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    A STUDY ON DATA ACQUISITION AND PROCESSING SYSTEM FOR MEASURING TURBINE BLADE TEMPERATURE
    涡轮叶片温度测量数据采集处理系统的研究
    Defruiting treatment tend to increase leaf temperature 0.7-2.1 C and decrease transpiration rate of leaves.
    另外,去掉果实导致叶片的温度升高,大约升高0.7—2.1℃,蒸腾速率明显降低,然而叶片的细胞间隙CO_2浓度不发生显著的变化。
    The diurnal characteristics of photosynthetic rate,the correlation between the net photosynthetic rate and some physio-ecological factors,the effect of different NP fertilizer and soil moisture levels on the photosynthetic rate of Tulemeen and Boysen leaves were compared.
    这与偏相关分析结果:图拉名净光合速率与叶片温度极显著负相关、气孔导度极显著正相关以及百胜净光合速率与水汽压极显著负相关、气孔导度极显著正相关是一致的。
    It also calculated the temperature field of different structure of lamilloy blade, and analyzed the influence on the temperature field of impingement hole and pin-fin hole geometrical parameter in steady condition.
    并且应用该程序对不同结构层板冷却叶片的稳态及非稳态温度场分别进行了计算,获得了整个叶片在稳定状态以及非稳定状态不同时刻的温度分布情况,并分析了稳定状态时,冲击孔、扰流柱以及气膜孔几何尺寸对整个叶片温度场的影响;
    1, Kamei and Jinchong 25~30℃, Owari about 25℃, Bonanza navel and Cutter valencia 25~35℃.
    适宜的叶片温度指标是国庆1号、龟井和锦橙25~30℃,尾张约25℃、脐橙和夏橙25~35℃;
    The analyses of backward eliminated variable indicate that the number of main factors which restrict photosynthetic rate of seedlings decrease with the increase of water supply.
    向后剔除变量分析表明 ,随着施水量的增加 ,限制幼苗净光合速率的主要因子逐渐减少。 当充分施水时 ,幼苗主要受到光合有效辐射和叶片温度的限制。
    The photosynthetic rate is closely related to light intensity, slightly to leaf temperature and relative humidity
    光合速率与生态因子存在一定的相关性 ,其中光合速率与光照强度的相关系数最大 ,与相对湿度和叶片温度的相关系数较小。
    According to the regression analysis, the sequence of correlation between each ecophysiological factor and Pn is Sr>CO> Tc>RH >Tl>WE>Tr>PAR.
    经相关分析发现 ,各生理生态因子与净光合速率 (Pn)的相关性大小排序为 :气孔阻抗 (Sr) >二氧化碳浓度 (CO2 ) >叶室温度 (Tc) >相对湿度 (RH) >叶片温度 (Tl) >水分利用效率 (WE) >蒸腾速率 (Tr) >光合有效辐射 (PAR)。
    Both photons flux density and leaf temperature had significant positive correlation with transpiration at 8∶30 am, but relative humidity had significant positive correlation with transpiration at 8∶30 am or at 10∶30 am, and at any other time they were not significantly correlated.
    早8∶30光量子通量密度和叶片温度与蒸腾作用均呈极显著正相关,相对湿度在早8∶30和上午10∶30都呈极显著正相关,其他时间均呈不显著正相关。
    Photons flux density were negatively correlated with transpiration at 10∶30 am or at 14∶30 pm, but at 12∶30 pm or 18∶30 pm, there was no significant correlation except that leaf temperature was negatively correlated with transpiration at 10∶30 am, they were not significantly correlated at any other time.
    在上午10∶30和14∶30时,光量子通量密度与蒸腾作用呈负相关,中午12∶30和晚上18∶30呈不显著正相关; 叶片温度在上午10∶30与蒸腾作用呈负相关外,其他时间均呈不显著正相关。
    No distinct changes were observed in the variable fluorescence(F_v),photochemical quenching coefficient(qP),non-photochemical quenching coefficient(qN),and quantum yield of PSⅡ electron transport(PSⅡ) between HH treatment and control when the leaf temperature was 25~35 ℃.
    结果表明 ,叶片温度在 2 5~ 35℃之间 ,热锻炼苗和对照苗叶片叶绿素可变荧光 (Fv)、光化学猝灭(qP)、非光化学猝灭 (qN)、PSⅡ光化学效率 (PSⅡ)没有明显的变化 ;
    THE HEATING EFFECTS OF IRRADIANCE ON RICE LEAF TEMPERATURE AND ITS INFLUENCE ON THE PHOTOSYNTHETIC RATE
    辐射增温效应对水稻叶片温度及光合速率的影响
    A Unique Measurement Technology for Turbine Blade Temperature Field
    涡轮叶片温度分布新式测量技术
    The Relationship of Leaf Temperature to Photosynthetic Parameters and Water Use Efficiency and the Responses to Nitrogen of Different Drought-tolerance Spring Wheat Cultivars
    氮素对不同抗旱性春小麦叶片温度、气体交换和WUE关系的影响
    Study on Heredity of Leaf Temperature and Relative Leaf Characters of Wheat
    小麦叶片温度遗传规律以及与叶片结构相关性的研究
    Therefore, it is reasonable that silicon in higher plants could reduce the temperature when the plant is under higher thermal stress.
    根据辐射理论,辐射表面发射相同电磁辐射能通量时,辐射系数越大者,物体表面温度越低,从而为植物中硅能够在高温胁迫叶片强烈蒸腾产生生理干旱时降低叶片温度找到理论根据;
    The following results were obtained:Fruit removal significantly decreased net photosynthesis rate (Pn), stomatal conductance (Gs) and transpiration rate (E), but significantly increased leaf temperature (T_(Leaf)) at midday as compared with '+ fruit' in cv. 'Okubo' and 'Yanfengyihao' peach.
    对于大久保和艳丰1号桃,在7月和8月的光合日变化中,去果处理源叶Pn、气孔导度(Gs)和蒸腾速率(E)低于留果对照,而叶片温度(T_(Leaf))高于留果对照,这一现象在晴天的中午前后一段时间里表现更为明显。
    (3) Study on the uniformity of the Burley tobacco by casing process. Improve the internal construction of casing cylinder, decrease the proportion of the leaf themselves sticking together;
    (3)白肋烟加里料均匀性研究,改造白肋烟加料筒内部结构,增设筒内壁刮板,调整喷嘴角度与数量,增加叶片温度,使白肋烟加里料均匀,加料烟叶水份均匀,减少了叶片成团现象;
    4 The diurnal variation of Pn in hebei-walnut was influenced by light intensity, leaf temperature and intercellular CO2 concentration.
    3.影响河北核桃净光合速率日变化的主要因子是光合有效辐射、叶片温度及胞间CO_2浓度。
    The seasonal variation of Pn in English walnut was affected by transpiration rate, chlorophyll content, leaf temperature and intercellular CO2 concentration.
    影响普通核桃净光合速率季节变化的主要因子是蒸腾速率、叶绿素含量、叶片温度及胞间CO_2浓度。
 

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