• 제목/요약/키워드: sand-water mixture

검색결과 153건 처리시간 0.024초

압축 벤토나이트 및 벤토나이트-모래 혼합물의 열전도도 (Thermal Conductivity of Compacted Bentonite and Bentonite-Sand Mixture)

  • 조원진;이재완;권상기
    • 방사성폐기물학회지
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    • 제6권2호
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    • pp.101-109
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    • 2008
  • 고준위폐기물 처분장의 완충재 및 뒷채움재 후보물질로 고려되고 있는 경주벤토나이트를 대상으로 압축 벤토나이트 및 벤토나이트-모래 혼합물의 열전도도가 측정되었다. 압축벤토나이트는 건조밀도가 $1.2\;Mg/m^3$에서 $1.8\;Mg/m^3$범위에 대해, 압축 벤토나이트-모래 혼합물은 건조밀도가 $1.6\;Mg/m^3$에서 $1.8\;Mg/m^3$ 사이이고, 모래의 함량이 중량비로 10 wt%에서 30 wt%인 범위의 혼합물에 대해 측정하였다. 측정시료의 수분 함량은 중량비로 10 wt%에서 20 wt% 까지 변화시켰다. 압축 벤토나이트 및 벤토나이트-모래 혼합물의 열전도도는 수분함량이 일정할 때, 건조밀도가 증가할수록, 모래 함량이 많을수록 증가하였으며, 건조밀도가 일정한 경우에는 수분 함량과 모래 함량이 증가할수록 증가하였다. 각 건조밀도에서의 수분함량의 증가에 따른 열전도도 변화를 나타낼 수 있는 실험적 관계식들이 제시되었다. 이 관계식들은 10% 오차 범위에서 압축벤토나이트 및 벤토나이트-모래 혼합물의 열전도도 값을 예측할 수 있다.

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Behaviour of unsaturated tuff- calcareous sand mixture on drying-wetting and triaxial paths

  • Goual, Idriss;Goual, Mohamed Sayeh;Taibi, Said;Abou-Bekr, Nabil
    • Geomechanics and Engineering
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    • 제3권4호
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    • pp.267-284
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    • 2011
  • The aim of the paper is to study the hydro-mechanical behaviour of a tuff and calcareous sand mixture. A first experimental phase was carried out in order to find the optimal mixture. This showed that the material composed of 80% tuff and 20% calcareous sand provides the maximum mechanical strength. The second experimental phase concerns the study of the drying- wetting behaviour of the optimal mixture. Triaxial shear tests in saturated and unsaturated states at constant water content were carried out on samples initially compacted at the MPO. Experimental results let to deduce the parameters necessary for the prediction of the hydro-mechanical behaviour of pavement formulated from tuff and calcareous sand mixtures, related to moisture. This optimal mixture satisfies the regulation rules and hence constitutes a good local eco-material, abundantly available, for the conception of pavements.

지반 유형에 따른 켄터키 블루그래스의 생육특성 (Growth Characteristics of Kentucky Bluegrass on Different Rootzone Foundations)

  • 이혜원;정대영;심상렬
    • 한국조경학회지
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    • 제31권6호
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    • pp.95-103
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    • 2004
  • A turfgrass rootzone foundation is one of the important iufluences on the growth of cool-season turfgrass such as Kentucky bluegrass, which is usually grown on korean golf courses and athletic fields in Korea. This study was carried out to evaluate the growth of Kentucky bluegrass on 4 types of turfgrass root-zone foundations: a 2cm thickness of Sand 90%+Peat humus 8%+Zeolite 2% mixture on a subsoil base (C), a 20cm thickness of Sand 90%+Peat humus 8%+Zeolite 2% mixture (S), a 20cm thickness of Sand 45%+fine sand(a sort of Bomyungsa) 45%+Peat humus 8%+Zeolite 2% mixture (S+F), and a 20cm thickness of Sand 45%+fine sand(a sort of Bomyungsa) 45%+Peat humus 8%+Zeolite 2% mixture on a 20cm thick drainage layer (S+F(G)). Visual ratings of Kentucky bluegrass on the C foundation were low throughout the experiment when compared to S, S+F, and S+F(G) foundations, which contained high contents of sand with a high water infiltration rate. However, poor growth of Kentucky bluegrass in the summer of 1991 on the S foundation was likely to be caused by a too high water infiltration rate (185.8cm/hr). The growth of Kentucky bluegrass on the S+F(G) was good while the growth was a little weak at the developing stage on the S +F foundation. If the cost had to be considered when constructing golf courses and athletic fields, The S+F foundation without the drainage layer would be the best choice in terms of low cost and good quality of Kentucky bluegrass compared to the S+F(G). In this result, the infiltration rate was regarded as the most influential factor to the growth of Kentucky bluegrass on rootzone foundations.

