Based on the experimental data,this study investigated the effect of sand content of muddy water on water and nitrogen transport characteristics of the single-line interference infiltration under film hole irrigation ...Based on the experimental data,this study investigated the effect of sand content of muddy water on water and nitrogen transport characteristics of the single-line interference infiltration under film hole irrigation with muddy water and fertilizer.The relationship between the single-line interference infiltration parameters,the sand content,the wetting front movement distances,and the sand content were all established.The model of the cumulative infiltration volume of per unit film pore area,the vertical and horizontal wetting front movement distance of the free surface,and the wetting front movement distance of the interference center with sand content and infiltration time were proposed.Reveal the law of the change of soil water content and the distribution of NO_(3)^(-)-N content based on different muddy water sand content.The results indicate that at the same infiltration time,as the muddy water sand content increases,the cumulative infiltration volume per unit pore area decreases.The infiltration index of the free infiltration and the single-line interference vary little when the sand content increases,mainly are around 0.64 and 0.58.The relationship between infiltration parameters a,b and the sand content is linear function.At the same location,the more the sand content,the smaller the wetting front movement distance in free surface and the single-line interference surface,the less the NO_(3)^(-)-N content.展开更多
在山东莱州海涂采用正交试验设计进行田间试验,研究了不同浓度海水灌溉下菊芋盐肥耦合效应。结果表明:(1)综合肥水情况下,在25%海水(W2)灌溉下菊芋块茎和地上部分生物产量与淡水处理(W1)没有显著差异,在50%(W3)和75%(W4)海水灌溉下产量...在山东莱州海涂采用正交试验设计进行田间试验,研究了不同浓度海水灌溉下菊芋盐肥耦合效应。结果表明:(1)综合肥水情况下,在25%海水(W2)灌溉下菊芋块茎和地上部分生物产量与淡水处理(W1)没有显著差异,在50%(W3)和75%(W4)海水灌溉下产量均显著下降,与淡水比较,下降幅度达32%、76%和25%、60%;N3(150 kg hm-2)水平与N1(0 kg hm-2)水平相比,菊芋块茎产量可以显著提高77%,同样地上部分生物产量也提高了37%,而N4(225 kg hm-2)处理比在N3情况下低,但仍高于N2(75 kg hm-2)处理;P3(60 kg hm-2)水平与P1(0 kg hm-2)水平相比,菊芋块茎产量可以显著提高97%,同样地上部分生物产量也提高了39%,在P4(90 kg hm-2)处理下,菊芋块茎和地上部分生物产量分别比在P3处理下低19%和11%。(2)各浓度海水浇灌下,随着施氮、磷量的增加菊芋主茎普遍增长和增粗。(3)经过对海水与N肥及P肥的交互作用分析,可以看出W2N3和W2P3是优化组合;处理因子分析表明,影响菊芋产量的主要因素是不同浓度海水灌溉,N肥和P肥次之,其优化组合为W2N3P3。展开更多
基金National Key R&D Program of China(2016YFC0400204)National Natural Science Foundation of China(51479161,51279157,51779205)。
文摘Based on the experimental data,this study investigated the effect of sand content of muddy water on water and nitrogen transport characteristics of the single-line interference infiltration under film hole irrigation with muddy water and fertilizer.The relationship between the single-line interference infiltration parameters,the sand content,the wetting front movement distances,and the sand content were all established.The model of the cumulative infiltration volume of per unit film pore area,the vertical and horizontal wetting front movement distance of the free surface,and the wetting front movement distance of the interference center with sand content and infiltration time were proposed.Reveal the law of the change of soil water content and the distribution of NO_(3)^(-)-N content based on different muddy water sand content.The results indicate that at the same infiltration time,as the muddy water sand content increases,the cumulative infiltration volume per unit pore area decreases.The infiltration index of the free infiltration and the single-line interference vary little when the sand content increases,mainly are around 0.64 and 0.58.The relationship between infiltration parameters a,b and the sand content is linear function.At the same location,the more the sand content,the smaller the wetting front movement distance in free surface and the single-line interference surface,the less the NO_(3)^(-)-N content.
文摘在山东莱州海涂采用正交试验设计进行田间试验,研究了不同浓度海水灌溉下菊芋盐肥耦合效应。结果表明:(1)综合肥水情况下,在25%海水(W2)灌溉下菊芋块茎和地上部分生物产量与淡水处理(W1)没有显著差异,在50%(W3)和75%(W4)海水灌溉下产量均显著下降,与淡水比较,下降幅度达32%、76%和25%、60%;N3(150 kg hm-2)水平与N1(0 kg hm-2)水平相比,菊芋块茎产量可以显著提高77%,同样地上部分生物产量也提高了37%,而N4(225 kg hm-2)处理比在N3情况下低,但仍高于N2(75 kg hm-2)处理;P3(60 kg hm-2)水平与P1(0 kg hm-2)水平相比,菊芋块茎产量可以显著提高97%,同样地上部分生物产量也提高了39%,在P4(90 kg hm-2)处理下,菊芋块茎和地上部分生物产量分别比在P3处理下低19%和11%。(2)各浓度海水浇灌下,随着施氮、磷量的增加菊芋主茎普遍增长和增粗。(3)经过对海水与N肥及P肥的交互作用分析,可以看出W2N3和W2P3是优化组合;处理因子分析表明,影响菊芋产量的主要因素是不同浓度海水灌溉,N肥和P肥次之,其优化组合为W2N3P3。