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1.
《Advanced Powder Technology》2022,33(8):103664
Powder transport systems are ubiquitous in various industries, where they can encounter single powder flow, two-phase flow with solids carried by gas or liquid, and gas–solid–liquid three-phase flow. System geometry, operating conditions, and particle properties have significant impacts on the flow behavior, making it difficult to achieve good transportation of granular materials. Compared to experimental trials and theoretical studies, the numerical approach provides unparalleled advantages over the investigation and prediction of detailed flow behavior, of which the discrete element method (DEM) can precisely capture complex particle-scale information and attract a plethora of research interests. This is the first study to review recent progress in the DEM and coupled DEM with computational fluid dynamics for extensive powder transport systems, including single-particle, gas–solid/solid–liquid, and gas–solid–liquid flows. Some important aspects (i.e., powder electrification during pneumatic conveying, pipe bend erosion, non-spherical particle transport) that have not been well summarized previously are given special attention, as is the application in some new-rising fields (ocean mining, hydraulic fracturing, and gas/oil production). Studies involving important large-scale computation methods, such as the coarse grained DEM, graphical processing unit-based technique, and periodic boundary condition, are also introduced to provide insight for industrial application. This review study conducts a comprehensive survey of the DEM studies in powder transport systems. 相似文献
2.
An analytical model for gas leakage through contact interface in proton exchange membrane fuel cells
《International Journal of Hydrogen Energy》2022,47(75):32273-32286
Sealing performance between two contacting surfaces is of significant importance to stable operation of proton exchange membrane (PEM) fuel cells. In this work, an analytical micro-scale approach is first established to predict the gas leakage in fuel cells. Gas pressure and uneven pressure distribution at the interface are also included in the model. At first, the micro tortuous leakage path at the interface is constructed by introducing contact modelling and fractal porous structure theory. In order to obtain the leakage at the entire surface, contact pressure distribution is predicted based on bonded elastic layer model. The gas leakage through the discontinuous interface can be obtained with consideration of convection and diffusion. Then, experiments are conducted to validate the numerical model, and good agreement is obtained between them. Finally, influences of surface topology, gasket compression and gasket width on leakage are studied based on the model. The results show that gas leakage would be greatly amplified when the asperity standard deviation of surface roughness exceeds 1.0 μm. Gaskets with larger width and smaller thickness are beneficial to sealing performance. The model is helpful to understand the gas leakage behavior at the interface and guide the gasket design of fuel cells. 相似文献
3.
河川径流是水资源重要组成部分,径流变化归因分析对于流域水资源安全及管理具有重要意义。基于白龙江中上游1960~2015年水文气象资料,采用多种统计学方法、基于Budyko假设的弹性分析法研究径流变化特征及归因分析。结果表明,径流呈显著下降趋势,线性倾向变化率为-2.69×108m3/10a,其临界突变发生在1986年,呈先上升后下降的趋势;径流量分布集中,6~10月占比63.59%,夏秋两季占比70.62%;径流减少受气候变化和人类活动影响,双累积曲线法影响率分别为33.02%、66.98%,累积量斜率变化率法影响率分别为44.17%、55.83%,弹性分析法影响率分别为35%~39%、61%~65%,可见人类活动为径流减少的主要影响因素,同时,弹性分析法计算结果介于其他两种方法计算结果之间,最为可靠。 相似文献
4.
5.
Alexander Van-Brunt Patrick E. Farrell Charles W. Monroe 《American Institute of Chemical Engineers》2022,68(5):e17599
We present the Onsager–Stefan–Maxwell thermodiffusion equations, which account for the Soret and Dufour effects in multicomponent fluids. Unlike transport laws derived from kinetic theory, this framework preserves the structure of the isothermal Stefan–Maxwell equations, separating the thermodynamic forces that drive diffusion from the force that drives heat flow. The Onsager–Stefan–Maxwell transport-coefficient matrix is symmetric, and the second law of thermodynamics imbues it with simple spectral characteristics. This new approach allows for heat to be considered as a pseudo-species and proves equivalent to both the intuitive extension of Fick's law and the generalized Stefan–Maxwell equations popularized by Bird, Stewart, and Lightfoot. A general inversion process facilitates the unique formulation of flux-explicit transport equations relative to any choice of convective reference velocity. Stefan–Maxwell diffusivities and thermal diffusion factors are tabulated for gaseous mixtures containing helium, argon, neon, krypton, and xenon. The framework is deployed to perform numerical simulations of steady three-dimensional thermodiffusion in a ternary gas. 相似文献
6.
