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121.
厌氧反应器系统动力学模型构建方法学研究   总被引:1,自引:0,他引:1  
王凯军  阎中 《环境科学》2008,29(9):2507-2512
以系统动力学的基本概念、方法为基础提出了存在于变量之间的3种基本关系模式,并在此基础上提出针对复杂系统的分块建模理论.将以葡萄糖为进水基质的厌氧反应器划分为3个子系统.确定了该系统的系统结构图,在此基础上构建厌氧消化系统的SD模型.根据分块建模的优势及特点,对模型中的3个子系统采用不同的计算方式,通过对比模拟结果表明,SD模型静态模拟结果与实验数据、传统结构模型模拟结果之间的误差<10%,动态模拟结果与实际趋势一致,说明SD模型的模拟结果是可信的.根据其特性,对取消物化子系统的简化模犁的模拟结果进行分析,表明根据不同的研究目的,选择合适的模型结构是必要的,采用系统动力学的分块建模方法有利于模型的简化与升级、减少计算量、提高模型的计算速度.  相似文献   
122.
5.12汶川地震后理县甘堡乡磨子沟泥石流特征分析   总被引:1,自引:0,他引:1  
磨子沟泥石流位于四川省理县甘堡乡,历史上泥石流活动明显,沟口317国道和村庄都曾遭受其破坏。5.12汶川地震后,沟内出现大量松散固体物质,为泥石流的暴发提供了充足的物源。本文通过野外实地调查,对泥石流的形成条件和动力学特征进行分析。  相似文献   
123.
三峡库区水华优势藻类生长动力学的普适性研究   总被引:2,自引:1,他引:1  
从蓝绿藻中选取绿藻门的普通小球藻(Chlorella vulgaris,CV藻)为研究对象,应用Monod方程考察氮、磷营养盐对CV藻生长的影响,分别计算出CV藻对TP、TN的半饱和常数KSP和KSN结果表明KSN>>KSP,说明TP对CV藻生长的影响明显大于TN.CV藻生长速率对磷质量浓度反应很灵敏:与空白值相比,在0.002 mg·L-1的低浓度下u就有提高,而浓度到0.2 mg.L-1时,u明显增大;但在0.000-0.050 mg·L-1氮浓度范围内u几乎没有变化.通过系统比较CV藻与优势蓝绿藻,甚至海水藻的生长动力学特征,探讨了CV藻与其它蓝绿藻的动力学普适性和共同性,证实这些藻类都具有非常类似的生长动力学和生态学特征.因此,推测CV藻生长动力学模型可以从整体上反映和代表库区优势蓝绿藻的生长行为.同时分析和归纳了蓝绿藻生长模型的相似性和规律性,得出三峡库区优势藻类生长行为存在普遍一致性的初步结论.  相似文献   
124.
实验对甲基橙的Fenton氧化脱色降解反应过程进行了研究,结果表明在pH值为3、反应温度为30℃的反应条件下,Fenton试剂氧化甲基橙溶液脱色反应可以用一级动力学过程来描述,而且其反应速率常数受到亚铁离子初始浓度和过氧化氢初始浓度的影响很大,经过数据拟合分别得到了反应速率常数与亚铁离子初始浓度和过氧化氢初始浓度之间的数学关系。实验还对30℃~60℃不同温度下的Fenton反应过程进行了考察,结果表明不同温度下Fenton氧化甲基橙的脱色反应仍可以用一级动力学过程来描述,而且其反应速率常数受温度变化的影响不大,基本保持恒定。  相似文献   
125.
利用Na2CO3连续提取法,分析了崇明东滩海三棱藨草(Scirpus mariqueter)体内生物硅(BSi)含量与分布特征.结果表明,BSi在海三棱藨草体内的分布存在明显的季节变化差异,在生物体中连续积累是BSi的一个主要特征.地上部分BSi含量变化范围为0.26% ~ 0.93%,地下部分为0.31% ~ 0.92%,果实中则为0.24% ~0.43%.地上部分含量明显高于其他部分,说明BSi主要沉积在蒸发强烈的叶片中,植株个体生长阶段是决定地上部分BSi含量的主要因素.统计分析显示,根际沉积物BSi和植物各器官BSi相关性均显著,说明海三棱藨草依从主动吸硅机制,从根际沉积物获取所需的Si.地上、地下部分BSi含量与有机氮(ON)、C/N、土壤温度、植株高度也存在明显的相关性.  相似文献   
126.
