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71.
ABSTRACT: This paper explores some of the advances of the boundary element method, as applied to ground-water problems, during the last five years. Although the method is still somewhat limited compared to solution by finite elements, the range of solutions has increased considerably. Diffusion and advection-diffusion solutions are done efficiently. These include the incorporation of inhomogeneity, anisotropy, and nonlinear diffusion. The difficult problem of stream-aquifer interaction is an important application as it is much easier to follow a free surface with its multiple configurations. The application must be able to cycle between ground-water connection and disconnection with the stream and include seepage surfaces. Flow in fractured media is a natural application where the flow in fractures can usually be treated without a computational exception in spite of extremely high aspect ratios. The case of seawater intrusion forms a type of free surface problem and thus is a case for which the method has special advantages. For these and other applications the boundary element method provides an inexpensive technique for calculation where the data preparation and setup time is minimal. In most of these cases, programs can and have been written on microcomputers.  相似文献   
72.
This paper considers the two-dimensional saturated and unsaturated flow of water through inclined porous media, namely a waste dump or hill slope. Since the partial differential equation governing this water flow transforms from being parabolic to elliptic as the water flow varies from unsaturated to saturated, an iterative, finite differencing scheme is used to develop a numerical solution. The model can be used to investigate the effects that hill slope angle, depth of soil cover and hilltop width have on water accumulation in the dump and the time required for saturation to occur at different areas in the dump domain. The accuracy and reliability of the computer based solution is tested for two different boundary conditions – (1) no flow on all boundaries (i.e., the internal redistribution of soil moisture to steady state) and (2) a constant rainfall flux on the dump surface. Numerical studies then show the effects of changing the hill slope angle, depth of layer, and dump geometry on the flow characteristics in the dump.  相似文献   
73.
以氯化铜、纳米γ-Fe2O3和硫脲为原材料,乙二醇为溶剂,采用溶剂热法制备了磁性CuS/γ-Fe2O3复合光催化剂。考察了该光催化剂对刚果红染料废水的处理效果。在m(CuS):m(γ-Fe2O3)=2:1、刚果红初始质量浓度为10 mg/L、光催化剂投加量为0.6 g/L的最佳工艺条件下,刚果红去除率达96.51%。阴离子Cl-、NO3- 及SO42-对该光催化剂的催化活性具有促进作用,其中SO42–的促进作用最显著。该光催化剂具有较好的活性稳定性,重复使用6次后刚果红去除率仍高达90.50 %。  相似文献   
74.
Electrospun cellulose acetate (CA) nanofibrous mats incorporated with capric acid was studied to fabricate form-stable phase change materials (PCMs) for storing/retrieving thermal energy. Electrospun CA nanofibrous mats with different porous structures and specific surface areas were firstly prepared through regulating the volume ratio of mixture solvent of acetone/dichloromethane (DCM). Effects of different volume ratio of mixture solvent and mat thickness on the morphological structure, specific surface area, and absorption capacity of CA nanofibrous mats were systematically investigated. The results indicated that CA nanofibrous mats were highly porous on the surface; hence, they were capable of absorbing a large amount of capric acid. The maximum absorption capacity of CA mats via electrospinning with volume ratio of acetone/DCM being 5/5 was ~95.8 wt%, due to its higher specific surface area of ~17.1 m2/g. The specific surface area and capric acid absorption capacity of CA nanofibrous mats increased with the increases of mat thickness. As the thickness of nanofibrous mats increased from 10 to 85 μm, the corresponding specific surface area and capric acid absorption capacity of mats increased respectively from 7.2 to 29.0 m2/g and 92.1 to 98.5%. Morphological structures, as well as the properties of thermal energy storage and thermal insulation of the fabricated form-stable PCMs, were studied by scanning electron microscopy, differential scanning calorimetry, and measurement of freezing times, respectively. The results indicated that the resulting form-stable PCMs could well maintain their phase transition characteristics and demonstrated great thermal energy storage capability and temperature regulation ability.  相似文献   
75.
以多级孔ZSM-5分子筛为吸附剂,吸附水中的亚甲基蓝(MB),考察了吸附条件对吸附效果的影响,并探讨了吸附的热力学和动力学特征。实验结果表明:在溶液pH为11、分子筛加入量为800 mg/L、吸附温度为303.15 K、吸附时间为60 min、初始MB质量浓度为20 mg/L的条件下,该分子筛对MB的吸附率达97%;溶液pH为5~12时,吸附率均达89%以上,说明该分子筛具有宽的pH适应范围;该分子筛对MB的吸附热力学符合Langmuir和Freundlich方程,293.15~313.15 K的饱和吸附量达50.51~62.11 mg/g,吸附为吸热、自发过程;吸附动力学符合拟二级动力学方程。  相似文献   
76.
