首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 115 毫秒
1.
古尔班通古特沙漠原生梭梭树干液流及耗水量   总被引:2,自引:0,他引:2  
孙鹏飞  周宏飞  李彦  李妙伶 《生态学报》2010,30(24):6901-6909
梭梭广泛分布于我国西部干旱区,利用热脉冲技术对古尔班通古特沙漠生长期原生梭梭的树干液流耗水特征进行了研究。随着水分条件的不同,影响树干液流过程的主导因素有所不同。根区土壤体积含水量在8.7%-12.1%时,梭梭日树干液流量与土壤水分显著相关;土壤含水量>12.1%时,液流更多的受到气象因素的影响;土壤含水量<8.7%,树干液流与气象要素之间没有相关性,液流更多的受植物生理特征影响。在土壤水分最丰富的4月份,随着土壤水分的降低,白天与夜间的液流变化趋同;4月份日平均液流量约是5-9月份的2倍。梭梭的液流通量从古尔班通古特沙漠原生林的0.156L?cm-2?d-1到塔中人工滴灌林的0.876 L?cm-2?d-1,均处于正常生长状态,表明梭梭生态需水的可塑性范围较广。基径为7.8cm和9.0cm的梭梭在4月至9月份生长期的实际耗水量分别是95mm和117mm。  相似文献   

2.
浅层地下水对华北地区河岸杨树林树干液流的影响   总被引:1,自引:1,他引:0  
华北地区河岸杨树林生长季的用水特征对杨树人工林经营管理具有重要意义.本文以北京市潮白河畔的杨树人工林为研究对象,采用热扩散式探针(TDP)测定树干液流、管式TDR土壤含水量法测定土壤体积含水量、开路涡度相关系统测定环境因子数据,对2014年6—7月的杨树树干液流及其影响因素进行系统研究,以探究浅层地下水对树干液流的可能影响.结果表明: 杨树树干液流日变化随太阳辐射呈现单峰或双峰变化,在土壤水分相对亏缺时,杨树树干液流密度明显减小,达到峰值的时间从14:00提前到12:30,但树干液流对太阳辐射的时滞效应没有明显变化.在表层土壤水分相对充足时,太阳辐射和空气饱和水汽压差是杨树树干液流变化的主导因子,但在表层土壤水分亏缺时,土壤水会成为杨树树干液流的限制因子;当表层土壤水分相对亏缺时,杨树单株耗水与100 cm土层土壤体积含水量呈显著负相关,与其余各土层体积含水量呈显著正相关.浅层地下水(相对稳定的150 cm及更深处)在土壤表层土壤水分含量相对亏缺时,可在毛管力作用下对上层土壤水进行补充,供给杨树生长需要.  相似文献   

3.
辽西北沙地樟子松树干液流的变化特征及其影响因素   总被引:1,自引:0,他引:1  
树干液流是量化植物蒸腾耗水的基本指标。本研究于2015年5—10月采用FLGS-TDP热扩散式树干液流计对辽西北半干旱区的沙地樟子松树干液流进行连续观测,同时结合林内小气候观测系统,探讨樟子松树干液流的动态变化特征及其影响因素。结果表明:树干液流速率和日累积量均为晴天阴天雨天,树干液流速率变化均呈"倒U"型,晴天时出现"光合午休"现象;不同月际间(5—10月),树干液流速率与月累积量为7月6月8月5月9月10月;不同季节间,树干液流启动时间夏季比秋季早1 h左右,且树干液流速率夏季秋季。树干液流受气象因子的影响较大,其中光合有效辐射、空气温度、饱和水汽压差(VPD)和风速与树干液流呈显著正相关,空气相对湿度则相反;土壤温度和含水量对树干液流的影响较为复杂,随时间(月际)、天气状况(阴天、晴天和雨天)和土层深度(5、10、20、40和100 cm)的变化而变化,其中,生长季期间和不同月际间(5—10月)、表层土壤温度(0~10 cm)与树干液流均呈显著正相关,深层土壤(20~100 cm)则相反;生长季前(5月)和生长季末期(10月),树干液流随土壤水分的增多而增加,生长季期间(6—9月)则相反,树干液流随土壤含水量的增加而减弱。  相似文献   

