A Study on the Estimation of Monthly Average River Basin Evaporation

월(月) 평균유역증발산량(平均流域蒸發散量) 추정(推定)에 관(關)한 연구(硏究)

  • Kim, Tai Cheol (Dept. of Agricultural Engineering, Coll. of Agriculture, Chungnam Natl. Univ.) ;
  • Ahn, Byoung Gi (Dept. of Agricultural Engineering, Coll. of Agriculture, Chungnam Natl. Univ.)
  • 김태철 (충남대학교 농과대학 농공학과) ;
  • 안병기 (충남대학교 농과대학 농공학과)
  • Published : 1981.12.31

Abstract

The return of water to the atmosphere from water, soil and vegetation surface is one of the most important aspects of hydrological cycle, and the seasonal trend of variation of river basin evaporation is also meaningful in the longterm runoff analysis for the irrigation and water resources planning. This paper has been prepared to show some imformation to estimate the monthly river basin evaporation from pan evaporation, potential evaporation, regional evaporation and temperature through the comparison with river basin evaporation derived from water budget method. The analysis has been carried out with the observation data of Yongdam station in the Geum river basin for five year. The results are summarized as follows and these would be applied to the estimation of river basin evaporation and longterm runoff in ungaged station. 1. The ratio of pan evaporation to river basin evaporation ($E_w/E_{pan}$) shows the most- significant relation at the viewpoint of seasonal trend of variation. River basin evaporation could be estimated from the pan evaporation through either Fig. 9 or Table-7. 2. Local coefficients of cloudness effect and wind function has been determined to apply the Penman's mass and energy transfer equation to the estimation of river basin evaporation. $R_c=R_a(0.13+0.52n/D)$ $E=0.35(e_s-e)(1.8+1.0U)$ 3. It seems that Regional evaporation concept $E_R=(1-a)R_C-E_p$ has kept functional errors due to the inapplicable assumptions. But it is desirable that this kind of function which contains the results of complex physical, chemical and biological processes of river basin evaporation should be developed. 4. Monthly river basin evaporation could be approximately estimated from the monthly average temperature through either the equation of $E_w=1.44{\times}1.08^T$ or Fig. 12 in the stations with poor climatological observation data.

회개, 수자원획(水資源劃) 등(等) 이수(利水)를 목적(目的)으로 하는 장기유출해석(長期流出解析)에 있어 가장 중요(重要)한 인자(因子) 중(中)의 하나인 유역증발산량(流域蒸發散量)을 Water budget방법(方法)에 의(依)하여 산정(算定)하여, Pan, Potential, Regional evaporation과 Temperature와의 관계(關係)를 구명(究明)하여 유출기록(流出記錄)이 없는 무계기(無計器) 지역(地域)의 유역증발산량(流域蒸發散量)과 장기유출량(長期流出最)을 추정(推定)하기 위하여 금강수계(錦江水系) 용담지점(龍潭地點)의 5 개년(個年) 자료(資料)를 분석(分析)한 결과(結果)는 다음과 같다. 1. Pan evaporation과 River basin evaporation과의 비(比)($E_w/E_{pan}$)가 계절별(季節別) 성향(性向)을 가장 질서(秩序)있게 나타났으며, Pan evaporation으로부터 River basin evaporation을 Fig. 9 또는 Table-7로부터 추정(推定)할 수 있다. 2. Penman의 Potential evaporation을 적용하기 위하여 cloudness effect와 Wind function의 지역상수(地域常數)를 결정한 결과, 용담지역(龍潭地域)의 지역상수(地域常數)는 다음과 같다. $R_A=R_C(0.13+0.52{\frac{n}{D}})$ $E_a=0.35(e_s-e)(1.8+1.0U)$ 3. Regional evaporation [$E_R=(1-a)R_C-E_P$]는 유도과정의 가정에 따른 functional error가 큰 것으로 보여지나, 유역(流域)전반의 물리(物理), 화학(化學), 생물학적(生物學的)인 증발(蒸發)기구를 포괄적(包括的)으로 포용(包容)하고 있는 이와같은 이론적(理論的)인 함수개발(函數開發)이 요망된다. 4. 기상자료(氣象資料)가 미비(未備)한 지역(地域)에서는 기온(氣溫)만으로 Fig-11과 같이 개락적(槪略的)인 월(月) 평균(平均) 증발산(蒸發散)을 구(求)할 수 있다.

Keywords