Changes in Temperature and Light Distribution in the Rice Crop Canopy at the Different Growth Stages

수도군락내(水稻群落內) 온도(溫度) 및 광분포(光分布)의 시기별(時期別) 변화(變化)

  • Published : 1984.06.25

Abstract

To find out the differences in micro-meteorological changes in the rice plant canopy at the different growing stages, Seokwang-byo, a high yielding variety, was cultivated with three planting densities of 50, 80 and 110 hills per $3.3m^2$ in 1982, and Seokwangbyo and Chucheong-byo, a local variety, were planted with a density of 80 hills per $3.3m^2$. Air temperature in plant canopies, water and soil temperatures were continuously monitored throughout the growing period. The relationship between solar radiation interception and leaf area indices at different height in the canopy also was studied. The results were as follows: 1. Air temperature in the densely planted canopy was 1 to $1.5^{\circ}C$ higher than that in the sparsely planted one at the early growing stage, but was inverted after 60 days of transplanting. The vertical distribution of temperature in the canopies showed that air temperature at 10 cm height from the ground was higher than that at 30 cm height. The temperature inversion occurred showing lower temperature at the 10 cm height than at the 30 cm height. 2. The highest temperature of a day in the canopy occurred at 14:00 to 15:00 Korean Standard Time same as that of air temperature, but approached to the solar noon time as the plants grew thick. 3. The air temperature in the canopy became higher than water temperature when the leaf area indices were 4.6 for Chucheongbyo and 5.2 for Seokwangbyo, and the light penetration ratios were 40 percents. 4. Light extinction coefficients of the 50 to 70 cm layer of the canopies were 0.3 to 0.5 but decreased at the lower layers. 5. Albedo of the canopies was 0.4 in the morning and evening while that was about 0.25 at noon. The difference in albedo between Seokwangbyo and Chucheongbyo could be recognized with the difference in leaf structure.

수도(水稻)의 생육기간중(生育期間中) 군락내(群落內) 미세기상특성(微細氣象特性)의 변화(變化)를 보기 위하여 1982년도(年度)에는 서광벼를 $3.3m^2$당(當) 50, 80, 110주(株)로 재식밀도(栽植密度)를 달리하였고, 1983년도(年度)에는 서광벼와 추청벼를 $3.3m^2$당(當) 80주(株)로 재배(栽培)하였다. 본(本) 시험(試驗)에서는 군락내(群落內)의 기온(氣溫), 수온(水溫) 및 지온(地溫)의 수직분포(垂直分布)와 일사량(日射量) 및 엽면적지수(葉面積指數)와의 관계(關係)를 중심(中心)으로 검토분석(檢討分析)하였으며 그 결과(結果)를 요약(要約)하면 다음과 같다. 1. 생육초기(生育初期)의 수도(水稻)의 군락내기온(群落內氣溫)은 이앙후(移秧後) 30일(日)에는 밀식구(密植區)(110주(株)/$3.3cm^2$)가 소식구(疎植區)(50주(株)/$3.3m^2$)보다 $1{\sim}1.5^{\circ}C$정도 높았고, 이앙후(移秧後) 60일(日)에는 역전되는 경향을 보였으며 이앙후(移秧後) 90일(日)에는 밀식구군락(密植區群落) 기온(氣溫)이 소식구(疎植區)보다 $3{\sim}4^{\circ}C$ 높았다. 한편 생육초기(生育初期)에는 수면(水面)에 가까운 10cm층위(層位)의 기온(氣溫)이 30cm층위(層位)보다 높았으나 이앙후(移秧後) 60일이후(日以後)는 10cm층위(層位)가 30cm층위(層位)보다 낮아졌다. 2. 군락내(群落內) 최고온도(最高溫度) 출현시각(出現時刻)은 생육초기(生育初期)에는 대기기온(大氣氣溫)과 비슷한 시각(時刻)인 연후(年後) 2~3시경(時)이었으나 군락(群落)이 번무(繁茂)함에 따라 일사강도(日射强度)가 가장 높은 정오(正午)에 접근(接近)하였다. 3. 군락내(群落內) 수온(水溫)이 군락내기온(群落內氣溫)보나 높은 시기(時期)는 집면적지수(集面積指數)가 4.6(추청벼)내지 5.2(서광벼)이하(以下)이고, 투광율(透光率)이 40% 이상(以上)인 때이었다. 4. 군락내광감소계수(群落內光減小係數)는 군락상부(群落上部)가 0.3~0.5, 하부(部)가 0.1내외(內外)이었다. 5. 시각별(時刻別) Albedo는 아침과 저녁에는 0.4 이상(以上)이었으나, 정오(正午)에는 0.25내외(內外)이었으며 태양고도(太陽高度)가 낮을 때는 잎이 만곡형(彎曲型)인 추청벼구(區)에서, 높을 때는 직립형(直立型)인 서광벼구(區)에서 낮았다.

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