期刊文献+
共找到894篇文章
< 1 2 45 >
每页显示 20 50 100
Effects of Irrigation Water Quality and Drip Tape Arrangement on Soil Salinity,Soil Moisture Distribution,and Cotton Yield (Gossypium hirsutum L.) Under Mulched Drip Irrigation in Xinjiang,China 被引量:24
1
作者 LIU Mei-xian YANG Jing-song +2 位作者 LI Xiao-ming YU Mei WANG Jin 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2012年第3期502-511,共10页
More and more attention is being focused on saline water utilization in irrigation due to the shortage of fresh water to agriculture in many regions. For purpose of reducing the risks of using of saline water for irri... More and more attention is being focused on saline water utilization in irrigation due to the shortage of fresh water to agriculture in many regions. For purpose of reducing the risks of using of saline water for irrigation, the mechanism of soil moisture and salinity distribution and transport should be well understood for developing optimum management strategies. In this paper, field experiments were carried out at Junggar Basin, China, to study the effects of drip irrigation water quality and drip tape arrangement on distribution of soil salinity and soil moisture. Six treatments were designed, including two drip tape arrangement modes and three irrigation water concentration levels (0.24, 4.68, and 7.42 dS m^-l). Results showed that, soil moisture content (SMC) directly beneath the drip tape in all treatments kept a relatively high value about 18% before boll opening stage; the SMC in the narrow strip in single tape arrangement (Ms) plot was obviously lower than that in the double tapes arrangement (Md) plot, indicating that less sufficient water was supplied under the same condition of irrigation depth, but there was no significant reduction in yield. Mulching had not significant influence on salt accumulation but the drip tape arrangement, under the same condition of irrigation water depth and quality, compared with Md, Ms reduced salt accumulation in root zone and brought about relatively high cotton yield. 展开更多
关键词 COTTON drip tape arrangement mulched drip irrigation water quality
在线阅读 下载PDF
Effects of Soil Water Content on Cotton Root Growth and Distribution Under Mulched Drip Irrigation 被引量:25
2
作者 HU Xiao-tang, CHEN Hu, WANG Jing, MENG Xiao-bin and CHEN Fu-hong Agricultural College, Shihezi University, Shihezi 832003, P.R.China 《Agricultural Sciences in China》 CSCD 2009年第6期709-716,共8页
The relation between soil water content and the growth of cotton root was studied for the scheme of field water and cotton yield under mulched drip irrigation. Based on the field experiments, three treatments of soil ... The relation between soil water content and the growth of cotton root was studied for the scheme of field water and cotton yield under mulched drip irrigation. Based on the field experiments, three treatments of soil water content were conducted with 90%, 75%θf, and 60%θf (θfis field water capacity). Cotton roots and root-shoot ratio were studied with digging method, and the soil moisture was observed with TDR (time domain reflector), and cotton yield was measured. The results indicated that the growth of cotton root accorded with Logistic growth curve in the three treatments, the cotton root grew quickly and its weight was very high under 75%θf because of the suitable soil water condition, while grew slowly and its weight was lower under 90%θf due to water moisture beyond the suitable condition, and the root weight was in between under 60%θf For the three water treatments, the cotton root weight decreased with soil depth, and decreased more significantly in deeper soil layer with the soil moisture increasing. And the ratio of cotton root weight in 0-30 cm soil layer to the total root weight was the highest under 75%θf. The cotton root system was distributed mainly in the soil of narrow row and wide row mulched with plastic film, and little in the soil outside plastic film. The weight of cotton root was the highest in the soil of narrow row or wide row mulched with plastic film under 75%θf. Root-shoot ratio decreased with the soil moisture increasing. The soil water content affected cotton yields, and cotton yield was the highest under 75%θf. The higher soil moisture level is unfavorable to the growth of cotton root system and yield of cotton under mulched drip irrigation. 展开更多
