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31.
For ecosystem modelling of the Boreal forest it is important to include processes associated with low soil temperature during spring‐early summer, as these affect the tree water uptake. The COUP model, a physically based SVAT model, was tested with 2 years of soil and snow physical measurements and sap flow measurements in a 70‐year‐old Scots pine stand in the boreal zone of northern Sweden. During the first year the extent and duration of soil frost was manipulated in the field. The model was successful in reproducing the timing of the soil warming after the snowmelt and frost thaw. A delayed soil warming, into the growing season, severely reduced the transpiration. We demonstrated the potential for considerable overestimation of transpiration by the model if the reduction of the trees' capacity to transpire due to low soil temperatures is not taken into account. We also demonstrated that the accumulated effect of aboveground conditions could be included when simulating the relationship between soil temperature and tree water uptake. This improved the estimated transpiration for the control plot and when soil warming was delayed into the growing season. The study illustrates the need of including antecedent conditions on root growth in the model in order to catch these effects on transpiration. The COUP model is a promising tool for predicting transpiration in high‐latitude stands. Copyright © 2006 John Wiley & Sons, Ltd. 相似文献
32.
Ashley Gerard Davies Dennis L. Matson Glenn J. Veeder Torrence V. Johnson Diana L. Blaney 《Icarus》2005,176(1):123-137
The modeling of thermal emission from active lava flows must account for the cooling of the lava after solidification. Models of lava cooling applied to data collected by the Galileo spacecraft have, until now, not taken this into consideration. This is a flaw as lava flows on Io are thought to be relatively thin with a range in thickness from ∼1 to 13 m. Once a flow is completely solidified (a rapid process on a geological time scale), the surface cools faster than the surface of a partially molten flow. Cooling via the base of the lava flow is also important and accelerates the solidification of the flow compared to the rate for the ‘semi-infinite’ approximation (which is only valid for very deep lava bodies). We introduce a new model which incorporates the solidification and basal cooling features. This model gives a superior reproduction of the cooling of the 1997 Pillan lava flows on Io observed by the Galileo spacecraft. We also use the new model to determine what observations are necessary to constrain lava emplacement style at Loki Patera. Flows exhibit different cooling profiles from that expected from a lava lake. We model cooling with a finite-element code and make quantitative predictions for the behavior of lava flows and other lava bodies that can be tested against observations both on Io and Earth. For example, a 10-m-thick ultramafic flow, like those emplaced at Pillan Patera in 1997, solidifies in ∼450 days (at which point the surface temperature has cooled to ∼280 K) and takes another 390 days to cool to 249 K. Observations over a sufficient period of time reveal divergent cooling trends for different lava bodies [examples: lava flows and lava lakes have different cooling trends after the flow has solidified (flows cool faster)]. Thin flows solidify and cool faster than flows of greater thickness. The model can therefore be used as a diagnostic tool for constraining possible emplacement mechanisms and compositions of bodies of lava in remote-sensing data. 相似文献
33.
A calculation formula on spherical pattern of Qinghai-Tibet plateau moving model is established. Tibet massif moves norward by east in speed of 28 mm/a, Ganshu-Qinghai massif moves to northeast in speed of 15 mm/a, Qomolangma Feng moves northward by a few east in speed of 35 ~42 mm/a. The low latitude perimeter is longer than the nigh latitude perimeter. When the Tibet massif moves northward, its latitude perimeter must be contracted and the Tibet massif must move eastward by Coriolis. Coriolis force is inertial in earth rotation. It makes the fall body turning to east and the rising block turning westward. In the Northern Hemisphere, it makes the northward body turning to east and the southward block turning to west.This is the reason why the tectonic zones of western Pacific are different from those of eastern Pacific. 相似文献
34.
