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An Experimental Study for Reduction of Energy losses at Surcharged Four-way Combining Square Manhole

과부하 4방향 사각형 합류맨홀에서의 에너지 손실 저감을 위한 실험 연구

  • 김정수 (부천대학교 토목과) ;
  • 김채린 (경기대학교 대학원 토목공학과) ;
  • 윤세의 (경기대학교 공과대학 토목공학과)
  • Received : 2017.01.18
  • Accepted : 2017.02.20
  • Published : 2017.04.01

Abstract

Energy loss at manholes under surcharged flow is considered as one of the major causes of inundation in urban area. Therefore, it is necessary to analyze the flow characteristics to reduce the energy loss in the surcharged four-way combining manhole. In this study, hydraulic experimental apparatus was constructed considering the results of the present survey. Square manholes and pipe diameters were reduced to 1/5 by applying sewer facility standards. Numerical simulations were carried out with the Fluent 6.3 model to derive the invert condition which can reduce the energy loss in the surcharged four-way combining square manhole. The hydraulic experiments were carried out according to the various conditions of the lateral flow rate($Q_{lat}/Q_{out}$), discharge of outflow pipe (2.0, 3.0, 4.0, 4.8 l/sec), and invert shape (rectangle and square open conduit type). The crossed invert was not found to improve the drainage capacity of the surcharged four-way rectangular combining manhole. However, the improved rectangle open conduit type invert and square open conduit type invert were analyzed to improve the drainage capacity by reducing the head loss coefficients by about 8% and 28%, respectively. Therefore, in order to increase the drainage capacity of urban facilities, it is possible to install and use the improved invert proposed in this study.

과부하 맨홀에서의 에너지 손실은 도심지의 침수피해를 가중시키는 요인이 된다. 그러므로 과부하 4방향 합류맨홀에서 에너지 손실의 저감을 위한 흐름특성 분석이 필요하다. 본 연구에서는 현황조사 결과를 고려하여 수리실험 장치를 제작하였으며, 사각형 맨홀 및 연결관은 하수도시설 기준을 준용하여 1/5로 축소 제작하였다. 또한 과부하 4방향 사각형 합류맨홀에서 에너지 손실을 저감 시킬 수 있는 인버트 형상 조건을 도출하기 위하여 Fluent 6.3모형으로 수치모의를 실시하였다. 선정된 수리실험 조건인 유출유량($Q_{out}$)에 대한 측면 유입유량($Q_{lar}$)의 비($Q_{lat}/Q_{out}$)와 유출유량(2.0, 3.0, 4.0, 4.8 l/sec) 및 인버트 형상 변화 조건(십자형, 개선형)을 변화시키며 수리실험을 실시하였다. 십자형 인버트는 과부하 4방향 합류 맨홀의 배수능력 향상에 영향이 미미한 것으로 분석되었다. 그러나 개선된 직사각 개거형 인버트와 정사각 개거형 인버트는 각각 평균적으로 약 7%, 28%의 손실계수가 감소하여 배수능력을 개선하는 것으로 분석되었다. 따라서 도시 관거 시설의 배수능력을 증대시키기 위하여 본 연구에서 제시된 개선형 인버트의 설치 및 활용이 가능할 것으로 판단된다.

Keywords

References

  1. Arao, S. and Kusuda, T. (1998). "Manhole profiles for energy loss reduction." Proceedings of HydraStorm 98, Third International Conference on Stormwater Management, Adelaide, pp. 235-240.
  2. Federal Highway Administration (2005). Urban Drainage Design Manual.
  3. Fluent Inc (2005). Fluent 6.3 User's Guide, Fluent Inc, New Hampshire, USA.
  4. Johnston, A. J. and Volker, R. E. (1990). "Head losses at junction boxes." Journal of Hydraulic Engineering, Vol. 116, No. 3, pp. 326-341. https://doi.org/10.1061/(ASCE)0733-9429(1990)116:3(326)
  5. Kim, J. S. (2010). "An experimental study for flow improvement at surcharged manholes." Doctoral Dissertation of Kyonggi University (in Korean).
  6. Kim, J. S., Chio, H. S., Kim, H. M. and Yoon, S. E. (2010). "Analysis of stream characteristics at combine junction manhole using fluent model." Proceedings of KWRA Conference 2010, Korea Water Resources Association, pp. 649-653 (in Korean).
  7. Kim, J. S., Lim, G. H., Rim, C. S. and Yoon, S. E. (2011). "Estimation of head loss coefficients at surcharged square manhole using numerical model." Journal of Korean Water Resources Association, Vol. 11, No. 3, pp. 143-150 (in Korean).
  8. Kim, J. S., Song, J. I. and Yoon, S. E. (2008). "An experimental study for drainage capacity increment at surcharged square manholes." Journal of Korean Society of Water and Wastewater, Vol. 22, No. 6, pp. 619-625 (in Korean).
  9. Kim, J. S., Song, J. I. and Yoon, S. E. (2009). "An experimental study for drainage capacity increment at surcharged manholes with a $90^{\circ}C$ bend." Journal of Korean Society of Water and Wastewater, Vol. 23, No. 4, pp. 447-458 (in Korean).
  10. Kim, J. S., Yoon, Y. N., Han, C. S. and Yoon, S. E. (2008). "Analysis of hydraulic similarity at surcharged square manhole." Proceedings of KWRA Conference 2008, Korea Water Resources Association, pp. 510-514 (in Korean).
  11. Lindvall, G. (1984). "Head losses at surcharged manholes with a main pipe and a $90^{\circ}C$ lateral." Proceeding 3rd International Conference on Urban Storm Drainage, 1, pp. 137-146.
  12. Marsalek, J. (1984). "Head losses at sewer junction manholes." Journal of Hydraulic Engineering, ASCE, Vol. 110, No. 8, pp. 1150-1154. https://doi.org/10.1061/(ASCE)0733-9429(1984)110:8(1150)
  13. Marsalek, J. and Greck, B. J. (1988). "Head losses at manholes with a $90^{\circ}C$ bend." Canadian Journal of Civil Engineering. Revue canadienne de genie civil, Vol. 15 No. 5, pp. 851-858. https://doi.org/10.1139/l88-110
  14. Merlein, J. (2000). "Flow in submerged sewers with manholes." Urban Water, Vol. 2, No. 3, pp. 251-255. https://doi.org/10.1016/S1462-0758(00)00063-7
  15. Ministry of environment (2011). Design Criteria of Sewerage.
  16. Ryu, T. H., Kim, J. S. and Yoon, S. E. (2016). "An experimental study for estimation of head loss coefficients at surcharged fourway combining manholes." Journal of Korean Water Resources Association, Vol. 19, No. 12, pp. 1015-1025 (in Korean).
  17. Wang, K. H., Cleveland, T. G., Towsley, C. and Umrigar, D. (1998). "Head loss at manholes in surcharged sewer systems." Journal of the American Water Resource Association, AWRA, Vol. 34, No. 6, pp. 1391-1400. https://doi.org/10.1111/j.1752-1688.1998.tb05439.x