关键词 mulched drip irrigation cotton (Gossypium hirsutum L.) soil water content ROOT
在线阅读 下载PDF
Localized salt accumulation: the main reason for cotton root length decrease during advanced growth stages under drip irrigation with mulch film in a saline soil 被引量:6
3
作者 WenXuan MAI ChangYan TIAN Li LI 《Journal of Arid Land》 SCIE CSCD 2014年第3期361-370,共10页
High salinity in soil can prevent root growth of most plants. To investigate soil salinity dynamics under drip irrigation with mulch film (DI) and its effects on cotton root length, we conducted field experiments in... High salinity in soil can prevent root growth of most plants. To investigate soil salinity dynamics under drip irrigation with mulch film (DI) and its effects on cotton root length, we conducted field experiments in saline soil based on a monolith method using flooding irrigation with mulch film (FI) as a control at the Korla Experimental Station of the Xinjiang Academy of Agricultural Sciences, China in 2009 and 2010. The results showed that the total root length decreased 120 days after sowing (DAS) under DI, and was mainly centered in the 0-30 cm soil layer and at distances of 30-70 cm from the drip-lines. There was almost complete overlap in the area of root length decline and salt accumulation. In the soil depth of 0-30 cm and at distances of 30-70 cm from the drip-lines at 110 to 160 DAS in 2009 and 171 DAS in 2010, the electrical conductivity (EC) in all soil samples was at least 3 mS/cm and in some cases exceeded 5 mS/cm under DI treatment. However, EC barely exceeded 3 mS/cm and no reduction in root length was observed under FI treatment. Correlation analysis of soil EC and root length density indicated that the root length declined when the soil EC exceeded 2.8 mS/cm. The main reason for the decrease of root length in cotton under DI was localized accumulation of salinity. 展开更多
关键词 COTTON drip irrigation under mulch film flooding irrigation under mulch film root SALINITY
在线阅读 下载PDF
Effects of soil moisture on cotton root length density and yield under drip irrigation with plastic mulch in Aksu Oasis farmland 被引量:10
4
作者 Yilihamu Yimamu 《Journal of Arid Land》 SCIE 2010年第4期243-249,共7页
Effects of soil moisture on cotton root length density (total root length per unit soil volume) and yield under drip irrigation with plastic mulch were studied through field experiments. The results indicate that spat... Effects of soil moisture on cotton root length density (total root length per unit soil volume) and yield under drip irrigation with plastic mulch were studied through field experiments. The results indicate that spatial distributions of root length density of cotton under various water treatments were basically similar. Horizontally, both root length densities of cotton in wide and narrow rows were similar, and higher than that between mulches. Vertically, root length density of cotton decreased with increasing soil depth. The distribution of root length density is different under different irrigation treatments. In conditions of over-irrigation, the root length density of cotton between mulches would increase. However, it would decrease in both the wide rows and narrow rows. The mean root length density of cotton increased with increasing irrigation water. Water stress caused the root length density to increase in lower soil layers. There is a significant correlation between root length density and yields of cotton at the flower-boll and wadding stages. The regression between irrigation amount and yield of cotton can be expressed as y = -0.0026x2+18.015x-24845 (R2 = 0.959). It showed that the irrigation volume of 3,464.4 m3/hm2 led to op-timal root length density. The yield of cotton was 6,360 .8 kg/hm2 under that amount of irrigation. 展开更多
关键词 drip irrigation under plastic mulch soil moisture COTTON root length density
在线阅读 下载PDF
Cotton's Water Demand and Water-Saving Benefits under Drip Irrigation with Plastic Film Mulch 被引量:2
5
作者 Yingyu YAN Juyan LI 《Asian Agricultural Research》 2016年第4期32-36,41,共6页