4.
2012年4—10月,应用TDP热扩散探针技术,对生长季晋西黄土区次生林主要组成树种辽东栎和山杨树干液流速率进行测定,结合同步测定的空气相对湿度(RH)、太阳光合有效辐射(PAR)、大气温度(T)和土壤含水量(θ)等环境因子,分析液流速率对环境因子的响应.结果表明: 5、6月,影响辽东栎和山杨树干液流速率的主要气象因子是空气饱和水汽压差(VPD)和PAR;7、8月,影响辽东栎和山杨树干液流速率的主要气象因子是VPD和T.除气象因子外,土壤水分条件也是驱动液流变化的重要因素,降雨后θ的增加能够有效影响液流速率,5、6、7、8月,辽东栎降雨后的平均液流速率比降雨前分别增大了28.3%、48.6%、16.9%、11.5%,山杨在6、7、8月降雨后的平均液流速率比降雨前分别增大了0.6%、4.5%、2.3%,辽东栎的增幅明显大于山杨.辽东栎液流速率对降雨后土壤含水量变化更敏感,表现出更高的耗水能力和需水要求,而降雨后山杨的耗水策略仍较保守.液流速率和VPD的关系可以采用指数饱和曲线函数拟合,降雨前后拟合参数的变化说明土壤水分条件的改善能够促进液流速率更快速地到达饱和值.  相似文献   

5.
常学向  赵文智  张智慧 《生态学报》2007,27(5):1826-1837
利用SF-300热脉冲树干液流仪,连续观测了生长季节荒漠区固沙植物梭梭树干液流速率,研究了荒漠区固沙植物梭梭林木的耗水量及其与气象因子的关系。结果表明:在生长季节,梭梭树干液流速率昼夜变化小;不同的生长日,梭梭树干液流速率介于(5.9±0.7)~(14.5±3.6)g cm-2h-1;观测期间,梭梭平均日耗水量为(0.3±0.2)mm,生长季节单株木耗水量达494mm。树干液流速率对气象因子均有一定程度的响应,且在不同时间的影响程度不同。日耗水量与林冠投影面积、基径、基径的平方乘以树高的积、边材厚度和边材面积呈线性关系。  相似文献   

6.
陈彪  陈立欣  刘清泉  刘平生  张志强 《生态学报》2015,35(15):5076-5084
作为我国半干旱地区重要的造林绿化树种之一,樟子松在城市林业建设中被广泛使用,研究樟子松在半干旱地区城市环境下的蒸腾耗水及其环境响应对于城市森林建设具有重要的理论意义和应用价值。从2012年8月至10月,以位于内蒙古呼和浩特市树木园内的30年生樟子松为研究对象,按照其径阶分布,选定8株样木,采用热扩散探针法对其树干边材液流进行了连续动态监测,并采用小型自动气象站和土壤水分传感器同步连续测定小气候因子与土壤含水量动态变化。结果表明:在不同天气条件下,樟子松树干液流密度日变化存在差异,晴天时液流密度曲线表现为单峰曲线,且液流密度较大,阴天与雨天液流密度相对较小;液流密度的大小与供试树木胸径无显著相关关系(P0.05);太阳辐射(r=0.731,P0.01)和大气饱和水汽压亏缺(VPD)(r=0.877,P0.01)是影响樟子松蒸腾的主要因子,风速与液流密度极显著相关(P0.01),但相关系数仅为0.518;土壤水分并未显著影响液流密度(r=-0.071,P0.05)。以太阳辐射Ra、VPD作为自变量建立的模型能够分别解释樟子松68%、71%的液流变化。  相似文献   

