• 제목/요약/키워드: Tunnel Noise

검색결과 428건 처리시간 0.02초

수치해석기법을 이용한 실내시험장 압력특성해석 및 개념설계 (Pressure Analysis and Conceptual Design for Indoor Ballistic Test Range by Numerical Methods)

  • 정희영;박관진;김남혁
    • 한국군사과학기술학회지
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    • 제20권1호
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    • pp.55-62
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    • 2017
  • For evaluating a large caliber ammunition tests, indoor ballistic test range is required to reduce the noise and fragments occurring during the test. To ensure the reliability of the indoor ballistics test range design, we carried out the analysis of the indoor test range using the AUTODYNE hydrodynamic code before its construction. The 120 mm tank ammunition is adopted as a reference model and we analysed the characteristics of the pressure distribution at fire area, the structure design at impact area, the over-pressure applied to the tunnel, and the sabot stopper design. The results of the analysis were applied to the design of the indoor ballistic test range.

다공벽을 이용한 충격파 강도의 피동제어 (Passive control of strength of shock wave)

  • 최영상;권순범;조철영
    • 대한기계학회논문집B
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    • 제21권1호
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    • pp.174-184
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    • 1997
  • A shock wave, being an irreversible process, gives rise to entropy increase. A great deal of effort has been made to control shock wave and boundary layer interaction related to energy losses as well as problems of vibration and noise. In the present study, tests are performed on a roof mounted half circular arc in an indraft type supersonic wind tunnel to evaluate the effects of porosity, length and depth of cavity in passive control of shock wave on the attenuation of shock strength by reviewing the measured static pressures at the porous wall and cavity. Also the flow field is visualized by a Schlieren system. The results show that in the present study the porosity of 8% produced the largest reduction of pressure fluctuations and that for the same porosity, the strength of shock wave decreases with the increasings of the depth and length of cavity.

대구 지하철 구간내 선형 변동에 따른 소음 및 진동 저감 방안 연구 (The optimal control methods to reduce the environmental hazards surrounding the YoungNam Uni. Rotary of City Taegu constructing Subway Line No.1)

  • 지왕률;최재진;강상수;강대우
    • 터널과지하공간
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    • 제7권2호
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    • pp.116-129
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    • 1997
  • The objective of this study is to predict the minimization effect of the noise and vibration during the construction and the train operation regarding to the design modification of the Taegu Subway Line No. 1. It was suggested optimal control blasting methods to reduce the causing vibration Nuance to the resident in City Taegu and also proposed the better governing method to decrease the environmental hazard to the near buildings and residents during the train operation. When the high-density gaseous reaction of explosion products exerts a high pressure in motion outward, a dynamic stress field will be created in the surrounding buildings. Therefore, in the region close to the charge, permanent damage begins to occur at a great critical level of partial velocity, that is difficult from different structure as working conditions. It is reliable to predict that the damages could be reduced if we know the peak velocity and the exact reasons through the conducting of detail studies of structural analysis of the related buildings with the optimal blasting designs. A blasting technique should be deemed to take advantage of the reduction of damage of the surrounding rocks and structures to improve the in-city blasting. This is a typical in-city blasting operation where success depends on closely controlling the ground vibrations in case of better designed blasting methods. There are techniques that can be applied to prevent large vibrations from damaging the important buildings through the Route Modification of the Taegu Subway Line No. 1.

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레이저스캐너를 이용한 앵커리지 지하공동의 토공량 산정 (Earthwork Volume Calculation of Anchorage Underground Capacity Using Laser Scanner)

  • 최석근;김동윤
    • 대한공간정보학회지
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    • 제18권3호
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    • pp.21-27
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    • 2010
  • 기존의 구조물 지하공동의 용량측정은 일반적인 측량방법은 불규칙한 단면측정이 곤란하고, 사진측량방법은 시공중의 먼지나. 소음, 진동, 조명조건 등의 문제로 인하여 정확한 단면결정이 곤란하다. 레이저스케너시스템은 레이저 펄스를 주사하여 반사된 레이저 펄스의 도달시간을 측정함으로써 반사 타깃 없이 지형 지물 및 구조물의 3차원 좌표를 취득할 수 있는 것으로 3차원 모델링에 많이 이용되고 있다. 따라서, 본 연구는 교량 구조물 공사가 이루어지고 있는 지하 앵커리지 굴착 공사에 레이저스케너를 사용함으로서 정확한 단면 및 토공량을 결정하였다.