The primary purpose of this research was to give suitable irrigation program according to the growth period and water requirement.A cotton field experiment with mulched drip irrigation was conducted at the National Fi... The primary purpose of this research was to give suitable irrigation program according to the growth period and water requirement.A cotton field experiment with mulched drip irrigation was conducted at the National Field Observation and Research Station for Oasis Farmland Ecosystem in Aksu of Xinjiang in 2008.Water balance method was adopted to study the water requirement and water consumption law of cotton under mulched drip irrigation in Tarim Irrigated Area.Statistical analysis of experimental data of irrigation indicates that the relationship between yield of cotton and irrigation presents a quadratic parabola.We fit the model of cotton water production on the basis of field experimental data of cotton.And the analysis on water saving benefit of cotton under mulched drip irrigation was done.Results indicate that water requirements for the irrigated cotton are 543 mm in Tarim Irrigated Area.The water requirements of seedling stage is 252 mm,budding stage is 186 mm,bolling stage is 316 mm and wadding stage is 139 mm.the irrigation amount determines the spatial distribution of soil moisture and water consumption during cotton life cycle.However,water consumption at different growth stages was inconsistent with irrigation.Quantitatively,the water consumed by cotton decreases upon the increase of irrigation amount.From the perspective of water saving,the maximal water use efficiency can reach 3 091 m3/ha.But the highest cotton yield needs 3464 m3/ha irrigation water.In summary,compared to the conventional drip irrigation,a number of benefits in water saving and yield increase were observed when using plastic mulch.At the same amount of irrigation,the cotton yield with plastic mulch was 30.2% higher than conventional approaches,and the efficiency of water utilization increased by30.2%.While at the same yield level,29.3% water was saved by using plastic mulch,and the efficiency increased by 41.5%. 展开更多
关键词 Cotton’s WATER demand Cotton’s WATER consumption WATER-SAVING BENEFITS drip irrigation with PLASTIC film mulch
在线阅读 下载PDF
Analysis on Major Agronomic Traits and Yield of Huayu Series of Peanut Cultivars under Mulched Drip Irrigation
6
作者 Liang WANG Yan LI +5 位作者 Qiaojiang WANG Zhiping DUAN Zhigang LIU Li ZHANG Ping HAN Jianjun WEI 《Agricultural Science & Technology》 CAS 2016年第3期539-543,共5页
[Objective] This study aimed to investigate the appearance of major agronomic traits and yield potential of Huayu series of peanut cultivars under the condition of mulched drip irrigation, so as to provide core parent... [Objective] This study aimed to investigate the appearance of major agronomic traits and yield potential of Huayu series of peanut cultivars under the condition of mulched drip irrigation, so as to provide core parent materials for new peanut cultivar breeding in Xinjiang during Thirteenth Five-Year Plan. [Method] A total of 16 peanut cultivars of Huayu series were studied systematically by field experiment and laboratory analysis. In addition, the main stem height, lateral branch length, pod number per plant, 100-pod weight, 100-kernel weight, pod length, pod width and yield of different peanut cultivar were compared. [Result]Under the condition of mulched drip irrigation, the appearance of major agronomic traits of peanut cultivars in Xinjiang was better than that in Shandong areas. In Xinjiang, the yields of the peanut cultivars were increased in varying degrees. However,there were some differences in appearance of major agronomic traits, as well as yield, among different peanut cultivars. Among all the peanut cultivars, the single-plant productivities of Huayu 22, Huayu 28 and Huayu 50 were higher than those of the other cultivars, and the yields of Huayu 33 and Huayu 50 were higher than those of the other cultivars. Meanwhile, the late two cultivars' comprehensive traits were excellent. [Conclusion] In the high-yielding breeding of peanut in Xinjiang, Huayu 33 and Huayu50 can be used as core parent materials. Under the condition of mulched drip irrigation, their yield potential can be further explored. 展开更多
