Acknowledgement
Supported by : 과학기술처
Soil temperature is one of the important environmental factors which control all the physical, chemical and biological processes in soil including germination and root growth of plants and other organisms living in the soil ecosystem. Soil water and nutrient availability and mobility are temperature dependent. Soil temperature change is depended primarily upon energy exchange in soil surface, meteorological variance and physical properties of the soils which are closely related to heat transfer mechanism. In this study physical properties including bulk density, soil texture and organic matter content were measured and thermal diffusivity on the soils was calculated. Soil samples from the 66 meteorological stations under the Korea Meteorology were collected and the physical parameters were measured. To obtain relationship between thermal diffusivity and soil water content a heat probe thermal diffusivity measurement apparatus was designed and used in this experiment. According to the survey on soil physicsal properties on the 66 meteorological stations, the 52% of the surface soil texture were sandy loam and laomy sand or sand, 38% were loam and silty loam, and 10% were clay loam and silty clay loam. The bulk density which was closely related with thermal properties showed average of
우리나라에서 토양(土壤) 온도(溫度)를 정규적으로 관측(觀測)하고 있는 기상청(氣象廳) 산하(傘下) 기상대(氣象臺) 및 관측소(觀測所) 관측(觀測) 노장(露長)의 토양시료(土壤試料)를 채취(採取)하여 토양(土壤)의 열전도(熱傳度) 특성(特性)과 관련이 깊은 토양(土壤)의 용적밀도(容積密度), 토성(土性), 유기물(有機物) 함량(含量) 등 물리적(物理的) 특질(特質)을 분석(分析)하였으며, 토양(土壤)의 열확산(熱擴散) 계수(係數)를 산출(算出)하였다. 기상청(氣象廳) 산하(傘下) 기상대(氣象臺) 및 관측소(觀測所) 토양(土壤)의 물리적(物理的) 특성(特性)을 조사한 결과(結果) 0-10cm의 표토(表土)는 52%가 사양토(砂壤土)였으며, 양토(壤土)와 미사질양토(微砂質壤土)가 38%, 그리고 식양토(埴壤土) 및 미사질식토(微砂質埴土)가 10%이었다. 이들 토양(土壤)의 열특성(熱特性)과 관계가 깊은 용적밀도(容積密度)는 사토(砂土)가
Supported by : 과학기술처