It is urgent to explore effective suppression methods for gas fires and explosions to ensure the safe utilizations of combustible gases in industrial processes. In this work, experiments are performed to study the effect of spherical ceramic pellets on premixed methane-air flame propagation in a closed duct. High-speed schlieren photography and pressure transducers are used to record the flame propagation and pressure transient, respectively. Behaviors of the flame propagating through a section of the duct filled with ceramic pellets in mixtures at different equivalence ratios are scrutinized. Three different diameters of pellets are considered in the experiments. The result shows that the flame can be quenched in the case with a smaller pellet diameter (3 mm) for a wide range of equivalence ratios from fuel-lean to fuel-rich mixture. For larger pellet diameter (5 or 10 mm), flame extinction occurs in fuel-rich mixtures (e.g. Φ = 1.1, 1.2). For the cases of flame surviving through the pellets bed, the pellets show a significant influence on the flame structure and behavior. The flame propagation depends on the porosity and the mean void diameter of the porous media in the pellets bed. Small void diameter is beneficial to flame quenching, while large porosity can accelerate the flame propagation. The pressure dynamics evolution is closely related to the interaction of flame with the pellets, and it depends on whether the flame quenches in the pellets bed. Overall, d = 3 mm ceramic pellets display the best suppression effect on flame propagation and pressure buildup in this study. The results of this study are of great significance to guide the safety design of spherical suppression materials in engineering applications for process safety researchers and engineers.  相似文献   
127.
Hydrogen is considered an excellent clean fuel with potential applications in several fields. There are serious safety concerns associated with the hydrogen process. These concerns need to be thoroughly understood and addressed to ensure its safe operation. To better understand the safety challenges of hydrogen use, application, and process, it is essential to undertake a detailed risk analysis. This can be achieved by performing detailed consequence modellings and assessing risk using the computational fluid dynamics (CFD) approach. This study comprehensively reviews and analyses safety challenges related to hydrogen, focusing on hydrogen storage, transmission, and application processes. Range of release and dispersion scenarios are investigated to analyse associated hazards. Approaches to quantitative risk assessment are also briefly discussed.  相似文献   
128.
为了研究食品安全生产及监管的内在机理、影响因素及监管模式,采用演化博弈论方法建立了政府监管部门与食品企业之间的博弈模型,运用复制动态方程和系统动力学方法深入分析了食品安全生产中相关主体的决策选择。结果表明:食品企业在追求利益最大化的前提下须主动重视食品安全问题,食品企业的策略选择受安全生产投入成本、处罚成本和声誉收益的影响;政府监管部门的监管行为受监管成本、外部负效益及社会成本等多方因素的影响。因此,增大监管部门惩处力度、降低监管成本、完善社会公众监督机制、强化声誉效应是食品安全问题得以解决的有力保障。  相似文献   
129.
In this work, an attempt has been made to harvest green energy from piezoelectric material using fluid flow in a conduit. Piezoelectric Energy Harvesting using Fluid Flow (PEHF) experimental model has been designed and the outputs obtained are compared with results obtained from simulations using ANSYS (computational fluid dynamics) and also with the mathematical modeling. The PEHF model has been utilized to analyze the effect of flow rate of water with reference to energy extracted. The full wave bridge rectifier and voltage doubler circuits have been used to obtain the direct current (DC) from the PEHF model. It is observed that the output obtained using experiments holds good in agreement with the results retrieved through simulations and mathematical results. The increase in flow rate of fluid leads to initially increase and then decrease in output of PEHF model as the maximum energy generated when flow rates (external force) matches with the frequency of excitation of the systems, i.e., at its resonance. The maximum energy output is generated at its resonance frequencies. It is observed that the full wave bridge rectifier circuit gives greater output as compared to a voltage doubler circuit.  相似文献   
130.
The strategy of smoke control is of high importance for the design process of tunnels, especially for long and large cross-section tunnels. The South Hongmei Rd. Tunnel (SHT) located in Shanghai, China, is a 3.39 km long shield TBM (tunnel boring machine) tunnel with an external diameter of 14.5 m. The point smoke extraction system was proposed initially as the main ventilation strategy during a tunnel fire. To investigate the fire characteristics in the tunnel and develop appropriate smoke control strategies, a series of numerical 3D Computation Fluid Dynamics (CFD) simulations were conducted. Three fire scenarios, namely 5 MW, 20 MW and 50 MW, were modeled to evaluate the point extraction system. The gas temperatures, the stratification of the smoke, air temperature, minimum visibility etc., during the smoke spreading of a fire were analyzed. Based on the results of the simulation, the smoke extraction strategies according to fire scale and fire location were proposed for fire extinguishing. It was found that the three-point extraction opening strategy can control the smoke better than two-point extraction opening strategy under various fire scales, especially under serious fire scenario. From the results, damper openings ranged at closer intervals were found more efficient in two-point extraction system. Besides, placing the damper openings in the longitudinal direction can improve the efficiency of smoke extraction. It also results in reduction of the quantity of prefabricated members of duct slab and the process of assembly will be simplified during the construction.  相似文献   
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