关键词 XINJIANG mulched drip irrigation Huayu series Peanut cultivar Agronomic trait YIELD
在线阅读 下载PDF
Green High-yield and High-efficiency Cultivation Techniques of Integrated Management of Water and Fertilizer for Maize under Mulch Drip Irrigation
7
作者 Guangbin YANG 《Plant Diseases and Pests》 CAS 2023年第3期22-26,共5页
The green high-yield and high-efficiency cultivation techniques of integrated management of water and fertilizer for maize under mulch drip irrigation are described from the aspects of high yield target of maize and i... The green high-yield and high-efficiency cultivation techniques of integrated management of water and fertilizer for maize under mulch drip irrigation are described from the aspects of high yield target of maize and its component factor indexes,pre-sowing preparation,sowing,post-sowing management,field management at the seedling stage,integrated management of water and fertilizer for target yield of maize,rational application of micro-fertilizer,comprehensive prevention and control of diseases and pests,timely harvest,etc.,in order to provide a reference for agricultural technicians,maize farmers and maize industry development in northern Xinjiang. 展开更多
关键词 mulch drip irrigation MAIZE Integrated management of water and fertilizer Cultivation techniques
在线阅读 下载PDF
Effect of Different Norms of Under-Mulch-Drip Irrigation on Diurnal Changes of Photosynthesis and Chlorophyll Fluorescence Parameter in High Yield Cotton of Xinjiang
8
作者 LIShao-kun GOULing +4 位作者 YUSong-lie CAOLian-pu ZHANGWang-feng RENLi-tong WANGZhen-lin 《Agricultural Sciences in China》 CAS CSCD 2003年第5期533-538,共6页
Under-mulch-drip irrigation is an advanced irrigation technique, which combines plastic-film-covered cultivation with drip irrigation. The influence of different norms of under-mulch-drip irrigation on diurnal changes... Under-mulch-drip irrigation is an advanced irrigation technique, which combines plastic-film-covered cultivation with drip irrigation. The influence of different norms of under-mulch-drip irrigation on diurnal changes of photosynthetic rates and chlorophyll fluorescence parameters of cotton was studied, in order to understand the physiological mechanisms of water-saving and high-yielding farming in Xinjiang. Results indicated that limited drip irrigation, which supplies 2/3 of 375 m3 ha-1, the widely-used irrigation norm in cotton cultivation in Xinjiang, caused a water deficit in cotton field. Compared with the proper drip irrigation, the leaf photosynthetic rate under limited drip irrigation decreased during 9:00 to 11:00 a. m. , and was significantly suppressed at midday, and then recovered afterwards. Using the chlorophyll fluorescence method, the absorption, transfer and transformation features of solar radiation by cotton leaf were investigated. Under limited drip irrigation, the variable fluorescence (Fv) and primary light transfer efficiency of PSII (Fv/Fm) in cotton leaves were reduced because of the high light intensities and high temperatures at noon, and the decrease in XinluzaoS was greater than that in Xinluzao6. Therefore, it could be concluded that Xinluzao6 has a higher drought-tolerance, and the Fv/Fm ratio could be used as a drought-resistance index for cotton. 展开更多
关键词 COTTON PHOTOSYNTHESIS Chlorophyll fluorescence Diurnal changes Under-mulch-drip irrigation
在线阅读 下载PDF
Effects of combined drip irrigation and mulching practices on the soil evaporation characteristics in a young apple orchard in arid northwestern China
9
作者 Xinyu WANG Haijing WANG +1 位作者 Xiao LI Di WANG 《Frontiers of Agricultural Science and Engineering》 CSCD 2024年第4期575-588,共14页