7.
黄土高原苹果园土壤水分及水分生产力模拟   总被引:1,自引:0,他引:1  
以长武地区为例,采用WinEPIC模型模拟1980—2018年间黄土高原旱作苹果园地深剖面土壤水分和水分生产力变化动态,以期为该区苹果产业的可持续发展提供科学依据。结果表明: 长武地区苹果园年均产量为26.37 t·hm-2,年均蒸散量为673.66 mm,年均水分生产力为4.07 kg·m-3,成龄果树水分胁迫天数主要受降雨量影响,果树生长后期年均胁迫天数为46.46 d,深层土壤含水量最早于9龄果树开始接近凋萎湿度。长武地区苹果整个生长周期内供水量是对果园产量影响最大的因素,深层土壤有效水含量降低是制约果树生长中后期产量提高的最主要因素,在降水不足的年份果树会利用更深层土壤水分。当深层土壤可利用水分较少时,过多的降水并未被果树利用,而是转化为浅层土壤水分蒸发。对于成龄果树在年供水量低于500 mm或高于700 mm时都会造成产量的下降。针对不同生长时期的果园,在不同的降雨年份应该调整果园水分管理策略,可以通过补充灌溉、拦蓄集聚雨水、覆盖、修剪枝条等管理措施,降低果树非生产性耗水及自身奢侈性耗水,延缓深层土壤干层的出现时间,在保证果树生长的同时避免水资源的浪费。  相似文献   

8.
2012年7-10月,采用液流测定系统监测了位于浙江省开化县的毛红椿人工林上下坡位的树干液流,并同步监测生态环境因子,分析了毛红椿人工林树干液流与土壤含水量、温度和水势等环境因子的关系.结果表明: 研究区上、下坡位树干液流日变化均呈典型的“昼高夜低”单峰曲线;下坡位毛红椿树干液流速率平均值显著高于上坡位;上坡位土壤温度显著高于下坡位,而下坡位土壤含水量和土壤水势显著高于上坡位;下坡位土壤含水量和土壤水势是影响毛红椿树干液流速率的主要因子,而上坡位土壤温度和土壤水势对毛红椿树干液流速率有较大影响.  相似文献   

9.
采用LI-6200型植物光合测定系统和LI-1600型稳态气孔计,对黄土半干旱区刺槐、侧柏的净光合速率、羧化效率、蒸腾速率、水分利用效率、气孔导度、气孔阻力、胞间CO2浓度和气孔限制值与土壤含水量的关系进行研究;并对林地土壤水分有效性及生产力进行分级与评价.结果表明,刺槐与侧柏林地土壤含水量分别在4.5%和4.0%以下为“无效水”;土壤含水量在4.5%~10.0%和4.0%~8.5%阈值内属于“低产低效水”;在10.0%~13.5%和85%~11.0%阈值内为“中产高效水”;在13.5%~17.0%和11.0%~16.0%阈值内属于“高产中效水”;在17.0%~19.0%和16.0%~19.0%阈值内为“中产低效水”;土壤含水量在19.0%以上也属于“低产低效水”。  相似文献   

10.
2019年4月1日—10月31日, 利用Granier热扩散探针监测银杏树干液流密度的动态变化, 并同步观测环境因子的变化, 分析银杏蒸腾耗水规律及其对环境因子的响应。结果表明: (1) 银杏树干液流启动于4月10日左右, 结束于10月20日左右, 前后历时194天左右, 树干液流密度表现为晴天>阴天>雨天, 晴天条件下树干液流密度日变化呈典型的单宽峰曲线, 阴天或雨天条件下, 由于太阳辐射的波动, 树干液流日内变化波动较大。(2) 生长季内单株日蒸腾耗水量均值为(6.16±3.32) kg·d–1, 4—10月的单株日蒸腾耗水量分别为(2.40±1.50)、(7.64±1.35)、(7.78±2.03)、(8.34±2.35)、(8.38±3.05)、(6.64±2.03)、(2.39±1.89) kg·d–1; 监测时间内, 林分蒸腾耗水总量为244.81 mm, 小于降雨总量(534.86 mm), 但季节性供水不足问题依然存在, 6月最为严重。(3) 不同时间尺度条件下, 影响树干液流的生态因子发生显著变化, 小时尺度上, 影响液流速率的关键因子为征能量水平的太阳总辐射(Rs)和综合反映空气温度和空气湿度的饱和水汽压差(VPD), 而月尺度上, 银杏单株日蒸腾耗水量月变化主要与气孔导度、土壤温度呈现极显著正相关。(4) 环境因子与树干液流密度相关程度存在季节性差异, Rs和VPD在生长旺盛期与树干液流密度相关性最高, 生长初期相关性最低; 土壤湿度在生长季初期对树干液流形成极显著胁迫。  相似文献   

