DOI QR코드

DOI QR Code

수직갱을 이용한 터널내 비정상 압축파의 피동제어

Passive control of unsteady compression wave using vertical bleed ducts

  • 발행 : 1997.09.01

초록

When a high-speed railway train enters a tunnel, a compression wave is generated ahead of the train and propagates along the tunnel, compressing and accelerating the rest air in front of the wave. At the exit of the tunnel, an impulsive wave is emitted outward toward the surrounding, which causes a positive impulsive noise like a kind of sonic boom produced by a supersonic aircraft. With the advent of high-speed train, such an impulsive noise can be large enough to cause the noise problem, unless some attempts are made to alleviate its pressure levels. For the purpose of the impulsive noise reduction, the present study investigated the effect of a vertical bleed duct on the compression wave propagating into a model tunnel. Numerical results were obtained using a Piecewise Linear Method and testified by experiment of shock tube with an open end. The results showed that the vertical bleed duct reduces the maximum pressure gradient of compression wave front by about 30 percent, compared with the straight tunnel without the bleed duct. As the width of the vertical bleed duct becomes larger, reduction of the impulsive noise is expected to be greater. However the impulsive noise is independent of the height of the vertical bleed duct.

키워드

참고문헌

  1. 大韓機械學會誌 v.36 no.1;3;5 高速鐵道의 空氣力學 I~III 김희동
  2. 大韓機械學會論文集 v.21 no.8 터널내를 주행하는 1열차의 공기역학적 해석 김희동
  3. 大韓機械學會誌 v.34 no.10 高速鐵道 터널에서 發生하는 流體力學的 波動現象 김희동
  4. KSME Journal v.10 no.4 Interaction of Unsteady Expansion Wave with Cross-Sectional Area Change in Tube Kim, H. D.;Setoguchi, T.
  5. Journal Fluid Eng. v.98 no.2 Steam Flow Through Safety Valve Vent Pipes Brandmaier, H. E.;Knebel, M. E.
  6. Transactions of JSME v.54 no.498 Initiation and Propagation of Shock Waves in the Exhaust Pipe of an Internal Combustion Engine Sekine, N. et. al.
  7. Progress in Astronautics and Aeronautics Gun Muzzle Blast and Flash Klingenberg, G.;Heimerl, J. M.
  8. Proc. of 7th Intl. Symp. on the Aerodynamics and Ventilation of Vehicle Tunnels Countermeasures to Reduce Micro-Pressure Waves Radiating from Exits of Shinkansen Tunnels Ozawa, S.;Maeda, T.;Matsumura, T.;Uchida, K.;Kajiyama, H.;Tanemoto. K.
  9. ASME Trans. Journal Fluid Engineering Passive Control of Impulsive Noise Caused by Unsteady Compression Wave Kim, H. D.;Setoguchi, T.
  10. JSME International Journal v.40 no.2 Reduction of Impulsive Noise Caused by Unsteady Compression Wave Kim, H. D.;Setoguchi, T.
  11. Journal Numerical Anal. v.5 no.3 On the Construction and Computation of Difference Schemes Strang, G.
  12. Communications of Pure and Applied Mathematics v.18 Solution in the Large for Nonlinear Hyperbolic System of Equations Glimm, J.
  13. Railway Technical Res. Rept. of Japan no.1121 Studies of Micro-Pressure Wave Radiated from a Tunnel Exit Ozawa, S.
  14. International Conf. on Fluid Engineering Passive Control of Unsteady Compression Wave Using Porous Walls Kim, H. D.;Setoguchi, T.
  15. 日本機械學會論文集(B) v.54 no.503 長大菅內の壓縮空氣の減壓特性に關する硏究(弟3報, 分岐菅付長大菅の實驗) 長谷川泉;川口淸;田中宏
  16. トンネル出口微氣壓波の實能 小澤智;森藤達夫;前田達夫;木下眞夫
  17. 大韓機械學會論文集 v.18 no.10 高速鐵道 터널에서 發生하는 波動現象에 關한 衝擊波菅의 硏究1(壓縮波의 特性에 關하여) 金羲東(外 1人)
  18. 入口緩衝工による備後トンネル微氣壓波の低滅 小澤智;內田俊孝;前田達夫
  19. 大韓機械學會論文集 v.20 no.7 高速鐵道 터널出口에서 發生하는 衝擊性 騷音의 低滅을 위한 實驗的 硏究 金羲東(外 1人)