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Leaf Tissue Water Relations Are Associated with Drought-Induced Leaf Shedding in Tropical Montane Habitats
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作者 M. A. Sobrado 《American Journal of Plant Sciences》 2015年第13期2128-2135,共8页
In tropical montane areas, water limitation is a common occurrence, and both pioneer and forests species experience water stress during the dry season. Adjustments of leaf area during periods of drought allow for the ... In tropical montane areas, water limitation is a common occurrence, and both pioneer and forests species experience water stress during the dry season. Adjustments of leaf area during periods of drought allow for the maintenance of the water supply and physiological functions of the remaining leaves. Here, we compared leaf blade water relations between pioneer and forest tree species. Leaf pressure-volume (P-V) curves were determined from samples taken prior to the dry season, to assess how leaves of the different species were adapted to prepare for and endure water deficits. The following parameters were calculated: osmotic potential at full (Ψπ(100)) and zero (Ψπ(0)) turgor, relative water content at zero turgor (RWC0), volumetric elastic modulus (&#949) as well as apoplasm (A) and symplasm (S) water content and their ratio (A/S). Although the pioneer and forest species occupied contrasting habitats, and both groups were clearly differentiated with respect to their water transport capability and water use efficiency, their leaf tissue water relations showed clear differences across species but not between the groups. Some species underwent leaf shedding and accumulated xylem embolisms during the dry season, and their leaves had high cell elasticity. Consequently, these species presented large cell volume changes with turgor loss. Conversely, species with rigid leaves were able to undergo lower leaf turgor with only small changes in cell volume during drought, which might aid to preserve leaf cell function, maintain water uptake, and consequently avoid accelerated leaf senescence and shedding during the dry season. 展开更多
关键词 Apoplasm Cell volume Reduction DROUGHT ADAPTATIONS Drought-Induced Leaf-Sheding Forest Species Pioneer Trees Pressure-volume Analysis Rigid Cells Symplasm TROPICAL Forests volu-metric Elastic Modulus Water Relations
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THG400卧式加工中心误差分析与建模 被引量:1
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作者 杨海卉 《安徽科技学院学报》 2013年第3期37-41,共5页
分析THG400卧式四轴加工中心机床结构,基于多体系统理论建立卧式四轴加工中心的综合空间误差模型,分析了机床某相邻体间变换特征矩阵运算方法;给出了机床综合空间误差模型实际应用的基本思路,所建立的综合空间误差模型能全面准确地为数... 分析THG400卧式四轴加工中心机床结构,基于多体系统理论建立卧式四轴加工中心的综合空间误差模型,分析了机床某相邻体间变换特征矩阵运算方法;给出了机床综合空间误差模型实际应用的基本思路,所建立的综合空间误差模型能全面准确地为数控机床误差补偿的实际应用提供理论基础。 展开更多
关键词 误差建模 卧式四轴加工中心 多体系统理论 综合空间误差模型
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改性沥青混合料配合比设计方法探讨
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作者 郭红兵 赵新坡 《陕西交通职业技术学院学报》 2011年第4期21-25,共5页
分析了成型方法、压实温度对改性沥青混合料体积参数的影响,以及体积参数的测试计算方法对配合比设计参数的影响,结果表明,旋转压实更有利于混合料的密实成型,且其搓揉成型方法更接近现场压实情况;压实温度影响着改性沥青混合料设... 分析了成型方法、压实温度对改性沥青混合料体积参数的影响,以及体积参数的测试计算方法对配合比设计参数的影响,结果表明,旋转压实更有利于混合料的密实成型,且其搓揉成型方法更接近现场压实情况;压实温度影响着改性沥青混合料设计结果,且对不同改性沥青混合料的影响程度有一定差别;矿料岩性不同,不同的测试或计算最大理论相对密度的方法对改性沥青混合料体积设计参数影响非常明显。 展开更多
关键词 改性沥青混合料 配合比设计 成型方式 成型温度 体积参数
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基于多体系统运动学理论的坐标测量机误差自动建模 被引量:8
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作者 粟时平 李圣怡 《机械设计与制造》 2002年第4期63-65,共3页
研究分析了运用多体系统运动学理论对复杂机械如坐标测量机进行误差建模的基本原理,介绍了误差自动建模过程。以FXYZ型立式三坐标测量机为例进行了误差建模,给出了空间误差模型具体数学表达式。理论分析和实际应用显示所述方法很好地解... 研究分析了运用多体系统运动学理论对复杂机械如坐标测量机进行误差建模的基本原理,介绍了误差自动建模过程。以FXYZ型立式三坐标测量机为例进行了误差建模,给出了空间误差模型具体数学表达式。理论分析和实际应用显示所述方法很好地解决了误差建模的通用性问题,为精度分析和误差补偿等提供了一个理想的误差建模方式。 展开更多
关键词 坐标测量机 空间误差 误差建模 多体系统 运动学
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