The influence of emergent and submerged macrophytes on flow velocity and turbulence production is demonstrated in a 140 m reach of the River Blackwater in Farnborough, Hampshire, UK. Macrophyte growth occurs in patches and is dominated by Sparganium erectum and Sparganium emersum. In May 2001, patches of S. erectum were already established and occupied 18% of the channel area. The flow adjusted to these (predominantly lateral) patches by being channelled through a narrower cross‐section. The measured velocity profiles showed a logarithmic form, with deviations attributable to topographic control. The channel bed was the main source of turbulence. In September 2001, in‐stream macrophytes occupied 27% of the channel, and overhanging bank vegetation affected 32% of the area. Overall flow resistance, described by Manning's n, showed a threefold increase that could be attributed to the growth of S. emersum in the middle of the channel. Velocity profiles showed different characteristic forms depending on their position relative to plant stems and leaves. The overall velocity field had a three‐dimensional structure. Turbulence intensities were generally higher and turbulence profiles tended to mirror the velocity profiles. Evidence for the generation of coherent eddies was provided by ratios of the root mean square velocities. Spectral analysis identified deviations from the Kolmogorov ?5/3 power law and provided statistical evidence for a spectral short‐cut, indicative of additional turbulence production. This was most marked for the submerged vegetation and, in some instances, the overhanging bank vegetation. The long strap‐like leaves of S. emersum being aligned approximately parallel to the flow and the highly variable velocity field created by the patch arrangement of macrophytes suggest that the dominant mechanism for turbulence production is vortex shedding along shear zones. Wake production around individual stems of S. emersum close to the bed may also be important locally. Copyright © 2006 John Wiley & Sons, Ltd. 相似文献
35.
本地知识基础对新兴产业知识流动的影响——以中国燃料电池产业为例 总被引:2,自引:0,他引:2
经济地理学者对于新兴产业的产生区位长期存在争论,在中美贸易战背景下,探究其区位规律既是重要的学科问题,又对国家培育新兴产业具有重要指导意义。通过梳理“区域产业分叉”和“区位机会窗口”的观点,辨析出知识流动是影响新兴产业区位的关键点;以燃料电池产业为例,结合“相关多样化”假说的观点,采用面板空间自回归模型对知识基础的具体影响进行测度,结论如下:① 北京、上海、大连是燃料电池技术创新的三大知识流动中心,各地区“增长极”城市间的强联系是当前知识流动的空间格局的基础,而地理邻近的作用并不显著;② 相关技术知识基础对知识吸收能力具有稳定且显著的积极作用,且除用工成本外的多数控制变量显著为正;而非相关技术知识基础在早期呈现显著负相关。正是由于早期不同知识基础与控制变量的不同作用,导致了既集中于发达城市、又具有一定自由度的空间格局。研究结果表明知识经济时代下,知识基础对创新的锚定效应明显,区域产业分叉出现的概率加大,区位机会窗口较难打开。③ 非相关多样化的作用会随着新兴产业技术的持续发展而产生变化,由早期的消极影响逐渐转变为积极影响,应从演化视角重新审视非相关多样化的作用。 相似文献
36.
在深入理解城市国际化内涵的基础上,以来华外国人手机国际漫游信令数据为支撑,从外国人人流联系视角构建了城市国际化水平的评价方法框架,包括外国人流动网络中心度、外国人流动联系强度、外国人国籍多样度3个方面。以长三角三省一市为研究对象进行了实证分析,结果表明:城市的国际化水平与城市的规模及等级总体上具有正相关性,但中小城市通过突出的专业特色领域在全球化中发挥重要作用,进而促进城市国际化的高水平发展。在空间格局上,长三角城市的国际化水平以上海和苏州为核心呈现“中心高、外围低”的总体趋势。但具体不同维度指标的测度结果表现出不同的特征。进一步与其他要素联系测度所得结果进行比较验证发现:城市的经济国际联系水平是影响外国人流动网络各项指标的最主要因素,交通联系则显著影响外国人流动网络中心度。 相似文献
37.
