Page 227 - 《水资源与水工程学报》2022年第3期
P. 227
! 3# ¬ Â, >: ÃÄÆ±[7ÇÅÆMÇÈrÿv>./ 2 3
2
ªQ [27] (^µèã; f_ee5&eô7~ FN{zk1Uee5òô7~FN, £
FNe5Þf_Ù, Wegô7t, *÷B ÓÔezâÚ½ô7~FN{zÐ
"Ñxó±þ1Uee5, ¨z#þ, ä #>。f_ee5&eô7~FN*{àk
WÐòó²þ。 1Uee5òô7~FN, ®ýÉWô{
~Fwó, f_ee5&eô7~FN PÞ@, f_ee5&eô7~FNùÁ*{
{z*{Á²·。f_ee5o÷fh s 18.94%, Uee5òô7~FNùÁ*
ø, e5¯^WeeYcd,, eË<ó±k, {s 15.15%。
WeeYRÊdu*/s, Jz{®÷6¬^} ( 4) f_ee5&eô7~FNvBÜcd
*ÁÂ, ìíÍ·A{z*{, * Gharcheh z{pzè_k1Uee5òô7~F
[28] 'µèã。 N, ÄvÅÜz{pw²³。®Wô
f_ee5vÅÜz{pw*³。ìs {s 0.3g/L |, v1 0~40 μ m 40~53 μ m
e5o, ÷¬l±ÜF#þ, ÓWege Üz{, f_ee5&eô7~FN{z
5kÜÝ1-p®ô7÷I, V¡WÝ ½»Uee5òô7~FN{zk4.59%
èI, þÜÝ1ÓWegô7¯I, ££1ô7 10.05%。
¯I÷¬lþ, ÅýÌZ;~, ìí-p@
¡。ÓÔ~FN89Þ, Weý)gô7|, oLM:
þç-6öpkÜÝ1*÷I÷«É [1]GENGYuhui,CAOGuojun,WANGLichun.Candripirri
p, d5ÃG1Òü~FNPc(~Fw。 gationundermulchbereplacedwithshallowburieddripir
Y÷,Xing [29] UeË6" ), vWe rigationinspringmaizeproductionsystemsinsemiaridare
asofnorthernChina ?[J].JournaloftheScienceofFood
eYuvAÏÐd, ! We®ô7oeY
andAgriculture ,2021,101(5):1926-1934.
|,®ñä¤Se¤, ñä¤*Å^}0
[2]LUJunsheng,HUTiantian,GENGChenming.Response
[30]
µ2e;Khakimov 'sWeõ4e
ofyield,yieldcomponentsandwaternitrogenuseefficiency
|çâÚñä¤ó±, ÷fhøJ!ñä ofwinterwheattodifferentdripfertigationregimesinNorth
¤ó±*k, z{*Z-p。 westChina [J].AgriculturalWaterManagement,2021,
255:107034.
5 7 P
[3]GUOQing,HUANGGuanmin,GUOYuling.Optimizing
Åcf_ee5&eô7~FNs(^v irrigationandplantingdensityofspringmaizeundermulch
p, (^A&eô7~FNWÐòó、 { dripirrigationsysteminthearidregionofNorthwestChina
[J].FieldCropsResearch,2021,266:108141.
z、 *{、 pz{ÜL0, õ*Ue
[4]ZHAODi,WANGZhenhua,ZHANGJinzhu.Improvingyield
e5òô7~FNAv», STeí@:
andqualityofprocessingtomato( Lycopersiconesculentum
( 1) «WPÞ@, f_ee5&eô7~FN
Miller)usingalternatepartialrootzonedripirrigationinarid
WÐòó®È4ezcd¯»Uee5òô NorthwestChina [J].Water,2019,11(7):1503.
7~FNþ 32.3% ~50.0%; f_ee5&eô7 [5]h+R, , Fc, . Z[W´×É]vW¨èË
~FNWVomÏ k s 0.314, þ1 ×®Z®ÐOPéê[J]. Y2lm6ø,2021,37
Uee5òô7~FN 0.466, äz (20):127-135.
²ñ。 [6]HANSiqi,LIYunkai,ZHOUBo.Aninsituaccelerated
( 2) ô{WPÞ@, ½ô7~FNWÐòó experimentaltestingmethodfordripirrigationemitterclog
gingwithinferiorwater[J].AgriculturalWaterManage
ÖרÙÁsPùÃÖ×t}`âÚáùÃÖ×;
ment ,2019,212:136-154.
f_ee5&eô7~FNWÐòó ¿Q'|
[7]BOUHALIM E,OUARRICHEH,BOUISFIF.Clogging
¬²", §w~FÛ, ~ÄWÐòóЮ0.2、
investigationofpressurecompensatingbuttonemitters :An
0.3、0.4g/L Wô{Wù@µ²1Uee5
experimentalstudyoffourtypes [J].EnvironmentalSci
òô7~FN½þ 7.4%、10.0%、11.3%。 enceandPollutionResearch,2020,27:44325-44332.
(3) ½ô7~FN{zÁ*ezÞSµ [8]AL-AGELEH A,NACKLEYL,HIGGINSC.Testing
22, µÉô{zPÞ@f_ee5&eô7~ novelnewdripemitterwithvariablediametersforavariable