Soil evaporation(SE)is a key component of regional hydrological balance,especially in arid areas.China has the largest area of apple orchards in the world,but the effects of mulching practices on sE dynamics and their... Soil evaporation(SE)is a key component of regional hydrological balance,especially in arid areas.China has the largest area of apple orchards in the world,but the effects of mulching practices on sE dynamics and their controlling factors remain poorly understood in orchards using drip irrigation(DI).This study was conducted to address these issues by measuring SE,meteorological factors,soil temperature(ST),and soil water content(SwC)in young apple orchard under two mulching treatments during the growing season.Field experiments,which included three treatmentsfilm mulching(FM)and maize straw mulching(SM),and clean tillage(TL)asa comparatorwere conducted in 3-year-old apple orchard with Dl in arid northwestern China.The results revealed that mulching significantly affected the daily SE dynamics of the young orchard(p<0.05),and the daily mean SE under FM,SM,and TL treatments was about 1.3±0.5,1.3±0.4,and 1.7±0.4 mm·d^(-1),respectively.No significant differences were detected in the daily SE between FM and SM treatments(p>0.05),whereas the daily SWC in the four soil layers to 120 cm were consistently greater under SM treatment than under FM and TL treatments(p<0.05).Compared to the TL treatment,the daily SE under FM and SM treatments was more susceptible to meteorological factors.Stepwise regression analysis showed that the daily SE of the young orchard was mainly controlled by the vapor pressure deficit,reference evapotranspiration and solar radiation,regardless of the treatment.However,there was no significant relationship between the daily SE and wind speed under TL treatment(p>0.05).This study highlighted the significant differences in SE losses and SWC dynamics of the mulching treatments.Overall,SM is considered to be a more effective mulching practice for reducing unproductive SE and improving SWC status in young apple orchards with DI in arid and similarclimatic regions. 展开更多
关键词 drip irrigation orchards soil evaporation surface mulching water-limited regions
原文传递
灌水量及种植密度对河西灌区膜下滴灌水稻产量及水分利用效率影响
10
作者 唐文雪 马忠明 +3 位作者 薛亮 连彩云 王智琦 罗双龙 《中国稻米》 北大核心 2025年第2期76-82,共7页
本研究旨在探讨不同灌水量与种植密度对膜下滴灌水稻产量、耗水量及水分利用效率的影响,并确定能够协同提升产量与水分利用效率的最佳灌水量与种植密度组合。采用裂区设计方法,主处理为灌水量,设750.00 mm(W1)、975.00 mm(W2)、1200.00 ... 本研究旨在探讨不同灌水量与种植密度对膜下滴灌水稻产量、耗水量及水分利用效率的影响,并确定能够协同提升产量与水分利用效率的最佳灌水量与种植密度组合。采用裂区设计方法,主处理为灌水量,设750.00 mm(W1)、975.00 mm(W2)、1200.00 mm(W3)3个水平;副处理为种植密度,设36.40万穴/hm^(2)(D1)、44.40万穴/hm^(2)(D2)、57.10万穴/hm^(2)(D3)3个水平。研究结果显示,水稻的产量、耗水量和水分利用效率均受到灌溉水平、种植密度及其交互作用的影响。在产量方面,W2和W3处理的产量相近,其比W1处理分别显著提高35.66%和36.86%。与D1和D2处理相比,D3处理的产量显著提高60.54%和12.79%。高密度种植与中高灌水量结合(W2D3和W3D3处理)能够使水稻获得更高的产量。在耗水量方面,W2处理比W1处理显著增加26.69%,但比W3处理显著降低17.13%。尽管D3处理的耗水量最高,但仅比D1和D2处理分别增加1.63%和1.47%。W3D1、W3D2、W3D3处理的耗水量较高,表明灌水量是影响水稻耗水量的主要因素。在水分利用效率方面,W2处理的水分利用效率为4.02 kg/(hm^(2)·mm),比W1和W3处理分别提高6.91%和20.00%;D3处理的水分利用效率为4.31 kg/(hm^(2)·mm),比D1和D2处理分别提高52.30%和8.02%。在各处理组合中,W1D2、W2D3、W3D3的水分利用效率较高,分别为4.45、4.87和4.41 kg/(hm^(2)·mm)。综合考虑水稻的增产和节水效果,灌水量为975.00 mm、种植密度为57.10万穴/hm^(2)时,水稻产量和水分利用效率均达到较高水平。 展开更多
关键词 膜下滴灌水稻 种植密度 灌水量 耗水量 产量 水分利用效率
在线阅读 下载PDF
灌水下限和施肥量对膜下滴灌小型大白菜耗水及光合特性的影响
11
作者 马彦霞 陈静茹 +3 位作者 王晓巍 张玉鑫 张俊峰 蒯佳琳 《中国农业科技导报(中英文)》 北大核心 2025年第3期239-249,共11页
为探求河西冷凉灌区秋茬小型大白菜(Brassica pekinensis)节水节肥、高产高效的科学灌溉施肥制度,以当地秋茬主栽品种‘金皇后’为试材,研究膜下滴灌条件下不同水肥(低水,H1;中水,H2;高水,H3;低肥,F1;中肥,F2;高肥,F3)组合对小型大白菜... 为探求河西冷凉灌区秋茬小型大白菜(Brassica pekinensis)节水节肥、高产高效的科学灌溉施肥制度,以当地秋茬主栽品种‘金皇后’为试材,研究膜下滴灌条件下不同水肥(低水,H1;中水,H2;高水,H3;低肥,F1;中肥,F2;高肥,F3)组合对小型大白菜耗水及其叶片光合特性的影响。结果表明,灌水量、施肥量及其交互均不同程度地影响小型大白菜的耗水和光合特性及产量。在不同水肥耦合作用下,小型大白菜耗水强度均于结球初期达到最大值,低水、中水和高水处理的耗水强度分别为0.0032、0.0033、0.0034 m^(3)·d^(-1)·m^(-2)。水肥耦合模式下,中水中肥处理小型大白菜的叶绿素含量、叶片净光合速率、气孔导度、蒸腾速率、经济产量较低水低肥处理分别提高4.4%、10.4%、27.3%、23.6%、62.3%,叶片胞间CO_(2)浓度降低3.0%。综合考虑小型大白菜的耗水、产量和光合利用等特性,甘肃河西走廊冷凉灌区露地秋茬小型大白菜的适宜水肥耦合模式为灌水量控制在田间持水量的70%,N、P_(2)O_(5)、K_(2)O的施用量分别为330、195、450 kg·hm^(-2)。以上结果为河西冷凉灌区秋茬小型大白菜水肥管理提供理论依据和技术支持。 展开更多
关键词 小型大白菜 膜下滴灌 耗水特征 施肥 光合特性
在线阅读 下载PDF
覆膜与滴灌对玉米生态系统碳足迹和净生态系统经济效益的影响研究
12
作者 马娇 王栋 《干旱地区农业研究》 北大核心 2025年第1期192-202,249,共12页