运用1996—2016年全球各国商品贸易规模的面板数据,借助探索性空间数据分析方法揭示全球地缘经济合作的空间模式,构建空间误差混合回归模型进一步解释全球地缘经济合作的空间机理,得出如下结论:① 全球地缘经济合作存在空间正相关,呈现出“核心-边缘”的空间模式,表现为板块化和多极化的发展趋势;② 全球地缘经济合作的空间依赖性受到生产要素流动与国际分工的传导与驱动,国家规模是地缘经济合作的基础因素,生产要素禀赋是地缘经济合作的内生动力,创新是地缘经济合作的引擎,政治脆弱性是地缘经济合作的壁垒,地缘经济合作的空间依赖性在创新要素跨国流动影响下趋于弱化;③ 中国需在空间上遵循“邻近国家-欧亚区域-全球范围”的三环递进原则,有层次地布局地缘经济资源,在内容上发挥规模优势和要素禀赋优势,强化科技创新国际竞争力,有差异地制定地缘经济政策,在策略上激发地缘经济对地缘政治的渗透效应,最大化地缘经济杠杆作用。 相似文献
38.
“流空间”是人文-经济地理学关注的重要议题。基于城际客运交通流数据,运用ArcGIS空间分析、城市联系强度模型等方法对长江经济带长三角、长江中游、成渝三大城市群城际客运联系网络结构特征进行刻画,结果表明:①长三角城市群城际客运联系网络以上海市为主核心,苏州、南京、杭州为次核心,通过核心城市向外延伸的交通轴线组成相互之间联系紧密的城市网络,西部与南部地区的联系相对较弱;长江中游城市群城际客运联系网络以武汉、长沙、南昌三个省会城市为核心节点,周边次中心城市与其省会交通联系紧密,但城市间跨省联系较弱,本省城市仅与另外两个省会城市存在突出的向心性联系;成渝城市群高等级联系网络大多指向成都、重庆主城区,次级区域中心城市发育不足,成渝城市主轴线在强交通联系推动下发育成型,但川渝接壤地区的城际客运联系存在“断层”。②长江经济带三大城市群在网络化演化进程中,具有城市群“等级-网络”的基本演化特征,其中成渝城市群、长江中游城市群仍处于“核心-边缘”的双核或三核结构,长三角城市群已出现多核网络化发展趋势。③高速铁路作为新兴要素流,对公路、普通铁路等传统要素流具有明显的替代效应,增强了三大城市群核心城市向外延伸的轴线联系,是驱动城市群城际客运联系网络结构演变的新动力。 相似文献
39.
基于多维流视角,运用GIS及社会网络分析方法,对比分析云南省旅游经济流、客流、信息流、资金流的网络结构差异特征及相互影响作用机制。研究表明:云南省供需两侧旅游流反向发展态势明显,旅游流网络异质演变特征明显,流量水平趋高,而流质水平偏低。旅游经济流发展未能随着旅游客流和信息流的发展而增强,网络密度偏低且长期存在旅游经济发展孤点,旅游经济合作交流不足。各州市在旅游经济流网络中“零和竞争”的偏利非共生发展态势,使得旅游市场领域存在一定的“公地悲剧”现象。云南省旅游流节点水平及其空间特征差异显著,”核心-边缘”结构明显。云南省旅游经济流受到旅游客流的中介力、旅游信息流的推动力、旅游资金流的拉动力三者的共同作用影响,各作用力影响程度表现出强弱历时性差异演化,旅游客流中介力持续增强,旅游信息流推动力稳步强化,旅游资金流拉动力显著下降。云南省旅游经济增长及旅游经济流网络发展驱动模式,正逐步由“供给侧拉动型”向“需求侧推动型”转变。 相似文献
40.
Human migration between cities is one important aspect of spatial interaction that not only reflects urban attractiveness but also denotes interactions amongst agglomerations.We therefore implemented a web-based visualization system to analyze and interactively explore local and distant population flow patterns between cities on the Qinghai-Tibet Plateau(QTP).We utilized 2017 Tencent population flow data from which we initially constructed inbound and outbound vectors for cities on the QTP.We then used multidimensional scaling to examine and visualize migration patterns and similarities between cities.Results reveal the presence of six local and three distant human mobility patterns on the QTP as well as aver-age summer monthly migrations more than twice the level of those in the winter. 相似文献