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太湖湖表反照率时空特征及影响因子 总被引:3,自引:0,他引:3
湖表反照率是影响水-气界面能量平衡和水体内部光温环境的重要因子,受到太阳高度角、云量、风速和水质等环境因子的多重影响.基于太湖中尺度涡度通量网4个涡度通量观测站点(梅梁湾、大浦口、避风港和小雷山)的辐射和风速资料,结合晴空指数和水质数据,分析上述因子对太湖湖表反照率的影响及太湖湖表反照率空间差异的原因.主要结果为:太阳高度角是控制湖表反照率日变化、季节变化的主要因子;太阳高度角低于35°且当晴空指数在0~0.1和0.4~0.6之间时湖表反照率出现高值.反照率值呈现随风速、浊度和叶绿素a浓度升高而增大的趋势,而风浪通过影响浅水湖泊浊度、叶绿素a浓度从而间接影响湖表反照率.各站点湖表反照率关系为:小雷山避风港大浦口梅梁湾,其中小雷山站位于草型和藻型湖区过渡区而梅梁湾站位于藻型湖区.反照率与叶绿素a浓度水平之间的关系对蓝藻暴发及其严重程度并不敏感.本研究为湖体反照率的参数化过程提供参考依据. 相似文献
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针对风电场建设要求,论文利用非线性高分辨率数值模式NLMSFD尝试对山东荣成地区风资源进行评估。在试验区域内,分别选取两座测风塔不同高度上1年的月平均风速观测资料作为驱动值,利用模式对试验区的风速分布进行了模拟试验,获取了试验区100 m×100 m分辨率条件下风速一年四季的空间分布信息,并将模拟值与实测值对比,分析了模式在试验区地形及粗糙度条件下的模拟精度,评价了NLMSFD模式的可适用性。结果表明,模式的模拟结果基本能反映出月平均风速的时空变化规律,但两塔位置处模拟值与观测值的相对误差随高度和季节变化有所不同。从季节上看,模式的模拟结果在冬季较好,夏季误差稍大,春、秋次之;从高度上看,除10 m高度外,其它高度层的相对误差大多在10%以内。利用不同位置的观测资料驱动模式,模拟结果的精度也受影响。如利用远离海岸边的观测资料驱动模式要比近海观测资料驱动模式所得的模拟结果好;同时对于近海的测风塔,采用距地面位置较高的观测资料作为驱动值要比采用10 m高度的资料驱动模式的模拟精度好。这些结果说明NLMSFD模式在精细化风资源评估及风电场选址中具有一定的参考应用价值。 相似文献
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为了快速有效地确定矿车等运输设备在巷道内运行时矿井摩擦阻力的变化情况,克服模拟软件计算量和现场实测工作量大的问题,以巷道风流速度、矿车运行速度、阻塞比、矿车长度4个矿车运行时巷道摩擦阻力的影响因素作为切入点,采用动网格技术模拟得到矿车在巷道内运行时有关矿井摩擦阻力的数据,以此为样本构建基于BP神经网络的矿井摩擦阻力预测模型,运用MATLAB软件进行网络训练,并将BP神经网络预测值与FLUENT模拟值进行对比。研究结果表明:BP神经网络结构比较简单,能以较快速度收敛,预测值与模拟值最大误差在7%以内,该神经网络模型用于求解矿车等运输设备在巷道内运行时摩擦阻力的变化情况是可行的。 相似文献
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Experimental Study of the Criteria of Flow Laminarization in Two-Dimensional Dense Gas Plumes 总被引:1,自引:0,他引:1
Laminarization of flow in a two-dimensional dense gas plume was experimentally investigated in this study. The plume was created by releasing CO2 through a ground-level line source into a simulated turbulent boundary layer over an aerodynamically rough surface in a meteorological wind tunnel. The bulk Richardson number (Ri*), based on negative plume buoyancy, plume thickness, and friction velocity, was varied over a wide range so that the effects of stable stratification on plume laminarization could be observed. A variety of ambient wind speeds as well as three different sizes of roughness arrays were used so that possible effects of roughness Reynolds number (Re*) on plume laminarization could also be identified. Both flow visualization methods and quantitative measurements of velocity and intermittency of turbulence were used to provide quantitative assessments of plume laminarization.Flow visualization provided an overall picture of how the plume was affected by the negative buoyancy. With increasing Ri*, both the plume depth and the vertical mixing were significantly suppressed, while upstream propagation of the plume from the source was enhanced. The most important feature of the flow revealed by visualization was the laminarization of flow in the lower part of the plume, which appeared to be closely related to both Ri* and Re*.Measurements within the simulated dense gas plumes revealed the influence of the stable stratification on mean velocity and turbulence intensity profiles. Both the mean velocity and turbulence intensity were significantly reduced near the surface; and these reductions systematically depended on Ri*. The roughness Reynolds number also had considerable influence on the mean flow and turbulence structure of the dense gas plumes.An intermittency analysis technique was developed and applied to the digitized instantaneous velocity signals. It not only confirmed the general flow picture within the dense plume indicated by the flow visualization, but also clearly demonstrated the changes of flow regime with variations in Ri* and Re*. Most importantly, based on this intermittency analysis, simple criteria for characterizing different flow regimes are formulated; these may be useful in predicting when plume laminarization might occur. 相似文献
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S. Andronopoulos D. Grigoriadis A. Robins A. Venetsanos S. Rafailidis J.G. Bartzis 《Environmental Fluid Mechanics》2001,1(4):415-440
The strong fluctuating component in the measured concentration time series of a dispersing gaseous pollutant in the atmospheric boundary layer, and the hazard level associated to short-term concentration levels, demonstrate the necessity of calculating the magnitude of turbulent fluctuations of concentration using computational simulation models. Moreover the computation of concentration fluctuations in cases of dispersion in realistic situations, such as built-up areas or street canyons, is of special practical interest for hazard assessment purposes. In this paper, the formulation and evaluation of a model for concentration fluctuations, based on a transport equation, are presented. The model is applicable in cases of complex geometry. It is included in the framework of a computational code, developed for simulating the dispersion of buoyant pollutants over complex geometries. The experimental data used for the model evaluation concerned the dispersion of a passive gas in a street canyon between 4 identical rectangular buildings performed in a wind tunnel. The experimental concentration fluctuations data have been derived from measured high frequency concentrations. The concentration fluctuations model is evaluated by comparing the model's predictions with the observations in the form of scatter plots, quantile-quantile plots, contour plots and statistical indices as the fractional bias, the geometrical mean variance and the factor-of-two percentage. From the above comparisons it is concluded that the overall model performance in the present complex geometry case is satisfactory. The discrepancies between model predictions and observations are attributed to inaccuracies in prescribing the actual wind tunnel boundary conditions to the computational code. 相似文献
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纵向通风下坡度隧道火灾烟气特性数值模拟研究 总被引:1,自引:0,他引:1
为探讨纵向通风情况下坡度隧道火灾烟气的温度分布、回流长度等特性参数,运用火灾动力学模拟软件FDS建立一个长为500 m的公路隧道模型,对不同坡度、不同纵向通风速率的20组火灾工况进行模拟研究,通过分析各工况的模拟结果,并结合前人在隧道火灾烟气特性研究方面的成果,得到火灾情况下隧道内烟气的纵向温度分布规律、隧道拱顶温度变化规律、温度偏移及烟气回流长度变化规律等。 相似文献