为了使灌溉预报及自动控制系统简单、投资成本低且便于推广应用,设计了一套基于土壤基质势的灌溉预报及自动控制系统.通过利用电接点压力表测量负压计中的压力,设定不同作物、不同生育期、不同灌水方式的灌水下限和上限.当土壤基质势达...为了使灌溉预报及自动控制系统简单、投资成本低且便于推广应用,设计了一套基于土壤基质势的灌溉预报及自动控制系统.通过利用电接点压力表测量负压计中的压力,设定不同作物、不同生育期、不同灌水方式的灌水下限和上限.当土壤基质势达到灌水上下限时,通过电接点压力表和自动控制电路,实现灌溉预报和自动控制.灌水过程中,通过单片机、远传水表和液晶显示屏,可以实现灌水时间、灌水量和灌水次数的记录与存储.经室内试验验证表明基于土壤基质势的灌溉预报及自动控制系统合理可行,对于粉砂壤土可以将灌水上限的土壤基质势设置为-8 k Pa左右.展开更多
An experiment was conducted in non-weighing lysimeters to study the effect of irrigation with saline water on water movement and salt accumulation and maize yield. The experiment was carried out in northwest China,bot...An experiment was conducted in non-weighing lysimeters to study the effect of irrigation with saline water on water movement and salt accumulation and maize yield. The experiment was carried out in northwest China,both sufficient and insufficient irrigation were applied in the first year,and only sufficient treatments in the second year. Irrigation with solute concentration of 9 g·L-1 and 6 g·L-1 led to salt accumulation about 6-8 dS·m-1 in certain depths,even downwards to 160 cm received about 4 dS·m-1 for 9 g·L-1 and 2 dS·m-1 for 6 g·L-1,which was two times more than initial. Salt-affected water extracted from soil behaved as low evapotranspiration under sufficient irrigation,and more water was left in the soil. Yield of spring maize was not affected when saturated soil paste electrical conductivity did not exceeded 1.2 dS·m-1.展开更多
文摘为了使灌溉预报及自动控制系统简单、投资成本低且便于推广应用,设计了一套基于土壤基质势的灌溉预报及自动控制系统.通过利用电接点压力表测量负压计中的压力,设定不同作物、不同生育期、不同灌水方式的灌水下限和上限.当土壤基质势达到灌水上下限时,通过电接点压力表和自动控制电路,实现灌溉预报和自动控制.灌水过程中,通过单片机、远传水表和液晶显示屏,可以实现灌水时间、灌水量和灌水次数的记录与存储.经室内试验验证表明基于土壤基质势的灌溉预报及自动控制系统合理可行,对于粉砂壤土可以将灌水上限的土壤基质势设置为-8 k Pa左右.
基金Supported by National Key Technology Research and Development Program of China (2006BAD11B08)the Program for Changjiang Scholars and Innovative Research Team in University (IRT0657)
文摘An experiment was conducted in non-weighing lysimeters to study the effect of irrigation with saline water on water movement and salt accumulation and maize yield. The experiment was carried out in northwest China,both sufficient and insufficient irrigation were applied in the first year,and only sufficient treatments in the second year. Irrigation with solute concentration of 9 g·L-1 and 6 g·L-1 led to salt accumulation about 6-8 dS·m-1 in certain depths,even downwards to 160 cm received about 4 dS·m-1 for 9 g·L-1 and 2 dS·m-1 for 6 g·L-1,which was two times more than initial. Salt-affected water extracted from soil behaved as low evapotranspiration under sufficient irrigation,and more water was left in the soil. Yield of spring maize was not affected when saturated soil paste electrical conductivity did not exceeded 1.2 dS·m-1.