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Simulation of salt and water movement and estimation of water productivity of rice crop irrigated with saline water.

机译:盐水灌溉水稻的盐分和水分运移模拟及水分生产率估算。

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The HYDRUS-ID model was experimentally tested for water balance and salt build up in soil under rice crop irrigated with different salinity water (ECiw) of 0.4, 2, 4, 6, 8 and 10 dS m-1 in micro-lysimeters filled with sandy loam soil. Differences of means between measured (M) and HYDRUS-1D predicted (P) values of bottom flux (Qo) and leachate EC as tested by paired t test were not found significant at P=0.05 and a close agreement between RMSE values showed the applicability of the HYDRUS-1D to simulate percolation and salt concentration in the micro-lysimeters under rice crop. Potential ET values of rice as obtained from CROPWAT matched well with model predicted and measured one at all ECiw treatments. The model predicted root water uptake varied from 66.1 to 652.7 mm and the maximum daily salt concentration in the root zone was 0.46, 2.3, 4.5, 6.7, 8.4 and 10.2 me cm-3 in 0.4, 2, 4, 6, 8 and 10 dS m-1 ECiw treatments, respectively. The grain production per unit evapotranspiration (WPETa) value of 2.56 in ECiw of 0.4 dS m-1 treatment declined to 1.31 with ECiw of 2 dS m-1. The WPETa reduced to one-fifth when percolation was included in the productivity determination. Similarly, the water productivity in respect of total dry matter production (TDM) was also reduced in different treatments. Therefore, the model predicted values of water balance can be effectively utilized to calculate the water productivity of rice crop.Digital Object Identifier http://dx.doi.org/10.1007/s10333-010-0213-7
机译:对HYDRUS-ID模型进行了试验,测试了分别用0.4、2、4、6、8和10 dS m -1 在充满沙质壤土的微渗漏仪中。测试的底通量( Q o )和渗滤液EC的测量值(M)与HYDRUS-1D预测值( P )之间的均值差异配对的 t 测试在 P = 0.05时未发现显着性,并且RMSE值之间的密切一致性表明HYDRUS-1D可用于模拟微滤器的渗滤和盐浓度水稻下的蒸渗仪。从CROPWAT获得的大米潜在ET值与在所有ECiw处理中预测和测得的模型都非常吻合。该模型预测根系吸水量在66.1至652.7 mm之间,并且根系区域中每日最大盐盐浓度分别为0.4、2、0.4、2.3、4.5、6.7、8.4和10.2 me cm -3 。 4、6、8和10 dS m -1 ECiw处理。 ECiw为0.4 dS m -1 处理的单位蒸散量(WP ET a )值为2.56,ECiw为1.31时下降至1.31。 2 dS m -1 。当生产率确定中包含渗滤时,WP ET a 降低至五分之一。同样,在不同处理方式下,总干物质产量(TDM)的水生产率也降低了。因此,模型的水平衡预测值可以有效地用于计算水稻作物的水分生产率。数字对象标识符http://dx.doi.org/10.1007/s10333-010-0213-7

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