11.
华北落叶松夜间树干液流特征及生长季补水格局   总被引:7,自引:0,他引:7  
在宁夏六盘山北侧半干旱区的叠叠沟小流域,采用热扩散探针法在2011年生长季监测了华北落叶松(Larix principisrupprechtii)人工林的树干液流速率,分析了夜间树干液流和补水量的变化特征及与气象、土壤水分等环境因子的关系.结果表明:树干液流速率日变化表现为典型的单峰宽峰曲线,且整个生长季均存在微弱的夜间液流,一般表现为逐渐减小,特别是在晴天,且晴天的变幅显著大于雨天.除生长季中期雨天夜间液流平均速率显著高于晴天,生长季初期及末期雨天与晴天的差异并不显著.生长季内,夜间树干补水总量为11.03 mm,占总蒸腾量的7.22%;5月份的树干补水量最大(4.19mm),其他月份的树干补水量明显减小,在0.9-1.7mm的范围波动.但不同月份间的补水贡献率存在明显差异,表现为生长季末期(9、10月)>初期(5月)>中期(6-8月).相关分析表明,日补水量与各气象因子关系不大,仅与降水量显著正相关(P<0.05),与土壤含水率、日间蒸腾量、日蒸腾总量极显著正相关(P<0.01).夜间补水的月蒸腾贡献率与月均土壤含水率、月均气温、月均日间蒸腾量、月总蒸腾量等显著相关(P<0.05);而夜间补水的日蒸腾贡献率与日最高气温、日均气温、日间蒸腾量、日均饱和水汽压差、日总蒸腾量、日均太阳辐射强度、日最低气温、日均空气相对湿度、日降水量、土壤含水率等极显著相关(P<0.01),经逐步回归分析建立了日补水量蒸腾贡献率与环境因子的多元线性模型.  相似文献   

12.
北京山区元宝枫夜间液流活动特征及影响因素   总被引:3,自引:0,他引:3  
树木夜间会维持部分气孔开放,从而能够在一定环境驱动因子的情况下进行夜间蒸腾。夜间液流作为储存水的重要来源,能够补充植物白天的水分亏缺,使其恢复水分储备,对植物生长发育有重要意义。采用TDP热探针法测定了位于八达岭林场的元宝枫树干液流密度,同步监测了主要环境因子,以深入揭示树木夜间蒸腾耗水规律和植被应对环境胁迫的调控机制,为山区植被建设、森林健康经营和挑选节水树种提供理论依据。结果表明:以0:00为界区分前半夜和后半夜,元宝枫夜间液流速率前半夜较后半夜活跃,且前半夜夜间累积液流量占夜间累积液流量的53.85%—64.10%,而后半夜夜间累积液流量占夜间累积液流量的35.9%—46.15%。5月的夜间累积液流量最大,平均夜间液流通量为5月6月8月9月7月。存在水分胁迫的条件下降雨之后夜间液流会增大,而当土壤水分条件较好,土壤水分不再是夜间液流的限制因子时,夜间液流通量并不高。不同树木形态的夜间液流通量有显著差异,在一定范围内,胸径树高冠幅越大的样木,夜间液流通量越大。用于夜间蒸腾的夜间液流通量与饱和水汽压差、温度、空气相对湿度、风速相关,其中夜间蒸腾存在于前半夜,表现为前半夜夜间液流通量与环境因子的相关性相较后半夜相关性较为显著,后半夜则以补水为主,补水量取决于土壤含水量和日蒸腾强度。存在干旱胁迫的条件下,夜间液流既用于夜间蒸腾,又有一部分用来补水;而土壤水分条件好时夜间液流则主要用于补水,此时夜间树干液流与环境因子相关性不高。元宝枫夜间液流通量的日蒸腾贡献率5、6月份大于7、8月份,即干季比湿季贡献率更高。夜间液流通量的日蒸腾贡献率与白天总蒸腾量相关性较高,并与累积太阳辐射成负相关。  相似文献   

