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1.
高黏度污泥螺带螺杆搅拌混合特性的数值模拟 总被引:1,自引:0,他引:1
污泥处理过程通常需要加入添加剂,而高黏度污泥流动性差,搅拌混合是一个难点。选用螺带螺杆搅拌器加添加剂搅拌高黏度污泥,用Solid Works软件几何建模后,将模型导入Gambit划分网格,结合Fluent软件选用多重参考系法(MRF)分别对双螺带螺杆搅拌器与单螺带螺杆搅拌器下的污泥与添加剂混合过程进行了模拟,对比了两种搅拌桨的混合时间、体积分数流场分布及混合效率,分析了不同加料区域的影响,并将搅拌功率模拟与试验结果进行了对比。结果表明:螺带螺杆搅拌器适用于高黏度污泥的搅拌且双螺带螺杆搅拌器混合时间更短,体积分数流场更快趋于稳定且混合效率更高;最佳加料区域为搅拌槽的中部。 相似文献
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利用傅里叶变换方法,研究了层状半空间中沉积谷地对SV波的时域散射问题。首先,通过傅里叶变换将时域问题转换为离散的频域问题,针对有效频率成分采用间接边界元方法求解频域响应,再将所得频域结果进行傅里叶逆变换得到时域解答。通过与已有结果的对比,验证了方法的正确性。最后,以基岩上单一土层中沉积谷地在R icker波入射下的散射问题为例进行了数值计算分析,结果表明,沉积谷地和土层的存在都会造成振动持续时间的增长;层状半空间中沉积谷地和均匀半空间中沉积谷地对波的放大作用存在显著差别。文中分析了造成该差别的原因,并讨论了覆盖层厚度和刚度对散射效应的影响。 相似文献
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Fournier A Feidt C Marchand P Vénisseau A Le Bizec B Sellier N Engel E Ratel J Travel A Jondreville C 《Environmental science and pollution research international》2012,19(2):440-447
Introduction
High concentrations of hexabromocyclododecane (HBCD) sometimes recorded in free-range hens' eggs are thought to be due to soil ingestion. Of the three stereoisomers of HBCD (α-, β-, and γ-HBCD), γ-HBCD is the main component in the commercial mixture, as well as in environmental matrices, whereas the isomer profile is α-dominated in biota. In fish and in mammals, this shift is thought to be due to a rapid elimination of γ-HBCD and to its bioisomerization to the more persistent α-HBCD. The aim of the current controlled study was to better understand the fate of ingested HBCD in laying hens. The isomer profile in soil being γ-dominated, excretion kinetics of γ-HBCD into egg yolk, and accumulation in liver and in abdominal fat were investigated. 相似文献6.
Olav R. Hansen Peter Hinze Derek Engel Scott Davis 《Journal of Loss Prevention in the Process Industries》2010,23(6):885-906
Explosions will, in most cases, generate blast waves. While simple models (e.g., Multi Energy Method) are useful for simple explosion geometries, most practical explosions are far from trivial and require detailed analyses. For a reliable estimate of the blast from a gas explosion it is necessary to know the explosion strength. The source explosion may not be symmetric; the pressure waves will be reflected or deflected when hitting objects, or even worse, the blast waves may propagate inside buildings or tunnels with a very low rate of decay. The use of computational fluid dynamics (CFD) explosion models for near and far field blast wave predictions has many advantages. These include more precise estimates of the energy and resulting pressure of the blast wave, as well as the ability to evaluate non-symmetrical effects caused by realistic geometries, gas cloud variations and ignition locations. This is essential when evaluating the likelihood of a given leak source as cause of an explosion or equally when evaluating the potential risk associated with a given leak source for a consequence analysis.In addition, unlike simple methods, CFD explosion models can also evaluate detailed dynamic effects in the near and far field, which include time dependent pressure loads as well as reflection and focusing of the blast waves. This is particularly valuable when assessing actual near-field blast damage during an explosion investigation or potential near-field damage during a risk analysis for a facility. One main challenge in applying CFD, however, is that these models require more information about the actual facility, including geometry details and process information. Collecting the necessary geometry and process data may be quite time consuming. This paper will show some blast prediction validation examples for the CFD model FLACS. It will also provide examples of how directional effects or interaction with objects can significantly influence the dynamics of the blast wave. Finally, the challenge of obtaining useful predictions with insufficient details regarding the geometry will also be addressed. 相似文献
7.