균일 유동장내에서의 경사진 원형실린더의 유동유기진동 특성 연구 (Experimental Study on the Flow-Induced Vibration of Inclinced Circular Cylinders in Uniform Flow)

  • 정태영;홍섭;문석준;함일배;이헌곤
    • 소음진동
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    • 제5권3호
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    • pp.303-311
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    • 1995
  • Tests on flow-induced vibration of inclined cylinders in uniform flow were performed in the cavitation tunnel at the Korea Instituteof Machinery and Metals. The test program was intended to investigate flow-induced vibration characteristic of the cylinders with three different inclined angles of 10$^\circ$, 20$^\circ$ and 30$^\circ$ and to estimate the fluid force coefficients acting on the cylinders. Important observations are as follows: 1) Numal drag is dominant compared with viscous drag for the inclined angle over 20.deg. and it has the value from 1.7 to 2.0 as was observed by other researchers. 2) Lift force coefficient has large value at the lock-in range determined by 4$\Theta/f_nD$<8. Measured maximum lift force coefficients at the inclined angle of 30.$^\circ$ and 20$^\circ$ were 0.9 and 0.4 respectively.

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전산해석과 실험의 비교검증을 통한 원통형 수중운동체 주위의 캐비테이션 유동현상 연구 (COMPARISON OF CFD SIMULATION AND EXPERIMENT OF CAVITATING FLOW PAST AXISYMMETRIC CYLINDER)

  • 박형만;박원규;정철민
    • 한국전산유체공학회지
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    • 제17권1호
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    • pp.78-85
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    • 2012
  • Cavitation causes a great deal of noise, damage to components, vibrations, and a loss of efficiency in devices, such as propellers, pump impellers, nozzles, injectors, torpedoes, etc., Thus, cavitating flow simulation is of practical importance for many engineering systems. In this study, a two-phase flow solver based on the homogeneous mixture model has been developed. The flow characteristics around an axisymmetric cylinder were calculated and then validated by comparing with the experimental results in the cavitation water tunnel at the Korea Ocean Research & Development Institute. The results show that this solver is highly suitable for simulating the cavitating flows. After the code validation, the cavity length with changes of water depth, angle of attack and velocity were obtained.. Cavitation inception was also calculated for various operational conditions.

초음속 노즐에서 발생하는 응축충격파 진동의 피동제어 (Passive Control of the Condensation Shock Wave Oscillation in a Supersonic Nozzle)

  • 백승철;권순범;김희동
    • 대한기계학회논문집B
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    • 제26권7호
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    • pp.951-958
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    • 2002
  • Rapid expansion of a moist air or a stream through a supersonic nozzle often leads to non-equilibrium condensation shock wave, causing a considerable energy loss in flow field. Depending on amount of latent heat released due to non-equilibrium condensation, the flow is highly unstable or a periodical oscillation accompanying the condensation shock wave in the nozzle. The unsteadiness of the condensation shock wave is always associated with several kinds of instabilities as well as noise and vibration of flow devices. In the current study, a passive control technique using a porous wall with a plenum cavity underneath is applied for the purpose of alleviation of the condensation shock oscillations in a transonic nozzle. A droplet growth equation is coupled with two-dimensional Navier-Stokes equation system. Computations are carried out using a third-order MUSCL type TVD finite-difference scheme with a second-order fractional time step. An experiment using an indraft wind tunnel is made to validate the present computational results. The results show that the oscillations of the condensation shock wave are completely suppressed by the current passive control method.