그라우팅 재료로 사용되는 모래-물 혼합물의 열전도도 예측 (Predicting the Effective Thermal Conductivity of Sand-Water Mixtures Used for Grouting Materials)

  • 손병후;임효재
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2008년도 하계학술발표대회 논문집
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    • pp.761-768
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    • 2008
  • This paper presents the results of a laboratory study on the thermal conductivity of sand(silica, quartzite, limestone, sandstone, granite and masonry sand)-water mixtures used in ground heat exchanger backfilling materials. Nearly 260 tests were performed in a thermal conductivity measuring system to characterize the relationships between the thermal conductivity of mixtures and the water content. The experimental results show that the thermal conductivity of mixtures increases with increasing dry density and with increasing water content. The most widely used empirical prediction models for thermal conductivity of soils were found inappropriate to estimate the thermal conductivity of unsaturated sand-water mixtures. An improved model using a exponential relationship to compute the thermal conductivity of dry sands and empirical relationship to assess the normalized thermal conductivity of unsaturated sand-water mixtures is presented.

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시간경과에 따른 점토 지반의 개량 특성 (Improvable Characteristics of Clay Layers with Time Lapse)

  • 이준대
    • 한국안전학회지
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    • 제16권1호
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    • pp.53-58
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    • 2001
  • Constructions on the soft clay layer of low strength and high compression bring out many problems. Recent studies show that strength of the soft clay layer could be substantially improved by mixing quicklime. For the purpose, a series of uniaxial compression tests were performed, using quicklime, in order to analyze strength characteristics. The major test results are summarized following : When water content is 90%, the strength is observed to precipitously increase between 3~14 days, then, the extent slowly increase in relative terms. When water content is 130%, the strength is observed to precipitously increase up to 28 days. When the strength of water content 90% is compared to that of water content 130%, the initial strength of the former is higher than that of the latter. The analyses show that the improvement of soft clay layers can be realized by the mixture of both quicklime and sand, and by the mixture of quicklime only.

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Compressive strength characteristics of cement treated sand prepared by static compaction method

  • Yilmaz, Yuksel;Cetin, Bora;Kahnemouei, Vahid Barzegari
    • Geomechanics and Engineering
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    • 제12권6호
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    • pp.935-948
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    • 2017
  • An experimental program was conducted to investigate the effects of the static compaction pressure, cement content, water/cement ratio, and curing time on unconfined compressive strength (UCS) of the cement treated sand. UCS were conducted on samples prepared with 4 different cement/sand ratios and were compacted under the lowest and highest static pressures (8 MPa and 40 MPa). Each sample was cured for 7 and 28 days to observe the impact of curing time on UCS of cement treated samples. Results of the study showed the unconfined compressive strength of sand increased as the cement content (5% to 10%) of the cement-sand mixture and compaction pressure (8 MPa to 40 MPa) increased. UCS of sand soil increased 30% to 800% when cement content was increased from 2.5% to 10%. Impact of compaction pressure on UCS decreased with a reduction in cement contents. On the other hand, it was observed that as the water content the cement-sand mixture increased, the unconfined compressive strength showed tendency to decrease regardless of compaction pressure and cement content. When the curing time was extended from 7 days to 28 days, the unconfined compressive strengths of almost all the samples increased approximately by 2 or 3 times.