13.
In the present study, the heat pulse technique was applied to investigate the stem sap flow of Populus euphratica in a desert riparian forest in an extreme arid region from April to October 2003 and from May to October 2004. The experimental sites were in Qidaoqiao (101 °10′ E, 41°59′ N) and Bayantaolai farm (101°14′ E, 42°01′ N) in Ejina county, in the low reaches of the Heihe River, China. The results indicated that the diurnal change in the velocity of sap flow showed minor fluctuations. At night, the rising of sap flow could be observed in the main tree species because of root pressure. During the growing season, the maximum average velocity was observed in July, followed by August, and the same velocity was observed in September and May; the minimum velocity was observed in October. The transpiration from June to August during the growing season accounted for approximately 70% of the annual total transpiration. The sap flow velocity of P. euphratica trees of different ages could be arranged in the order: 15 yr 〉 25 yr 〉 50 yr. Sap flow velocity was closely related to changes in micrometeorological factors, with average sap flow velocity showing a significant linear correlation with net radiation, air temperature and relative humidity.  相似文献   

14.
扎龙芦苇湿地生长季的甲烷排放通量   总被引:3,自引:0,他引:3  
为研究高寒地区天然淡水芦苇湿地的甲烷排放特征,采用静态箱-气相色谱法,测定了扎龙不同水位芦苇湿地生长季的甲烷排放通量.结果表明:观测期内,扎龙芦苇湿地甲烷排放通量平均为7.67 mg·m-2·h-1(-21.18~46.15 mg·m-2·h-1),其中深水区(平均水深100 cm)和浅水区(平均水深25 cm)的平均甲烷排放通量分别为5.81和9.52 mg·m-2·h-1,排放峰值分别出现在8月和7月,最低值均出现在10月.深水区夏季(6-7月)的甲烷排放通量显著低于浅水区,而春(5月)、秋(8-10月)季节显著高于浅水区.生长季甲烷排放通量的变化为夏季>秋季>春季;昼夜排放量为12:00和14:00最高,0:00最低.温度和水位是高寒地区淡水芦苇湿地甲烷排放通量变化的主要影响因子.  相似文献   

15.
A field experiment on olive trees (Olea europaea L.) was designed with the objective to search for an optimum irrigation scheduling by analyzing the possible effects of deficit irrigation. Treatments were: a non-irrigated control (rainfed) and three treatments that received seasonal water amount equivalent to 33 and 66% of crop evapotranspiration (ETC) in the period August–September (respectively 33II and 66II), and 66% of (ETC) from late May to early October (66I-II). Atmospheric evaporative demand and soil moisture conditions were regularly monitored. Irrigation effects on plant water relations were characterized throughout a growing season. Whole-plant water use, in deficit irrigated (66I-II) and rainfed olive trees, was determined using a xylem sap flow method (compensation heat-pulse technique). The magnitude of variations in water use and the seasonal dynamic of water relations varied among treatments, suggesting that olive trees were strongly responsive to both irrigation amount and time. Physiological parameters responded to variations in tree water status, soil moisture conditions and atmospheric evaporative demand. All measurements of tree water status were highly correlated with one another. There was a considerable degree of agreement between daily transpiration deduced from heat-pulse velocity and that determined by calibration using the water balance technique. Deficit irrigation during the whole summer (66I-II) resulted in improved plant water relations with respect to other watering regimes; while, severe regulated deficit irrigation differentiated only slightly 33II treatment from rainfed plants. Nevertheless, regulated deficit irrigation of olive trees after pit hardening (66II) could be recommended, at least in soil, cultivar and environmental conditions of this study.  相似文献   