为探讨不同覆膜和灌溉方式下玉米农田温室气体排放、作物产量、净生态系统经济效益及碳足迹的综合效应,于2021—2022年开展不同覆膜(垄作半膜和垄作无膜)和灌溉方式(滴灌和沟灌)的组合试验,研究其对玉米产量和温室气体排放的影响,并对... 为探讨不同覆膜和灌溉方式下玉米农田温室气体排放、作物产量、净生态系统经济效益及碳足迹的综合效应,于2021—2022年开展不同覆膜(垄作半膜和垄作无膜)和灌溉方式(滴灌和沟灌)的组合试验,研究其对玉米产量和温室气体排放的影响,并对灌溉水利用效率和施氮部分要素生产率、经济效益和碳足迹进行分析与评估。结果表明,滴灌和覆膜均有效降低了温室气体排放峰值,滴灌处理玉米整个生育期N_(2)O、CH_(4)和CO_(2)平均排放通量分别为0.27~0.51、-0.04~-0.05 mg·m^(-2)·h^(-1)和2 090.98~2 160.71 mg·m^(-2)·h^(-1),较沟灌处理分别降低12.00%~30.30%、7.36%~21.45%和7.48%~11.68%。覆膜处理下N_(2)O、CH_(4)和CO_(2)平均排放通量分别为0.27~0.39、-0.03~-0.47 mg·m^(-2)·h^(-1)和2 090.98~2 290.50 mg·m^(-2)·h^(-1),较不覆膜处理分别降低33.54%~47.35%、4.03%~19.40%和2.57%~6.64%,故垄作半膜滴灌处理的温室气体全球变暖潜势显著低于其他处理(降幅为5.30%~16.89%)。与其他处理相比,垄作半膜滴灌处理的作物产量、作物水分生产力、灌溉水利用效率和施氮部分要素生产率分别增加6.33%~19.83%、6.10%~33.17%、14.72%~45.87%和6.90%~19.44%。滴灌系统的经济效益和净生态系统经济效益分别较沟灌系统增加9.37%~14.85%和43.88%~55.56%,覆膜技术的经济效益和净生态系统经济效益分别较不覆膜处理提升0.90%~5.95%和16.23%~20.88%。滴灌和覆膜均降低了玉米生育期内总碳排放和单位产量碳足迹。综上,垄作半膜滴灌方式在提升玉米产量和经济效益的同时,显著减少了温室气体的全球变暖潜势和碳足迹,是较为理想的玉米种植方式。 展开更多
关键词 温室气体排放 垄作覆膜 滴灌 经济效益 碳足迹
在线阅读 下载PDF
SIMDual_Kc蒸散模型在南疆滴灌夏玉米的适用性
13
作者 李丰琇 刘泽龙 左顺利 《农业工程学报》 北大核心 2025年第5期68-78,共11页
为评估SIMDual_Kc模型在估算南疆滴灌夏玉米蒸发、蒸腾和蒸散量的适用性,该研究于2022年和2023年在南疆阿克苏地区开展夏玉米田间试验,分别在覆膜与裸地滴灌条件下设置4个灌水梯度。依托稳定碳同位素技术计算作物蒸腾量、水量平衡法计... 为评估SIMDual_Kc模型在估算南疆滴灌夏玉米蒸发、蒸腾和蒸散量的适用性,该研究于2022年和2023年在南疆阿克苏地区开展夏玉米田间试验,分别在覆膜与裸地滴灌条件下设置4个灌水梯度。依托稳定碳同位素技术计算作物蒸腾量、水量平衡法计算作物蒸散量,构建SIMDual_Kc模型,估算覆膜与裸地滴灌条件下夏玉米蒸散量、土壤蒸发量及作物蒸腾量,结合实际观测数据对模型参数进行率定和验证。结果表明:SIMDual_Kc模型可较好地估算南疆滴灌夏玉蒸散量,实测值与模拟值有较好的一致性,覆膜和裸地滴灌夏玉米蒸散量、蒸发量和蒸腾量模拟值与实测值的决定系数为0.66~0.96,回归系数为0.86~1.13,一致性指数为0.69~0.99,均方根误差为0.14~19.41 mm,归一化均方根误差为9.63%~28.23%。适用于研究区覆膜/裸地滴灌夏玉米的SIMDual_Kc模型初期基础作物系数为0.15,中期作物系数为1.2/1.15,后期作物系数为0.50/0.45,蒸发层深度为10 mm,总蒸发水量为24 mm/22mm,易蒸发水量为9 mm。研究可为南疆夏玉米灌溉制度优化提供理论依据。 展开更多
关键词 蒸散 蒸发 蒸腾 干旱区 夏玉米 膜下滴灌 SIMDual_Kc模型
在线阅读 下载PDF
Soil particle size distribution and its relationship with soil water and salt under mulched drip irrigation in Xinjiang of China 被引量:35
14
作者 HU HongChang TIAN FuQiang HU HePing 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第6期1568-1574,共7页
Soil particle size distribution(PSD),one of the most important soil physical attributes,is of great importance to soil water movement,soil erosion and soil solute migration.In this study,the soil PSD of 563 soil sampl... Soil particle size distribution(PSD),one of the most important soil physical attributes,is of great importance to soil water movement,soil erosion and soil solute migration.In this study,the soil PSD of 563 soil samples from the mulched drip irrigated cotton fields in Xinjiang of China were measured by laser diffraction particle size analyzer.The soil PSD characteristics and its relations with soil water and salt were studied by using the combined methods of textural triangle,fractal and multifractal analysis.The results showed very low clay content(about 1.52%) while really high sand content of the studied soil,and a complex shape of bimodal or unimodal of soil PSD.The results also showed that the two indices,i.e.,standard deviation and the peak value of soil particle relative volumes,were good indicators of soil PSD and thus had good relations with fractal and multifractal characteristics.The correlative analysis further indicated that the mulched drip irrigation had a significant impact on the distribution of the soil salt,while this impact withered for the deeper soil layer.The soil texture feature was found to dominate soil water and salt distribution,especially the surface soil salt content and the deep soil water content. 展开更多
关键词 soil particle size distribution soil water and salt mulched drip irrigation fractal analysis multifractal analysis textural triangle
原文传递
Effects of timing and duration under brackish water mulch drip irrigation on cotton yield in northern Xinjiang,China 被引量:1
15
作者 Wang Chunxia Yang Guang +3 位作者 Li Junfeng He Xinlin Xue Lianqing Long Aihua 《International Journal of Agricultural and Biological Engineering》 SCIE EI CAS 2017年第6期115-122,共8页
The brackish water is an important potential water source and has frequently been utilized to drip-irrigate cotton due to the water shortage in the arid region of Xinjiang,northwestern of China.The brackish water is u... The brackish water is an important potential water source and has frequently been utilized to drip-irrigate cotton due to the water shortage in the arid region of Xinjiang,northwestern of China.The brackish water is usually saline water with salinity ranging from 1 g/L to 5 g/L,which is widely distributed in this area,so the reasonable use of that brackish water may not only play a vital role in the local agricultural production,but also save plenty of freshwater.However,irrigation with brackish water usually causes the