M.S. Borhan D.P. Gautam C. Engel V.L. Anderson 《Journal of the Air & Waste Management Association (1995)》2013,63(12):1457-1468
Greenhouse gas (GHG) emissions from concentrated animal feeding operations vary by stage of production and management practices. The objective of this research was to study the effect of two dietary crude protein levels (12 and 16%) fed to beef steers in pens with or without corn stover bedding. Manure characteristics and GHG emissions were measured from feedlot pen surfaces. Sixteen equal-sized feedlot pens (19?×?23 m) were used. Eight were bedded approximately twice a week with corn stover and the remaining eight feedlot pens were not bedded. Angus steers (n = 138) were blocked by live weights (lighter and heavier) with 7 to 10 animals per pen. The trial was a 2?×?2 factorial design with factors of two protein levels and two bedding types (bedding vs. non bedding), with four replicates. The study was conducted from June through September and consisted of four ?28-day periods. Manure from each pen was scrapped once every 28 days and composite manure samples from each pen were collected. Air samples from pen surfaces were sampled in Tedlar bags using a Vac-U-Chamber coupled with a portable wind tunnel and analyzed with a greenhouse gas gas chromatograph within 24 hr of sampling. The manure samples were analyzed for crude protein (CP), total nitrogen (TN), ammonia (NH3), total volatile fatty acid (TVFA), total carbon (TC), total phosphorus (TP), and potassium (K). The air samples were analyzed for methane (CH4), carbon dioxide (CO2), and nitrous oxide (N2O) concentrations. The concentration of TN was significantly higher (p < 0.05) in manure from pens with cattle fed the high protein diets. The volatile fatty acids (VFAs) such as acetic, propionic, isobutyric, butyric, isovaleric, and valeric acids concentrations were similar across both treatments. There were no significant differences in pen surface GHG emissions across manure management and dietary crude protein levels. Implications: Livestock manure produces odor and emits GHGs (CO2, CH4, and N2O) at different stages of production and management practices that have significant environmental concerns. Thus, it is important to measure GHG contributions from different sources and develop appropriate mitigation strategies for minimizing GHG contribution from livestock production facilities. Two dietary protein levels (12 and 16%) fed to beef steers in pens with or without corn stover bedding were studied. The results indicated that dietary protein levels and bedding vs. no bedding had very little effect on GHG emissions and manure composition under open feedlot conditions in North Dakota climatic conditions and management practices. 相似文献
8.
ZHANG Lifei ZHENG Minghui ZHANG Bing LIU Wenbin GAO Lirong BA Te REN Zhiyuan SU Guijin 《环境科学学报(英文版)》2008,20(12):1523-1526
Decomposition of hexachlorobenzene(HCB)was investigated over several metal oxides(i.e.,MgO,CaO,BaO,La2O3,CeO2,MnO2, Fe2O3,and Co3O4)supported on Al2O3,which was achieved in closed system at a temperature of 300°C.Catalysts were prepared by incipient wetness impregnation with different metal oxides loading and impregnating solvents.The decomposition effciency of different catalysts for this reaction depends on the nature of the metal oxide used,and Al2O3 supported La2O3 was found to be the most active one.Pe... 相似文献
9.
Fabian Engel Kaitlin J. Farrell Ian M. McCullough Facundo Scordo Blaize A. Denfeld Hilary A. Dugan Elvira de Eyto Paul C. Hanson Ryan P. McClure Peeter Nõges Tiina Nõges Elizabeth Ryder Kathleen C. Weathers Gesa A. Weyhenmeyer 《Die Naturwissenschaften》2018,105(3-4):25
The magnitude of lateral dissolved inorganic carbon (DIC) export from terrestrial ecosystems to inland waters strongly influences the estimate of the global terrestrial carbon dioxide (CO2) sink. At present, no reliable number of this export is available, and the few studies estimating the lateral DIC export assume that all lakes on Earth function similarly. However, lakes can function along a continuum from passive carbon transporters (passive open channels) to highly active carbon transformers with efficient in-lake CO2 production and loss. We developed and applied a conceptual model to demonstrate how the assumed function of lakes in carbon cycling can affect calculations of the global lateral DIC export from terrestrial ecosystems to inland waters. Using global data on in-lake CO2 production by mineralization as well as CO2 loss by emission, primary production, and carbonate precipitation in lakes, we estimated that the global lateral DIC export can lie within the range of \( {0.70}_{-0.31}^{+0.27} \) to \( {1.52}_{-0.90}^{+1.09} \) Pg C yr?1 depending on the assumed function of lakes. Thus, the considered lake function has a large effect on the calculated lateral DIC export from terrestrial ecosystems to inland waters. We conclude that more robust estimates of CO2 sinks and sources will require the classification of lakes into their predominant function. This functional lake classification concept becomes particularly important for the estimation of future CO2 sinks and sources, since in-lake carbon transformation is predicted to be altered with climate change. 相似文献
10.
为探究不同影响因素对埋地管道运行安全的影响,基于改进的一次二阶矩计算方法,综合考虑埋地管道环向受力和纵向受力的特性,依据应力-强度理论和钢制管道结构设计规范建立了埋地管道失效结构功能函数;通过对ABAQUS软件中的UVARM模块进行二次开发,建立了腐蚀、温度和不均匀沉降耦合作用下的三维管道-地层整体模型,模拟不同管道参数下的管道状况.运用该方法对工程实例进行了计算,分析可靠指标和失效概率的分布情况.结果表明:埋地管道工作内压与管道失效概率呈正相关关系,管道壁厚和管径与失效概率呈负相关关系;在影响参数变化相同的条件下,管道中部失效概率变化最快,两端的失效概率变化较慢.该模型计算结果体现了管道不同部位失效概率的特点,在管道设计、维护和风险评估方面有一定的借鉴意义. 相似文献