农业工程学报
農業工程學報
농업공정학보
2010年
1期
6-10
,共5页
土壤水%水资源%土壤%土壤蒸发%田间蒸散%谷子
土壤水%水資源%土壤%土壤蒸髮%田間蒸散%穀子
토양수%수자원%토양%토양증발%전간증산%곡자
soil moisture%water resources%soils%soil evaporation%evapotranspiration%millet
为了提高黄土高原雨养区谷子的降水利用效率,该文利用中型称重式蒸渗仪和微型蒸渗仪并结合谷子整个生育期内生物指标的动态变化过程,对神木六道沟流域谷子棵间蒸发与田间蒸散规律进行了研究.结果表明,Logistic 模型可以很好地模拟谷子株高和盖度的变化,模型计算值与实测值的相关系数均达到0.99.神木六道沟流域的降水总量和谷子的耗水量基本持平,在谷子抽穗期到灌浆期出现了阶段性的缺水.在谷子整个生育期内谷子棵间蒸发占总耗水量的44%.叶面积指数、0~10 cm土层土壤含水率与棵间蒸发与田间蒸散比值间均呈指数函数关系,其决定系数均在0.8以上,且呈现出极显著的相关性.研究为当地合理利用有限水资源和提高水分利用效率提供理论支持.
為瞭提高黃土高原雨養區穀子的降水利用效率,該文利用中型稱重式蒸滲儀和微型蒸滲儀併結閤穀子整箇生育期內生物指標的動態變化過程,對神木六道溝流域穀子棵間蒸髮與田間蒸散規律進行瞭研究.結果錶明,Logistic 模型可以很好地模擬穀子株高和蓋度的變化,模型計算值與實測值的相關繫數均達到0.99.神木六道溝流域的降水總量和穀子的耗水量基本持平,在穀子抽穗期到灌漿期齣現瞭階段性的缺水.在穀子整箇生育期內穀子棵間蒸髮佔總耗水量的44%.葉麵積指數、0~10 cm土層土壤含水率與棵間蒸髮與田間蒸散比值間均呈指數函數關繫,其決定繫數均在0.8以上,且呈現齣極顯著的相關性.研究為噹地閤理利用有限水資源和提高水分利用效率提供理論支持.
위료제고황토고원우양구곡자적강수이용효솔,해문이용중형칭중식증삼의화미형증삼의병결합곡자정개생육기내생물지표적동태변화과정,대신목륙도구류역곡자과간증발여전간증산규률진행료연구.결과표명,Logistic 모형가이흔호지모의곡자주고화개도적변화,모형계산치여실측치적상관계수균체도0.99.신목륙도구류역적강수총량화곡자적모수량기본지평,재곡자추수기도관장기출현료계단성적결수.재곡자정개생육기내곡자과간증발점총모수량적44%.협면적지수、0~10 cm토층토양함수솔여과간증발여전간증산비치간균정지수함수관계,기결정계수균재0.8이상,차정현출겁현저적상관성.연구위당지합리이용유한수자원화제고수분이용효솔제공이론지지.
For improving precipitation use efficiency of millet in rain-fed region of Loess Plateau, the middle weighing lysimeter, micro-lysimeter and biological indicators were combined in this experiment to determine the soil evaporation and millet evapotranspiration during the whole growing period of millet in Liudaogou watershed of Shenmu County. The results showed that the Logistic model could simulate the growing processes of millet height and coverage, the correlation coefficients of simulated and measured values reached 0.99. Total precipitation was almost equal to the water consumption of millet, but from heading to filling stage millet suffered water stress. In the whole growing period of millet, about 44% of the total field evapotranspiration was consumed by the soil evaporation. There were significant exponential function relations between leaf area index, soil moisture at in 0-10 cm depth and the ratio of evaporation and evapotranspiration, the correlation coefficients were higher than 0.8. The study can provide theoretical support for rational use of limited water resources and improvement of water use efficiency in rain-fed region of Loess Plateau in Northern Shaanxi.