Konz, M., Ackerer, P., Younes, A., Huggenberger, P., Zechner, E., 2009a. 2D Stable Layered Laboratory-scale Experiments for Testing Density-coupled Flow Models. Water Resources Research, 45. doi:10.1029/2008WR007118., a series of laboratory-scale 2D tank experiments were conducted and accurately simulated for density driven flow problems on homogeneous porous media. In the present work, we extended the numerical and experimental studies to heterogeneous problems. The heterogeneous porous medium was constructed with a low permeability zone in the centre of the tank and had well-defined parameters and boundary conditions. Concentration distributions were measured in high resolution using a photometric method and an image analysis technique. The numerical model used for the simulations was based on efficient advanced approximations for both spatial and temporal discretizations. The Method Of Lines (MOL) was used to allow higher-order temporal discretization. Three different boundary conditions, corresponding to different localizations of the inflow and the outflow openings at the opposite edges of the tank, were applied to investigate different flow scenarios in the heterogeneous porous medium flow tank. Simulation results of all three density coupled experiments revealed a density-dependent behavior of dispersion. Thus, a reduction of dispersivites was required to obtain a good matching of the experimental data. The high quality of the experiments enabled a detailed testing of numerical variable-density flow codes under heterogeneous conditions. Therefore, the experiments were considered to be reliable benchmark tests.  相似文献   
77.
有机磷降解酶的固定化及其工业化应用初探   总被引:3,自引:0,他引:3  
采用一种新型的酶固定化方法,在大孔微球中对有机磷降解酶(OPHC2)固定化,制备固相载体化的交联酶聚集体固定化酶。对具有实际应用意义的参数:热稳定性、牢固度和连续反应批次进行了重点研究。结果表明,有机磷降解酶固定化酶的半衰期在70℃时比游离酶提高了2.1倍。固定化酶分别在37℃的摇床中经14 h高速振荡,以及在pH 8、37℃条件下循环反应49个批次降解甲基对硫磷后,均未发现固定化酶酶活力下降。在37℃,有机磷降解酶固定化酶柱以每小时3倍柱床体积的速率对甲基对硫磷农药乳油的稀释液(甲基对硫磷含量为216 mg/L)进行降解处理,系统连续工作156 h,甲基对硫磷的降解率保持在98.4%~99.9%。  相似文献   
78.
累托石/腐殖酸微球的制备及其对Cr(Ⅵ)的吸附研究   总被引:1,自引:0,他引:1  
采用累托石(REC)、腐殖酸(HA)等材料制备微球状吸附剂,考察了累托石、腐殖酸、聚乙烯醇(PVA)、海藻酸钠(SA)、氯化钙等材料的用量对制得的微球吸附性能的影响,通过正交试验确定了微球的最佳制备条件,还考察了微球用量、振荡时间和溶液pH值等因素对微球吸附去除水中Cr(VI)效果的影响。结果表明,采用累托石、腐殖酸、聚乙烯醇等材料可制得高效去除水中六价铬离子的微球状吸附剂,微球的最佳制备条件为:REC 1%,HA 4%,PVA 7%,SA 0.1%,CaCl2 0.5%。制得的累托石/腐殖酸微球孔系发达,吸附性能良好。在温度30℃,微球用量0.02 g/mL,振荡时间为2.5 h,pH值为1的条件下,微球对Cr(VI)的吸附效率可达98%以上。  相似文献   
79.
A one-dimensional transport model for simulating water flow and solute transport in homogeneous–heterogeneous, saturated–unsaturated porous media is presented. The model is composed of a combination of accurate numerical algorithms for solving the nonlinear Richard's and advection–dispersion equations (ADE). The mixed form of Richard's equation is solved using a standard finite element method (FEM) with primary variable switching. The transport equation is solved using operator splitting, with the discontinuous finite element method (DFE) for discretization of the advective term. A slope limiting procedure for DFE avoids numerical instabilities but creates very limited numerical dispersion for high Peclet numbers. An implicit finite differences scheme (FD) is used for the dispersive term.The unsaturated flow and transport model (Wamos-T) is applied to a variety of rigorous problems including transient flow, heterogeneous medium and abrupt variations of velocity in magnitude and direction due to time-varying boundary conditions. It produces accurate and mass-conservative solutions for a very large range of grid Peclet numbers. The Wamos-T model is a good and robust alternative for the simulation of mass transport in unsaturated domain.  相似文献   
80.
Porous S-doped bismuth vanadate with an olive-like morphology and its supported iron oxide (y wt.% FeOx/BiVO4-δS0.08, y = 0.06, 0.76, and 1.40) photocatalysts were fabricated using the dodecylamine-assisted alcohol-hydrothermal and incipient wetness impregnation methods, respectively. It is shown that the y wt.% FeOx/BiVO4-δS0.08 photocatalysts contained a monoclinic scheetlite BiVO4 phase with a porous olive-like morphology, a surface area of 8.8-9.2 m^2/g, and a bandgap energy of 2.38-2.42 eV. There was co-presence of surface Bi^5+, Bi^3+, V^5+, V^3+, Fe^3+, and Fe^2+ species in y wt.% FeOx/BiVO4-δS0.08. The 1.40 wt.% FeOx/BiVO4-δS0.08 sample performed the best for Methylene Blue degradation under visible-light illumination. The photocatalytic mechanism was also discussed. We believe that the sulfur and FeOx co-doping, higher oxygen adspecies concentration, and lower baudgap energy were responsible for the excellent visible-light-driven catalytic activity of 1.40 wt.% FeOx/BiVO4-δS0.08.  相似文献   
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