원심형 송풍기의 날개 특성에 따른 성능에 관한 연구 (A Study on the Performance of Centrifugal Blowers by Blades Characteristics)

  • 김재원;안은영
    • 한국유체기계학회 논문집
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    • 제7권5호
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    • pp.13-19
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    • 2004
  • Centrifugal blowers are widely used for air handling units in industry applications. The blower has a centrifugal impeller and a scroll casing including a driving component such as an electric motor. The impeller takes forward or backward blades to induce flows into the blower, Comprehensive investigation according to the two kinds of blades is systematically carried out for a guidance of design for this kind research. It is observed that flow rate of the blower with forward blades is larger than that of the system with backward blades. Otherwise, the system noise is more pronounced in the case of the blower with forward blades. The reason is due to larger velocity from the rotating forward blades that pose obtuse angle with the circumferential direction. The distinguished characteristics are validated by a parallel experiments with a wind tunnel and in an anechoic chamber. Numerical analysis for the system shows detail information inside the blades and the casing. A series of figures to show the flow details offer deep understanding of the performance of a centrifugal blower with different blades.

난류경계층의 3차원 헤어핀 다발구조에 대한 실험적 연구 (Experimental Study on the Three-Dimensional Topology of Hairpin Packet Structures in Turbulent Boundary Layers)

  • 권성훈;윤상열;김경천
    • 대한기계학회논문집B
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    • 제28권7호
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    • pp.834-841
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    • 2004
  • Experimental study on the three-dimensional topology of hairpin packet structures in turbulent boundary layers were carried out. Two different Reynolds number based on momentum thickness, Re$\sub$$\theta$/=514 and 934 were generated in a blowing type wind tunnel under the condition of zero pressure gradient. Simultaneous measurements of velocity fields at a wall-normal plane and wall-parallel plane by a plane PIV and a Stereo-PIV systems. The two Nd:Yag laser systems and three CCD cameras were synchronized to obtain instantaneous velocity fields at the same time. To avoid optical noise at the crossing line by the two laser light sheets, a new optical arrangement using polarization was applied. The obtained velocity fields show the existence of hairpin packet structure vividly and the idealized hairpin vortex signature is confirmed by experiment. Two counter-rotating vortex pair which reflects the cutting plane of hairpin legs are found both side of a strong streaky structure when the wall-normal plane cuts the hairpin head.

충격파 감금법을 이용한 배기가스 유동의 새로운 처리법에 관한 연구 (New Treatment of High-Pressure Exhaust Gas Flows Using Shock-Wave Confinement)

  • 김희동;김태호;우선훈
    • 한국추진공학회지
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    • 제2권1호
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    • pp.78-87
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    • 1998
  • 본 연구에서는 유로의 상류와 하류에 오리피스를 가지는 일정 단면적의 관로에 충격파를 감금시킴으로써, 고압력의 배기가스 유동을 감압처리하는 새로운 방법을 시도하였다. 이론해석에서는 일차원 점성 압축성 유동이론을 두 오리피스를 가지는 내부유동에 적용하여 이론계산을 수행하였다. 실험에서는 충격파 풍동을 이용하여, 압력측정과 유동장의 광학관찰을 수행하였다. 그 결과 충격파를 관내에 감금하기 위해서는 관의 마찰계수를 크게 하는 것이 바람직하다는 것을 알았다. 또 상류 오리피스의 단면적을 일정하게 하는 경우, 하류의 오리피스 단면적을 변화시킨다고 하더라도 전압의 감소량은 크게 변화하지 않았으나, 하류 오리피스의 단면적을 일정하게 하는 경우, 상류 오리피스의 단면적을 작게 할수록 전압감소량은 커진다는 것을 알았다. 본 연구의 결과는 각종 플랜트에서 발생하는 고압의 배기가스유동에 대한 새로운 처리법으로 유용하리라 판단된다.

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