16.
Heat balance sap flow gauge for small diameter stems   总被引:4,自引:1,他引:3  
Applying heat balance sap flow gauges to plant stems <10 mm in diameter has been difficult because a miniature design is needed that can be attached to a range of stem geometries. This report presents a modified gauge design for use on small plant stems of irregular geometry and shows results from Glycine max with stem diameters of 3–4 mm. The gauge was evaluated on container-grown plants by comparing gauge measurements of flow to gravimetric estimates of transpiration. Experiments were conducted in the laboratory and greenhouse, using artificial and natural lighting, respectively. Laboratory comparisons of gauge versus gravimetric water loss measurements indicated that the instrument was accurate to within ±5% when soil water was not limiting. Similar results were obtained from greenhouse tests except when soil water availability was low and cumulative gauge estimates became 30–45% less than gravimetric measurements. Differences may have reflected reduced plant water uptake or errors in sap flow estimates associated with low flow rates. Gauge accuracy was not improved by including the rate change in heat storage (S) in the flow calculations because S was always less then 3% of the total heat balance. Relationships between system temperature and sap flow rate suggested a diagnostic test for determining optimum power input. A time constant of 15 s indicated potential application in many agronomic and physiological studies.  相似文献   

17.
白岩  朱高峰  张琨  马婷 《生态学报》2015,35(23):7821-7831
针对西北干旱区绿洲经济作物葡萄树冠层蒸腾及蒸散发特征的相关问题,在甘肃省敦煌市南湖绿洲开展无核白葡萄树液流速率及蒸散发观测试验,采用基于热平衡原理的包裹式茎流计,详细分析了典型生长季7—9月份葡萄树蒸腾耗水规律,使用"单位叶面积上的平均液流速率SF×叶面积指数LAI"的方法,实现了从单株到林分冠层蒸腾的尺度扩展,并通过与涡动相关技术所测蒸散发数据对比,详细研究了葡萄地冠层蒸腾及蒸散发规律。结果表明:典型生长季中葡萄树液流速率日变化为单峰型曲线,日均耗水量从2.76 kg到10 kg不等,胸径越大的葡萄树日均耗水量越大;冠层蒸腾及蒸散发日变化曲线亦为单峰型,白天8:00—12:00与17:00—20:00期间,葡萄冠层蒸腾与蒸散发曲线均比较吻合,该时间段葡萄地蒸散发绝大部分来源于葡萄冠层蒸腾,而12:00—17:00之间由于午后太阳辐射强烈土壤蒸发量增加,葡萄蒸散发大于冠层蒸腾;典型生长季3个月中,葡萄冠层蒸腾量的变化范围在1.88—8.12 mm/d之间,日均冠层蒸腾量为6.12 mm/d,蒸散发在1.74 mm/d至10.78 mm/d之间,日均蒸散发量为7.13 mm/d;日均土壤蒸发量约为1.01 mm/d,只占总蒸散发量的14.2%,日均冠层蒸腾占日均蒸散发的比重达到85.8%,说明该生长阶段冠层蒸散发以作物蒸腾为主。  相似文献   