reduction of crop yield and soil salinization which can negatively impact plants through three major components:osmotic,nutritious and toxic stresses.Therefore,a field experiment,with eight different time-series irrigation modes using brackish water(3.5±0.2)g/L and freshwater(<1 g/L),beneath a combined film and drip-irrigation system was carried out to study the changes of soil salt content and cotton yield aiming to search for a balanced method during the 2 cotton growing seasons in 2012 and 2013.The results indicated that the time-series irrigation modes determined the soil salinity and moisture distribution based on observed spatio-temporal distribution of water content and electric conductivity,and soil salinity generally gathered at the depth of 0-10 cm and 60 cm of soil with the increase of irrigation quota.Moreover,the results demonstrated that the yields of cotton which was grown using brackish water and freshwater were better than those only using freshwater and the soil salinity with reasonable irrigation timing was not accumulated obviously. 展开更多
关键词 brackish water mulch drip irrigation timing and duration for irrigation irrigation scheduling COTTON
原文传递
Effects of straw mulching on microclimate characteristics and evapotranspiration of drip-irrigated winter wheat in North China Plain 被引量:1
16
作者 Jiandong Wang Yanqun Zhang +5 位作者 Shihong Gong Di Xu Richard Snyder Yanyu Chen Yuefen Zhao Qinghong Yan 《International Journal of Agricultural and Biological Engineering》 SCIE EI CAS 2018年第2期122-131,共10页
Field experiments were conducted for two consecutive years(2013-2014 and 2014-2015)to study the effects of straw mulching on microclimate characteristics,energy flux,soil evaporation(Es)and evapotranspiration of winte... Field experiments were conducted for two consecutive years(2013-2014 and 2014-2015)to study the effects of straw mulching on microclimate characteristics,energy flux,soil evaporation(Es)and evapotranspiration of winter wheat(Triticum aestivum L.)under adequate drip irrigation in North China Plain(NCP).The results revealed that straw mulching affected air temperature(T_(a))and dew point temperature(T_(d))near the soil surface but had little effect on relative humidity(RH)compared with non-mulched fields.Straw mulching increased the turbulent exchange coefficient(K),and K within the canopy was higher than that above the canopy.Straw mulching clearly increased the sensible heat flux(H)distribution in April-June,and part of the energy needed for evapotranspiration was provided by transfer from the warmer air aloft.There was a linear functional relationship between H and T_(a)measured above and within the canopy.The straw mulching decreased Es but increased crop transpiration(T).Mulched treatment(TM)can decrease the total irrigation amount by about 7%-15%compared with the non-mulched treatment(TN).There were no significant differences(p>0.05)in cumulative crop evapotranspiration(ETc)between TM and TN treatments under adequate drip irrigation,and the use of mulch may need to be combined with an optimal deficit drip irrigation schedule for managing the declining water table in NCP. 展开更多
关键词 drip irrigation MICROCLIMATE straw mulching winter wheat EVAPOTRANSPIRATION water use efficiency
原文传递
Response of spatial structure of cotton root to soil-wetting patterns under mulched drip irrigation
17
作者 Dongwei Li Mingsi Li +4 位作者 Xiaojun Shen Xinguo Zhou Hao Sun Yulong Zhao Wenjuan Chen 《International Journal of Agricultural and Biological Engineering》 SCIE EI CAS 2020年第5期153-162,共10页
The matching relationship between the spatial structure of cotton cluster root systems and soil-wetting patterns under mulched drip irrigation forms the theoretical basis for the technical design of mulched drip irrig... The matching relationship between the spatial structure of cotton cluster root systems and soil-wetting patterns under mulched drip irrigation forms the theoretical basis for the technical design of mulched drip irrigation.A 2-year field experiment was conducted,in which different soil-wetting patterns were produced by setting different emitter discharge rates.The envelopes of cotton cluster root length densities were