DOI QR코드

DOI QR Code

Experimental Study on Internal Temperature Change Induced by Heating Element Attached to Tunnel Lining Surface

터널 라이닝 표면에 부착된 발열체로 인한 내부 온도 변화의 실험적 연구

  • Received : 2017.09.21
  • Accepted : 2017.10.24
  • Published : 2017.11.01

Abstract

The rearside of concrete lining of tunnels constructed in cold region might experience on freezing due to the low temperature. This causes damage of concrete lining resulting in adverse affect on the durability as well as integrity of tunnel structure by causing damage to the concrete lining. In order to prevent the rearside of tunnel lining from freeing, the temperature change inside the concrete lining was measured by attaching a heating element to the tunnel lining surface and generating heat for a certain period of time. A special freezing chamber was developed to conduct the experiments considering in-situ environment. The carbone nanotube (CNT) was used as a heating element in this study. The temperature distribution of the concrete lining was measured by applying the heat to the heating element. The effect of the outside temperature and heating duration were analyzed.

한랭지역에 건설된 터널은 낮은 기온으로 인하여 콘크리트 라이닝 배면의 동결이 발생하게 되며, 콘크리트 라이닝의 손상을 발생시켜 터널구조물의 내구성을 감소시킨다. 터널 라이닝 배면 지반의 동결을 억제시키기 위하여 터널 라이닝 표면에 발열체를 부착하고 일정시간 동안 발열시켜 콘크리트 라이닝 내부의 온도변화를 측정하였다. 냉동챔버를 제작하여 현장현황을 모사하고 발열체는 탄소나노튜브(CNT, Carbon Nano Tube) 재료를 플레이트로 제작하여 표면에 부착하고 전기공급을 통해 발열시켰다. 발열체를 발열시킴에 따라 콘크리트 라이닝의 내부 위치별 온도변화 분포를 측정하였으며, 외기온도 및 발열온도의 유지시간에 따른 영향을 분석하였다.

Keywords

References

  1. Kim, D. Y., Lee, H. S. and Sim, B. K. (2011), A Study on the design of tunnel lining insulation based on measurement of temperature in tunnel, Korean Tunnelling and Underground Space Association, Vol. 13, No. 4, pp. 319-345 (in Korean).
  2. Kim, J. H., Park, Y. S., Kim, S. H. and Jeon, H. K. (2014), Study on the thermal conduction of concrete using insulation performance improvement materials, The Korean Institute of Building Construction, Vol. 14, No. 1, pp. 280-281 (in Korean).
  3. Kim, N. Y. and Shim, J. W. (2013), Case studies on the tunnel frost due to the low temperature, Korea Gedsynthetice society, 2013 spring Geosynthetics Conference, pp. 107-110 (in Korean).
  4. Jin, H. W. and Hwang, Y. C. (2017a), "A Study on Current Extent of Damage of Road Tunnel Lining in Cold Region (Gangwon-do)", Journal of the Korean Geo-Environmental Society, 18(1) pp. 49-58.
  5. Jin, H. W. and Hwang, Y. C. (2017b), "Heat Transfer Test of Tunnel Lining with Heat Insulation", Journal of the Korean Geo-Environmental Society, 18(7) pp. 5-12. https://doi.org/10.14481/jkges.2017.18.1.5
  6. Jin, H. W., Kim, T. S. and Hwang, Y. C. (2017), "Analysis of Temperature Change of Tunnel Lining with Heating Element", Journal of the Korean Geo-Environmental Society, 18(1) pp. 5-12.
  7. Jun, K. J., Hwang. Y. C and Yune. C. Y. (2017), "Field measurement of temperature inside tunnel in winter in Gangwon, Korea", Cold Regions Science and Technology, 143(2017) pp. 32-42. https://doi.org/10.1016/j.coldregions.2017.08.011
  8. Hwang, Y. C. (2013), "Maintenance Characteristics of Geotechnical Structures in Cold Region for Freeze Damage Analysis", Journal of the Korean Geo-Environmental Society, 14(23) pp. 35-40.
  9. Li, W., Wu, Y., Fu, H. and Zhang, J. (2015), Long-term continuous in-situ monitoriong of tunnel lining surface temperature in cold region and its application, International Journal of Heat and Technology, Vol. 33, No. 2, pp. 39-44.
  10. Zhang, S., Lai, Y., Zhang, X., Pu, Y. and Yu, W. (2004), Study on the damage propagation of surrounding rock from a cold-region tunnel under freeze-thaw cycle condition, Tunnelling and Underground Space Tchnology, Vol. 19, pp. 295-302. https://doi.org/10.1016/j.tust.2003.11.011