18.
When soil moisture is heterogeneous, sap flow from, and ABA status of, different parts of the root system impact on leaf xylem ABA concentration ([X-ABA]leaf). The robustness of a model for predicting [X-ABA]leaf was assessed. 'Two root-one shoot' grafted sunflower (Helianthus annuus L.) plants received either deficit irrigation (DI, each root system received the same irrigation volumes) or partial rootzone drying (PRD, only one root system was watered and the other dried the soil). Irrespective of whether relative sap flow was assessed using sap flow sensors in vivo or by pressurization of de-topped roots, each root system contributed similarly to total sap flow during DI, while sap flow from roots in drying soil declined linearly with soil water potential (Psisoil) during PRD. Although Psisoil of the irrigated pot determined the threshold Psisoil at which sap flow from roots in drying soil decreased, the slope of this decrease was independent of the wet pot Psisoil. Irrespective of whether sap was collected from the wet or dry root system of PRD plants, or a DI plant, root xylem ABA concentration increased as Psisoil declined. The model, which weighted ABA contributions of each root system according to the sap flow from each, almost perfectly explained [X-ABA] immediately above the graft union. That the model overestimated measured [X-ABA]leaf may result from changes in [X-ABA] along the transport pathway or an artefact of collecting xylem sap from detached leaves. The implications of declining sap flow through partially dry roots during PRD for the control of stomatal behaviour and irrigation scheduling are discussed.  相似文献   

19.
于2006-2008年主要生长季节,利用热扩散技术连续测算得到了华北土石山区30年生栓皮栎人工林液流量(SF),并结合同步测定的太阳辐射(Ra)、空气温度(Ta)、饱和水汽压亏缺(VPD)、风速(V)和降雨量(P)等气象因子、水面蒸发(EV0)及叶面积指数(LAI)等因子,分析了栓皮栎液流对不同时间尺度气象因子及水面蒸发的响应规律,探索建立长时间尺度水面蒸发与树干液流之间的关系模型。试验结果表明:(1)在主要生长季(4—9月份)期间,栓皮栎单株液流与同期测定的Ra、Ta、VPD和V等气象因子间均存在着较强的相关性。时间尺度为10min、1h、d、旬、月时,决定系数分别为0.388、0.482、0.539、0.654和0.812。说明随着时间尺度的增加,相关性越强;在不同时间尺度下,影响SF的最主要气象因子均为Ra。月SF与月Ra变化趋势的同步性尤为明显。(2)日尺度和月尺度上EV0与SF之间具有很好的线性关系,决定系数分别为0.578和0.876,比同时期、相等样本数条件下SF与Ra、Ta、VPD、V多元线性拟合的决定系数分别高3.6%和3.9%。(3)2006、2007、2008年生长季节降雨量分别为464.8、393.3mm和315.0mm,栓皮栎单株液流分别为2024.1L、1739.2L和1688.7L,年际间SF变化趋势与降雨量存在一定的一致性。  相似文献   

20.
Daily sap flow rate was determined in five Mediterranean species (Pinus halepensis, Quercus coccifera, Pistacia lentiscus, Erica multiflora, and Stipa tenacissima) under two slope aspects (north- and south-facing) in a semi-arid area (Alicante, SE Spain). Sap flow velocity was measured in January, May, August and October of two consecutive years (1998 and 1999) using the stem heat balance (SHB) method. Our results have demonstrated the effects of global radiation (R g), vapour pressure deficit (VPD) on the sap flow velocity per unit of leaf area. Mean daily sap flow rates (Q md) showed values between 0.001 and 0.202 g H2O cm−2 leaf area day−1. Q md values were higher on the south-facing slope than on the north-facing slope. In most species, the Q md was higher in 1998 than in 1999 due to the higher soil water content, temperature and VPD in 1998. In all five species, a decrease in predawn leaf water potential was accompanied by a decrease in mean daily sap flow rates; nevertheless, the responses of the five species to water deficit conditions were different. In this context, we have linked the drought avoidance mechanisms of the different species through the combined use of daily sap flow rate and predawn leaf water potential under different water deficit conditions. We conclude that Pinus halepensis, Pistacia lentiscus and Erica multiflora show water-savers mechanisms to cope with drought, while Quercus coccifera and Stipa tenacissima show water-spenders mechanisms.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号