derived using the topological methodology and used to examine the effects of different soil-wetting patterns on the spatial structure of root systems and water uptake capacity within row spaces.The results showed that the root systems in rows of cotton grown under narrower and deeper soil-wetting patterns exhibited a single-peak distribution,while those under wider and shallower soil-wetting patterns exhibited a two-peak distribution.Furthermore,cotton rows grown near mulch edges experienced lower moisture stress,and wider and shallower soil-wetting patterns contributed to greater root growth rates in the vertical direction and resulted in more even potential water uptake capacities.The findings of this study revealed that wider and shallower soil-wetting patterns were more desirable for mulched drip irrigation of cotton and should be considered in the technical design of drip irrigation systems. 展开更多
关键词 mulched drip irrigation soil-wetting pattern envelopes of cotton cluster root length densities soil matrix suction potential root water uptake capacity
原文传递
减氮施炭对温室膜下滴灌黄瓜土壤呼吸和氮素气态损失的影响 被引量:3
18
作者 陈涛涛 刘晓晗 +2 位作者 孟凡超 张妮子 迟道才 《沈阳农业大学学报》 CAS CSCD 北大核心 2024年第1期9-20,共12页
为降低温室蔬菜过量施氮的不利影响,明确减氮施炭条件下温室膜下滴灌黄瓜土壤呼吸和氮素气态排放特征,以不覆膜不施炭(CK)为对照,设置覆膜(M)、覆膜施炭(MB)、覆膜施炭减氮(MBN_(80%))共4个处理,对覆膜条件下减氮施炭处理对黄瓜产量、... 为降低温室蔬菜过量施氮的不利影响,明确减氮施炭条件下温室膜下滴灌黄瓜土壤呼吸和氮素气态排放特征,以不覆膜不施炭(CK)为对照,设置覆膜(M)、覆膜施炭(MB)、覆膜施炭减氮(MBN_(80%))共4个处理,对覆膜条件下减氮施炭处理对黄瓜产量、耗水量、土壤养分动态、土壤呼吸、N_(2)O排放和氨挥发的影响进行探讨。结果表明:与CK相比,M可降低温室膜下滴灌黄瓜全生育期耗水量20.95%,提高水分利用效率41.03%,降低0~20 cm表层土铵态氮48.12%,降低全生育期氨挥发32.35%、N_(2)O排放量14.34%和CO_(2)排放量12.68%(<0.05)。施炭后,与CK相比,MB可降低耗水量28.37%,提高水分利用效率55.60%,降低表层土铵态氮30.0%,提升硝态氮12.37%,有机质56.28%,降低氨挥发36.68%、N_(2)O排放18.64%,但却显著增大了CO_(2)排放4.66%(p<0.05)。同M对比,MB可在M基础上,进一步提升表层土有机质和铵态氮含量,降低氨挥发,但促进了CO_(2)排放。覆膜施炭减氮20%后,与CK相比,MBN_(80%)可增产25.47%,降低耗水量32.43%,提升水分生产率72.67%,降低表层土铵态氮56.33%,增加有机质51.72%,降低氨挥发40.48%、N_(2)O排放20.79%(p<0.05)。CK全生育期全球增温潜势(global warming potential,GWP)和活性氮排放分别为13.57 t·CO_(2)-eq·hm^(-2)和6.54 kg·hm^(-2),M可显著降低GWP(14.15%)和活性氮排放(27.37%);在M基础上施炭,将进一步降低活性氮排放,但导致GWP显著增大;而在MB基础上减氮20%,可同时显著降低GWP和活性氮排放(p<0.05)。与CK相比,MBN80%在通过施炭20 t·hm^(-2),减氮20%条件下,实现增产25.47%,降低耗水量32.43%,增加有机质51.72%,增加收入17.52%,降低活性氮排放35.32%和GWP 2.28%,也可在MB的基础上,进一步实现增产,降低氨挥发,并破解M和MB处理CO_(2)排放增大的问题(p<0.05)。研究揭示了减氮施炭条件下温室膜下滴灌黄瓜土壤呼吸和氮素气态排放特征,为实现温室蔬菜节水增产固碳减排提供理论依据和技术支撑。 展开更多
关键词 温室 生物炭 氨挥发 氧化亚氮 土壤呼吸 膜下滴灌
在线阅读 下载PDF
滴灌条件下不同覆盖材料对玉米产量效益及土壤水分的影响 被引量:2
19
作者 崔云玲 张立勤 +2 位作者 唐文雪 杨蕊菊 汤莹 《寒旱农业科学》 2024年第1期57-62,共6页
为探明不同覆盖材料对滴灌水肥一体化条件下玉米产量和土壤水分分布的影响,以普通PE地膜和裸地为对照,分析全生物降解膜、加厚PE地膜、玉米秸秆等3种材料覆盖下对玉米产量和水分的影响。结果表明,玉米秸秆、加厚PE地膜和生物降解膜覆盖... 为探明不同覆盖材料对滴灌水肥一体化条件下玉米产量和土壤水分分布的影响,以普通PE地膜和裸地为对照,分析全生物降解膜、加厚PE地膜、玉米秸秆等3种材料覆盖下对玉米产量和水分的影响。结果表明,玉米秸秆、加厚PE地膜和生物降解膜覆盖后玉米产量为13114.5~13708.5 kg/hm^(2),较普通PE地膜增产1.4%~6.0%;水分利用效率为24.17~25.11 kg/(mm·hm^(2)),较普通PE地膜提高2.3%~3.8%。产值与效益均高于普通PE地膜,均以玉米秸秆处理最高,分别为38383.8、24283.8元/hm^(2);生物降解膜次之,分别为37674.0、21624.0元/hm^(2);加厚PE地膜排第3,分别为36720.6、21570.6元/hm^(2)。收获后覆盖处理土壤水分均呈典型的“双峰”曲线,上层含水量高于下层,对深层土壤水分影响较大。在降水量低、蒸发量高的沿黄灌区,覆膜的主要作用是减蒸保水,用可生物降解的环保型降解地膜、易回收型的加厚PE地膜或固炭培肥型的秸秆替代普通PE膜可行。 展开更多
关键词 滴灌 覆盖材料 玉米 产量效益 水分利用效率 土壤水分分布
在线阅读 下载PDF
两种覆盖方式下灌水定额对土壤温度变化、棉花产量及水分利用效率的影响
20
作者 吴奇峰 忠智博 《棉花学报》 CSCD 北大核心 2024年第5期385-395,共11页
【目的】探究不同覆盖方式和灌水定额对棉花生产的影响。【方法】于2017―2019年在新疆阿拉尔市开展大田试验,其中,2017―2018年膜下滴灌试验以新陆中46号为供试材料,设置24 mm(M1)、30 mm(M2)和36 mm(M3)3个灌水定额;2018―2019年无膜... 【目的】探究不同覆盖方式和灌水定额对棉花生产的影响。【方法】于2017―2019年在新疆阿拉尔市开展大田试验,其中,2017―2018年膜下滴灌试验以新陆中46号为供试材料,设置24 mm(M1)、30 mm(M2)和36 mm(M3)3个灌水定额;2018―2019年无膜滴灌试验以中棉619为供试材料,设置36 mm(W1)、45 mm(W2)和54 mm(W3)3个灌水定额;分析不同处理对10 cm、20 cm、40 cm土层土壤温度和土壤含水量、籽棉产量以及灌溉水利用效率的影响。【结果】2种模式下棉田10 cm、20 cm和40 cm土层土壤含水量和籽棉产量均随灌水定额的增大呈增加趋势。M2、M3处理的籽棉产量分别较M1处理显著增加8.82%~11.47%和14.24%~18.96%;W2、W3处理的籽棉产量分别较W1处理显著增加15.18%~22.61%和32.53%~46.29%。土壤温度和灌溉水利用效率均随灌水定额的增大呈降低趋势。M2、M3处理的灌溉水利用效率分别较M1处理显著降低10.82%~12.94%和20.70%~23.84%;W2、W3处理的灌溉水利用效率分别较W1处理降低1.91%~7.85%和2.47%~11.65%。2018年灌水定额相同时,M3处理的土壤含水量、0~40 cm土层土壤温度、籽棉产量和灌溉水利用效率均高于W1处理。基于逼近理想解排序法(technique for order preference by similarity to ideal solution, TOPSIS)的综合评价表明,膜下滴灌处理配套30 mm灌水定额,无膜滴灌处理配套54 mm灌水定额可取得较好的效果。【结论】提高灌水定额可以在一定程度上弥补无膜种植模式引起的籽棉产量降低,但会降低灌溉水利用效率。研究结果可为无膜滴灌植棉技术在当地的推广提供参考。 展开更多
关键词 新疆 棉花 膜下滴灌 无膜滴灌 灌水定额 TOPSIS 籽棉产量 灌溉水利用效率
在线阅读 下载PDF
上一页 1 2 45 下一页 到第
使用帮助 返回顶部