• 제목/요약/키워드: Vibration Limits

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Driving safety analysis of various types of vehicles on long-span bridges in crosswinds considering aerodynamic interference

  • Han, Yan;Huang, Jingwen;Cai, C.S.;Chen, Suren;He, Xuhui
    • Wind and Structures
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    • 제29권4호
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    • pp.279-297
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    • 2019
  • Strong winds threaten the safety of vehicles on long-span bridges considerably, which could force traffic authorities to reduce speed limits or even close these bridges to traffic. In order to maintain the safe and economic operation of a bridge, a reasonable evaluation of the driving safety on that bridge is needed. This paper aims at carrying outdriving safety analyses for three types of vehicles on a long-span bridge in crosswinds by considering the aerodynamic interference between the bridge and the vehicles based on the wind-vehicle-bridge coupling vibration analysis. Firstly, CFD numerical simulations along with previously obtained wind tunnel testing results were used to determine the aerodynamic force coefficients of the three types of vehicles on the bridge. Secondly, the dynamic responses of the bridge and the vehicles under crosswinds were simulated, and based on those, the driving safety analyses for the three types of vehicles on the bridge were carried out for both cases considering and not considering the aerodynamic interference between the vehicles and the bridge. Finally, the effect of the aerodynamic interference on the safety of the vehicles was investigated. The results show that the aerodynamic interference between the bridge and the vehicles not only affectsthe accident critical wind speed but also the accident type for all three types of vehicles. Such effects are also different for each of the three types of vehicles being studied.

평행식 진동탄환 암거 천공기의 연구(III)-견인력, 토크, 동력 및 모멘크에 관한 모형시험- (A Study on Balanced -type Oseillating Mole-Drainer(III)-Model Test for Draft Force, Torque, Power and Moment)

  • 김용환
    • Journal of Biosystems Engineering
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    • 제1권1호
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    • pp.1-6
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    • 1976
  • This paper is the third one of the study on balanced type oscillating mole-drainer, the first one was presented in No 9. Gyeongsang College Report and the second one in Vol. 17, No.4 of the KSAE. In the first part of this study, the characteristics of traction forces between the nonoscillating earth working equipments and oscillating ones was compared. A model of the balanced type oscillating mole-drainer, which composed of a mechanism that may reduce the machine vibration, was designed following the dimensional analysis and similitude technique. The model test was carried out to clarify the balancing mechanism of the oscillating parts and other parts of the machine. In the light of the results from the model tests, a prototype machine was made for experimental purpose. Results from the field test by a reported in the near future. In the second report, the model tests were carried out under the same soil conditions, i.e, . oscillating frequency, running velocity, and oscillating amplitude, etc. It was clear that use of balanced type oscillating model could substantially reduce the vibration of the whole system of the machine, when compared with the nonoscillating type model. In this paper(the third report), results of investigation on the traction force, power requirement, and moment. etc, is presented. Analysis of variance technique was used for analyzing the effect of the frequency, amplitude, and running velocity on the draft force, torque, power requirements, and moments. The results obtained from the model tests are as follows, 1) By practicing a balanced-type oscillating mole-drainer, it was possible to reduce the traction resistance by 55.1-61. 2 percent of traction resistance, however, was 1.75 - 1.95 times greater than the value of resistance which was induced by use of a mole-drainer with single bullet. The resistance of rear shank against soil was considered as a main causing factor of the above results. 2) As the oscillation frequency was increased, the traction resistance was decreased. Considering on the effect of oscillation the greater the amplitude, and the slower the running velocity was, the greater the reduction ratio of traction resistance was. 3) The ratio of the traction resistance of oscillating mole-drainer to that of non-oscillating one could be represented as a function of dimensionless variable (V/$Af$). The results from the tests were well agreed with the reported results from the experim ents on oscillation plow or hoe. 4) By taking a lower value of (V/$Af$), reducing the traction resistance was possible. This fact meant, however, that the efficiency of mole drain practice would be lower. 5) It was experimentally confirmed under the same condition of soil that the variable (R/$rD1^3$) could be represented as a function of a variable($V^2/gD$) when a non\ulcornerocillating mole-drainer was used. 6) When a oscillating mole-drainer was used, the variable(R/$rD_1^{3}$) could be represented as a function of two variables ($v^2/gD_1$) and (V^2/gD_1$). 7) The torque was not affected by a change of frequency. However, a relation of proportionality existed between torque and amplitude, running velocity, and ratio of bullet diameter. When a balanced type oscillating mole-drainer with two bullets was used, torque was increased by 52.8-78. 4 percent and total power requirement was also increased. 8) Total power requirement was increased linearly in accordance with the increasing frequency, 41.96 percent of total power was used for oscillating action. The magnitude of total power requirement was 1. 8-9. 4 times greater than that of a non-oscillating mechanism. In the view point of power requirement, it was not advisable to increase the frequency, amplitude, running velocity, and ratio of bullet diameter at the same time. 9) Only the positive moment occured in the rear shank. Change of the diameter of a rear bullet, could not affect the balancing against the soil resistance. It was necessary for rear bullet to have a large resistance against soil only when the rear bullet was in backward motion. 10) Within an extent of the experimental base, optimum limits for several design factors were A=0.5cm, $f$=22.5Hz, V=O. 05m/sec, and $\lambda$=1.0 By adapting these values traction resistance was reduced by 40 percent and vibration acceleration wa s reduced by 60 percent. Even though the total , power requirements for operating a balanced type oscillation mechanism was greater ~than that of non-oscillating one, using a oscillating mechanism would be more effective. Because a balanced type oscillating mechanism is used, tractive resistance will be reduced and then the lighter . tractive equipment could be used.

