• 제목/요약/키워드: Ground effective thermal Conductivity

검색결과 42건 처리시간 0.017초

생물개스 발생시스템을 위한 지하매설콘크리트 다이제스터의 열전달에 관한 연구 (Study on the Heat Transfer Phenomenon around Underground Concrete Digesters for Bigas Production Systems)

  • 김윤기;고재균
    • 한국농공학회지
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    • 제22권1호
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    • pp.53-66
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    • 1980
  • The research work is concerned with the analytical and experimental studies on the heat transfer phenomenon around the underground concrete digester used for biogas production Systems. A mathematical and computational method was developed to estimate heat losses from underground cylindrical concrete digester used for biogas production systems. To test its feasibility and to evaluate thermal parameters of materials related, the method was applied to six physical model digesters. The cylindrical concrete digester was taken as a physical model, to which the model,atical model of heat balance can be applied. The mathematical model was transformed by means of finite element method and used to analyze temperature distribution with respect to several boundary conditions and design parameters. The design parameters of experimental digesters were selected as; three different sizes 40cm by 80cm, 80cm by 160cm and l00cm by 200cm in diameter and height; two different levels of insulation materials-plain concrete and vermiculite mixing in concrete; and two different types of installation-underground and half-exposed. In order to carry out a particular aim of this study, the liquid within the digester was substituted by water, and its temperature was controlled in five levels-35。 C, 30。 C, 25。 C, 20。C and 15。C; and the ambient air temperature and ground temperature were checked out of the system under natural winter climate conditions. The following results were drawn from the study. 1.The analytical method, by which the estimated values of temperature distribution around a cylindrical digester were obtained, was able to be generally accepted from the comparison of the estimated values with the measured. However, the difference between the estimated and measured temperature had a trend to be considerably increased when the ambient temperature was relatively low. This was mainly related variations of input parameters including the thermal conductivity of soil, applied to the numerical analysis. Consequently, the improvement of these input data for the simulated operation of the numerical analysis is expected as an approach to obtain better refined estimation. 2.The difference between estimated and measured heat losses was shown to have the similar trend to that of temperature distribution discussed above. 3.It was found that a map of isothermal lines drawn from the estimated temperature distribution was very useful for a general observation of the direction and rate of heat transfer within the boundary. From this analysis, it was interpreted that most of heat losses is passed through the triangular section bounded within 45 degrees toward the wall at the bottom edge of the digesten Therefore, any effective insulation should be considered within this region. 4.It was verified by experiment that heat loss per unit volume of liquid was reduced as the size of the digester became larger For instance, at the liquid temperature of 35˚ C, the heat loss per unit volume from the 0. 1m$^3$ digester was 1, 050 Kcal/hr m$^3$, while at for 1. 57m$^3$ digester was 150 Kcal/hr m$^3$. 5.In the light of insulation, the vermiculite concrete was consistently shown to be superior to the plain concrete. At the liquid temperature ranging from 15。 C to 350 C, the reduction of heat loss was ranged from 5% to 25% for the half-exposed digester, while from 10% to 28% for the fully underground digester. 6.In the comparison of heat loss between the half-exposed and underground digesters, the heat loss from the former was fr6m 1,6 to 2, 6 times as much as that from the latter. This leads to the evidence that the underground digester takes advantage of heat conservation during winter.

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온실내 근권부의 지중냉각부하 추정 (Estimation of Soil Cooling Load in the Root Zone of Greenhouses)

  • 남상운
    • 생물환경조절학회지
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    • 제11권4호
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    • pp.151-156
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    • 2002
  • 지중냉각이나 양액냉각과 같은 근권부 냉각은 뿌리의 활력 증진, 양수분 흡수력의 향상, 작물체온의 강하 및 고온스트레스의 감소 등에 효과가 있는 것으로 알려져 있으며, 또한 온실 전체를 냉방하는것 보다 경제적이다. 따라서 본 연구에서는 지중냉각시스템을 경제적인 고온극복 방법중의 하나로 생각하고, 기술을 체계화하기 위한 시도로 지중냉각시스템의 열전달 특성을 분석하여 냉각부하를 산정하기 위한 실험을 수행하였다. 지중열류 측정자료로부터 힘수비에 따른 토양의 열전도율을 분석하였으며, 함수비 19~36%의 범위에서 열전도율은 0.83~0.96W.m$^{-}$.$^{\circ}C$$^{-}$로 직선적인 증가를 보였다. 일사량, 지표온도 및 기온의 관측치로부터 일사량에 따른 지표온도 상승을 회귀분석한 결과 거의 직선적인 관계를 보였으며, 지표온도는 실내 수평면 일사량 300~800W.m$^{-2}$ 범위에서 작물이 없는 경우 3.5~7.$0^{\circ}C$,작물이 지표면을 거의 덮고 있는 경우 1.0~2.5$^{\circ}C$ 정도 기온보다 상승하는 것으로 나타났다. 실험자료를 이용하여 온실의 설계기온과 냉각설정 지온, 일사량 및 토양의 함수비에 따른 지중냉각시스템의 냉각부하를 구하였다. 실내일사량 300~600W.m$^{-2}$ , 토양함수비 20~40%의 범위에서 기온과 지온의 차이를 1$0^{\circ}C$로 유지하기 위해서는 46~59W.m$^{-2}$ 의 냉각열량이 필요한 것으로 나타났다. 보다 정확한 설계자료의 구축을 위해서는 다양한 조건별 실험을 추가로 수행해야 할 것으로 생각된다.EX>$\mu$$_{r}$′) and the dielectric loss ($\varepsilon$$_{r}$"/$\varepsilon$$_{r}$′) were increased. It was caused that the absorption characteristics of the absorber were improved. The conduction loss and magnetic loss were expected to be occurred together because two matching frequencies were shown with carbon addition. It was confirmed that the matching frequency of the microwave absorber could be controlled by controlling heat-treatment temperatures and carbon additions.ons.tions.加的)으로 되거나 과가황(過加黃)이 될 우려가 있는 제조공정(製造工程)에서는 흔히들 이 방법(方法)을 무시(無視)하고 있다. 여기서 강조(强調)해 두어야 할 것은 항상 제품(製品)의 외부(外部)를 완전(完全)히 가황(加黃)시킬 필요(必要)는 없다는 것이다. 다공성(多孔性)이나 기포생성(氣泡生成)을 조장(助長)하는 불량가황상태(不良加黃狀態)와 표면(表面)에서의 과가황상태간(過加黃狀態間)의 균형(均衡)을 취(取)해 줘야 하는데 물론(勿論) 이때는 가황시간(加黃時間)을 단축(短縮)시켜야 한다는 경제적(經濟的)인 측면(側面)도 아울러 고려(考慮)해야 한다. 이것은 고무기술자(技術者)가 당면(當面)해야할 과제(課題)