash, and proposed appropriate breadth for U-turn setup.

Study on the influence of BUDDEUMI in the Live Blood condition and the favorable turn up a subjective symptom of chronic irritable bowel syndrome patient (뜸과 부항의 겸용치료(부뜸이)가 만성대장증후군 환자의 생혈액 형태 및 자각증상 호전도에 미치는 영향)

  • Kim, Gyeong-Cheol
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.19 no.2
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    • pp.544-548
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    • 2005
  • I studied on the influence of BUDDEUMI(moxa and cupping a boil) in the live blood condition and the favorable turn up a subjective symptom of chronic irritable bowel syndrome patient. The results are as follows : After the perform of BUDDEUMI, in the Erythrocyte Aggregation, the efficiency is 87%(3persons decrease and 10 persons destroy/15 persons). In the Rouleau, the efficiency is 78%(2persons decrease and 5 persons destroy/9 persons). In the Target Cells, the efficiency is 90%(3persons decrease and 6 persons destroy/10 persons). In the Ovalocytes, the efficiency is 88%(3persons decrease and 4 persons destroy/8 persons). In the Poikilocytes, the efficiency is 76%(1persons decrease and 2 persons destroy/4 persons). After the perform of BUDDEUMI, in the Cholesterol Crystals, the efficiency is 82%(3persons decrease and 6 persons destroy/11 persons). In the Atherosclerotic Plaque, the efficiency is 80%(2persons decrease and 2 persons destroy/5 persons). In the Chylous, the efficiency is 86%(3persons decrease and 9 persons destroy/14 persons). On the favorable turn up a subjective symptom, the efficiency of symptom of appetite and digestion is 91%(5persons turn up exceedingly favorable, 9 persons turn up favorable, 7 persons turn up good, 2 persons turn up invalid / 23persons). In the efficiency of symptom of fatigue and feeble is 85%(3persons turn up exceedingly favorable, 6 persons turn up favorable, 8 persons turn up good, 3 persons turn up invalid / 20persons). And the efficiency of symptom of abdominal swelling and displeasure is 88%(2persons turn up exceedingly favorable, 10 persons turn up favorable, 8 persons turn up good, 3 persons turn up invalid / 24persons). In the efficiency of symptom of abdominal pain is 88%(4persons turn up exceedingly favorable, 10 persons turn up favorable, 8 persons turn up good, 3 persons turn up invalid / 25persons). The efficiency of symptom of constipation and diarrhoea is 90%(5persons turn up exceedingly favorable, 9 persons turn up favorable, 6 persons turn up good, 2 persons turn up invalid / 22persons).

Development of a New Car Direction Indicator System (자동차 방향전환 표시장치 개발)

  • 박노국
    • Proceedings of the Safety Management and Science Conference
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    • 2001.05a
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    • pp.325-329
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    • 2001
  • This paper deals with a newly developed direction indicator system of a car which displays left turn and U- turn signal differently, so that the following driver can identify the Intent of the next car ahead easily. In general, when a car want to change its direction, the driver move the blinker lever below the steering wheel up or down. However, as the left turn and U-turn signal are the same, there always be the risk of rear-end collision by misinterpreting U-turn signal as left turn signal. In this paper, a new direction indicator system which differentiates left turn and U-turn signal is developed. The left turn signal is the same as before, but when a driver want to U-turn, an additional U-turn signal blinks at the rear of the car. By identifying the direction signals clearly, the developed system is expected to alleviate the risk of car accident.

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Development of a New Car Direction Indicator System (자동차 방향전환 표시장치 개발)

  • 박노국
    • Journal of the Korea Safety Management & Science
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    • v.3 no.2
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    • pp.181-188
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    • 2001
  • This paper deals with a newly developed direction indicator system of a car which displays left turn and U-turn signal differently, so that the following driver can identify the intent of the next car ahead easily. In general, when a car want to change its direction, the driver move the blinker lever below the steering wheel up or down. However, as the left turn and U-turn signal are the same, there always be the risk of rear-end collision by misinterpreting U-turn signal as left turn signal. In this paper, a new direction indicator system which differentiates left turn and U-turn signal is developed. The left turn signal is the same as before, but when a driver want to U-turn, an additional U-turn signal blinks at the rear of the car. By identifying the direction signals clearly, the developed system is expected to alleviate the risk of car accident.

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Direction of Program Development for Supporting U-turn Farmers' Rural Settlement (귀농자들의 농촌정착지원을 위한 프로그램 개발 방향)

  • Kim, Sung-Soo;Cheong, Ji-Woong;Lim, Hyung-Baek;Koh, Woon-Mee;Kim, Jung-Tae;Lee, Sung
    • Journal of Agricultural Extension & Community Development
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    • v.11 no.1
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    • pp.53-65
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    • 2004
  • The purposes for this study was to provide information for developing educational programs for U-turn farmers' based on their needs on rural settlement. Special objectives of the study were; 1) to survey the general characteristics of U-turn farmers including motives. preparation, and education, 2) to investigate problems and difficulties of the U-turn farmers in rural settlement 3) to identify the reasons for success and failure in U-turn filming, and 4) to provide information in developing programs for U-turn farmers. Data for the study were collected from 526 U-turn farmers throughout the country, and after data cleaning, 494 questionnaires were used for data analysis. Based on the results of this study, the following were recommended for further development of U-turn farming programs; 1) to facilitate and expand continuous surveys on the motives. preparation, education and information for U-turn farmers will be neceassary to update the important and current information on U-turn farming. 2) Further examination of the problems and difficulties of U-turn farmers would be necessary to develop appropriate policies and educational programs for U-turn farming. 3) continuous investigations on the reasons for success and failure of U-turn farming would be necessary to develop appropriate apicultural policies. 4) for more effective educational programs for U-turn farmers. selection of educators, institution, curricular and timing etc. Should be carefully designed to meet the practical needs of the U-turn farmers. 5) more research activities should be encouraged to improve program development and implementation of U-turn farming.

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