A Compilation and Evaluation of Thermal and Mechanical Properties of Bentonite-based Buffer Materials for a High- level Waste Repository

  • Cho, Won-Jin;Lee, Jae-Owan;Kang, Chul-Hyung
    • Nuclear Engineering and Technology
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    • 제34권1호
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    • pp.90-103
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    • 2002
  • The thermal and mechanical properties of compacted bentonite and bentonite-sand mixture were collected from the literatures and compiled. The thermal conductivity of bentonite is found to increase almost linearly with increasing dry density and water content of the bentonite. The specific heat can also be expressed as a function of water ontent, and the coefficient of thermal expansion is almost independent on the dry density. The logarithm of unconfined compressive strength and Young’s modulus of elasticity increase linearly with increasing dry density, and in the case of constant dry density, it can be fitted to a second order polynomial of water content. Also the unconfined compressive strength and Young’s modulus of elasticity of the bentonite-sand mixture decreases with increasing sand content. The Poisson’s ratio remains constant at the dry density higher than 1.6 Mg/m$_3$, and the shear strength increases with increasing dry density.

고준위폐기물처분장 완충재 및 뒷채움재의 열전도도 예측을 위한 관계식 (A Correlation to Predict the Thermal Conductivity of Buffer and Backfill Material for a High-Level Waste Repository)

  • 조원진;이재완;권상기
    • 터널과지하공간
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    • 제20권4호
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    • pp.284-291
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    • 2010
  • 현재 제안되고 있는 고준위폐기물 심지층처분장의 설계에 따르면, 완충재와 뒷채움재의 재료로 벤토나이트 및 벤토나이트-모래 혼합물이 고려되고 있다. 후보물질인 경주벤토나이트를 대상으로, 압축 벤토나이트와 벤토나이트-모래 혼합물의 열전도도를 측정하였다. 경주벤토나이트와 벤토나이트-모래 혼합물의 열전도도를 건 조밀도, 함수비 및 모래 함량의 함수로서 예측할 수 있는 관계식을 제안하였다. 제안된 관계식은 실험 조건 하에서 열전도도를 10% 이내의 오차로 예측할 수 있다.

지중열교환기 뒤채움재로 사용되는 모래-물 혼합물의 열전도도 예측 (Predicting the Effective Thermal Conductivity of Some Sand-Water Mixtures Used for Backfilling Materials of Ground Heat Exchanger)

  • 손병후
    • 설비공학논문집
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    • 제20권9호
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    • pp.614-623
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    • 2008
  • This paper presents the results of a laboratory study on the thermal conductivity of and(silica, quartzite, limestone, sandstone, granite and two masonry sands)-water mixtures used for ground heat exchanger backfilling materials. Nearly 260 tests were performed in a thermal conductivity measuring system to characterize the relationships between the thermal conductivity of mixtures and the water content. The experimental results show hat the thermal conductivity of mixtures increases with increasing dry density and with increasing water content. The most widely used empirical prediction models for thermal conductivity of soils were found inappropriate to estimate the thermal conductivity of unsaturated sand-water mixtures. An improved model using an exponential relationship to compute the thermal conductivity of dry sands and empirical relationship to assess the normalized thermal conductivity of unsaturated sand-water mixtures is presented.

지중열교환기 수직 보어홀 및 수평 트렌치 뒤채움재로서 모래-물 혼합물의 열전도도 측정 (Thermal Conductivity Measurement of Sand-Water Mixtures Used for Backfilling Materials of Vertical Boreholes or Horizontal Trenches)

  • 손병후
    • 설비공학논문집
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    • 제20권5호
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    • pp.342-350
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    • 2008
  • This paper presents the results of a laboratory study on the thermal conductivity of sand (silica, quartzite, limestone and masonry sand)-water mixtures used in ground heat exchanger backfilling materials. Nearly 150 tests were performed in a thermal conductivity measuring system (TPSYS02) to characterize the relationships between the thermal conductivity of mixtures and the water content. The results show that the thermal conductivity of mixtures increases with increasing dry density and with increasing water content. The results also show that for constant water contents and a dry density value, the thermal conductivity of mixtures increases with increasing thermal conductivity of solid particles. The measurement results were also compared with the most widely used empirical prediction models for the thermal conductivity of soils.