DOI QR코드

DOI QR Code

Assessment on Applicability of Recycled Aggregates for Backfill Materials of Underground Transmission Lines Based on Field Demonstration Tests

지중 송전관로 되메움용 순환골재의 현장실증시험을 통한 적용성 평가

  • Received : 2015.03.13
  • Accepted : 2015.03.26
  • Published : 2015.03.30

Abstract

Underground transmission lines always generate heat and transmit heat through surrounding backfill materials. Therefore, in the design of power lines it becomes a very crucial factor to transfer heat effectively into the neighbouring soils. In this study, in order to enhance field applicability of recycled aggregates for backfill material of transmission lines, quality criteria and construction criteria were proposed, and thermal stability of power lines through field demonstration tests were analyzed. In the field tests, two types of recycled aggregates and sand which is currently used for backfilling were compared in terms of thermal behaviour. Test results showed that recycled aggregates represented similar trends with sand in temperature and moisture content corresponding to time lapse and distance from the heat source. Consequently, recycled aggregates can be utilized for backfill materials of underground transmission lines as a substitute material of sands.

지중 송전선은 전기저항에 의한 발열현상이 늘 있으며, 그 주변의 되메움재를 통하여 열을 방출하게 된다. 따라서, 송전관로의 설계에는 발생하는 열을 주변 지반이 효과적으로 외부에 전달하여, 열적 안정성을 확보하는 것이 매우 중요한 설계 요소가 된다. 본 연구에서는 지중 송전관로 되메움재용 순환골재의 현장 적용성을 향상시키기 위하여, 순환골재의 품질기준 및 시공기준을 제시하고, 현장 실증시험을 통하여 송전관로의 열안정성을 분석하였다. 현장 실증시험에서는 순환골재 두 종류와 현재 되메움재로 사용하고 있는 모래의 열적 거동을 비교하였다. 시험 결과, 순환골재는 시간경과와 관로에서의 이격거리에 따라 온도와 함수비 변화가 모래와 유사하게 나타났다. 따라서 순환골재는 지중 송전관로 되메움재로서 일반 모래를 대체하여 적용 가능할 것으로 판단된다.

Keywords

References

  1. Kim, D.H., Lee, D.S., Jong, W.S., Jong, B.Y. (2001). Thermal Resistance of Soils for Underground Power Cables, Proceeding of the Korea Society of CIvil Engineers, 1-4.
  2. Kim, Y.S., Cho, D.S., Park, Y.J. (2011). Optimization of the Backfill Materials for Underground Power Cables considering Thermal Resistivity Characteristics (I), Journal of the Korea Geosynthetics Society, 10(4), 113-121 [in Korean].
  3. Kim, Y.S., Cho, D.S., Park, Y.J. (2011). Optimization of the Backfill Materials for Underground Power Cables considering Thermal Resistivity Characteristics (II), Journal of the Korea Geosynthetics Society, 10(4), 123-130 [in Korean].
  4. Ministry of Land, Transport and Maritime Affairs (2009). Recycled Aggregate Quality Standard.
  5. Oh, G,D., Kim, D.H., Kim, K.Y. (2008). Characteristics of Thermal Resistivity of Recycled Aggregate on water content, Proceeding of the Korea Society of CIvil Engineers, 3883-3889.
  6. The Establishment of Quality Standard for Recycled Aggregates Applied for Backfilling of Underground Power Lines, KEPCO (2011).
  7. Underground transmission design standard DS-6210, KEPCO.
  8. Wi, J.H., Hong, S.Y., Lee, D.S., Han, E.S., Choi, H.S. (2010). Laboratory Experiment to Characterize Thermal Properties of Recycled-Aggregate Backfill, Proceeding of the Korean geotechnical society, 1231-1238.
  9. Wi, J.H., Hong, S.Y., Lee, D.S., Park, S.W., Choi, H.S (2011). Evaluation of Compaction and Thermal Characteristics of Recycled Aggregates for Backfilling Power Transmission Pipeline. Journal of the Korean geotechnical society, 27(7), 17-33 [in Korean]. https://doi.org/10.7843/kgs.2011.27.7.017