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기계식(機械式) 회전(回轉)레이크를 이용(利用)한 생활계(生活界) 폐기물(廢棄物) 필름류(類) 선별장치(選別裝置) 개발(開發)에 관(關)한 연구(硏究) (Development of Separation System with Rotating Rakes for Recovery of Film-based Plastics)

  • 이병선;나경덕;한상국;최우진;박은규
    • 자원리싸이클링
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    • 제19권3호
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    • pp.24-32
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    • 2010
  • 본 연구에서는 생활폐기물 전처리 시설 및 재활용 선별시설로 반입되는 필름류를 선별하기 위한 기계식 회전레이크를 개발하였으며, 성능평가 및 환경적합성 검토를 통하여 현장 적용 가능성 평가를 수행하였다. 실험결과 처리용량은 벨트컨베이어속도 38.5 m/min, 레이크 회전속도 26.0 rpm(1,2차 레이크 개수는 각각 39개, 52개, 3차 브러쉬 48개)에서 5.3 ton/hr로 설계용량인 5.0 ton/hr를 만족하였으며, 레이크 회전속도 28.0 rpm에서 필름류 회수율은 92.60%, 순도 96.50%로 매우 높게 나타났다. 본 장치에 대한 소음, 진동 및 비산먼지 농도 등에 대한 환경성 평가 결과, 환경오염법적배출허용 기준치를 모두 만족하는 것으로 조사되었다. 또한, 선별된 필름류를 대상으로 고형연료(RPF; Refuse Plastic Fuel) 제조를 통한 재활용 가능성을 평가한 결과, 발열량 약 9,740.3 kg/kcal, 염소함량 약 0.18%로 고형연료 품질기준 1등급을 만족하였다. 따라서 필름류 선별장치를 재활용 선별시설에 적용할 경우 작업량 증가 및 작업환경의 개선이 가능하고, 필름류 제거를 통한 자동화선별장치의 선별효율을 개선 할 수 있을 것으로 사료된다. 또한, 선별된 필름류를 고형연료로 제조하면 화석연료의 대체 에너지원으로서 사용 가능할 것으로 사료된다.

금속-PDC 착물의 음이온교환 수지 상 흡착에 의한 흔적량 코발트와 니켈의 동시 예비농축 및 정량 (Preconcentration and Determination of Trace Cobalt and Nickel by the Adsorption of Metal-PDC Complexes on the Anion-Exchange Resin Suspension)

  • 한철우;인교;최종문;김선태;김영상
    • 분석과학
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    • 제13권5호
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    • pp.608-615
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    • 2000
  • 물 시료에 존재하는 극 미량의 니켈과 코발트를 착물로 형성시켜 이온 교환수지 서스펜션에 흡착시켜 분리 농축하여 정량하는 방법을 연구하였다. 리간드로 APDC (ammonium pyrrolidine dithiocarbamnate)를 사용하여 극 미량 이온들을 착물로 형성시켜 농축한 다음, 전열 원자흡수 분광광도법으로 정량하였다. 이때 착물 형성을 위한 수용액의 pH와 착화제인 APDC의 양, 흡착을 위한 이온교환 수지의 종류 및 저어주는 시간, 역 분산에 사용하는 산의 종류 및 농도, 초음파 진동시간 등의 실험조건들을 최적화 하였다. 시료용액의 pH를 5로 조절하고 APDC의 양을 몰 비로 분석원소 전체의 430배 이상 첨가하여 코발트와 니켈을 정량적으로 착물을 형성시켰다. 이온교환 수지는 음이온 형태의 Dowex 2-X8이 우수하였다. pH를 조절한 시료용액, 리간드 및 수지 서스펜션을 혼합하고 1분간 저어주어 흡착을 완전하게 하였다. 역 분산을 위해서는 0.1 M 염산이 가장 좋았고, 이때 막 필터로 거른 교환 수지를 초음파 진동기에서 7분간 진동하면 충분하였다. 팔라듐을 염산과 함께 사용하면 매트릭스를 개선하여 재현성과 감도가 개선되었다. 바탕흡수 신호표준편차의 세배에 해당하는 검출한계는 Co 0.36 ng/mL, Ni 0.27 ng/mL로 극미량 검출이 가능하였고 시료에 일정량 첨가한 분석원소의 회수율은 각각 99-102%와 100-105% 이었다.

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