以玉米淀粉、聚己二酸/对苯二甲酸丁二酯(PBAT)为主要原材料,甘油为主增塑剂,山梨醇、聚乙烯醇200(PEG200)、二甲基甲酰胺等为辅增塑剂,通过挤出机造粒再吹塑方法制成淀粉填充PBAT薄膜。研究对比了不同增塑剂在淀粉填充PBAT材料中的塑化效果,同时探究了不同塑化剂对复合薄膜力学性能、表面粗糙度、吸水率、溶出率及熔体流动速率的影响。结果表明:山梨醇与甘油组成的复合增塑剂的塑化效果要优于PEG200和二甲基甲酰胺,淀粉在PBAT薄膜中的粒径最小、分散最均匀,且薄膜的拉伸强度、断裂生产率、摆锤冲击强度得到明显提高。PEG200和二甲基甲酰胺与甘油的复合增塑剂对淀粉的塑化未起到作用,但二甲基甲酰胺能与淀粉分子形成较为稳定的氢键,可以大幅度降低薄膜中淀粉的溶出率。薄膜的吸水性主要取决于淀粉的吸水性。熔体流动速率在一定程度上也能体现淀粉的塑化情况。 相似文献
7.
Clive Bell 《Papers in Regional Science》2022,101(2):373-397
The effects of a rural roads programme depend on labour mobility, how the programme is financed, and agglomeration economies. If financed by a rural poll tax and cross-price effects and agglomeration economies are sufficiently small, the wage will rise, with some return migration. Taxes on trade act as countervailing distortions, yielding urban households some relief. Rural-urban commuting promotes the exploitation of agglomeration economies; taxes on international trade are then inferior to a poll tax. The change in the value, at producer prices, of the rural sector's net supply vector can be a poor measure of the programme's social profitability. 相似文献
8.
新疆奎屯河流域是我国大陆第一个地方性砷中毒的区域,然而在人类活动与自然条件下,对该区地下水砷超标的原因未得到清楚的解释。通过2017年在研究区采集地表水、地下水样品51组,分析了主、微量元素组分;2019年在典型的高砷区钻井2个孔,采集沉积物样品44组,分析了粒径、化学成分。结果表明,研究区地下水砷浓度范围为10~887 μg/L,平均为55.8μg/L,沉积物中砷最高为28.41 mg/kg,砷超标(As≥10 μg/L)较为严重。周边山区分布的菱铁矿、砷酸钙、砷酸锰等矿物,为该区地下水砷含量超标提供了物质来源;强烈的蒸发浓缩作用与岩石风化作用使得地下水中的砷浓度进一步升高;高pH值、低Eh的地下水化学环境,造成砷酸盐从矿物表面解吸附聚集在地下水中;沉积物中Fe、Mn氧化物矿物和黏土矿物的还原过程使与之共存的砷被释放,也是该区地下水中砷超标的原因。 相似文献
9.
通过建立黄河水质与社会适应能力评价指标体系,结合主成分分析法和熵权法,定量揭示2012-2019年黄河沿线11个城市的黄河水质与社会适应能力的演变趋势,并对两者的耦合协调发展态势进行了分析。结果表明:研究区内多数城市黄河水质多年平均状况良好,仅运城市和呼和浩特市河段水质较差,以营养物和有机物污染为主;多数城市社会适应能力呈波动上升趋势,运城市则稳定在最低水平,菏泽市次之,经济支撑薄弱是两城市低社会适应水平的主因;城市黄河水质与社会适应能力两系统整体处于良好耦合、中级协调状态,黄河水质整体上具备承载沿线城市经济社会发展的潜能,但社会适应能力系统应对黄河水环境恶化所能产生的社会修复稍有欠缺;菏泽市、呼和浩特市和银川市处于初级协调状态,运城市处于勉强协调状态,两系统间存在单向乃至双向约束。 相似文献
10.
茅洲河水环境综合治理工程规模大,水质污染成因成分复杂,有机质、营养盐、重金属污染重,治理区域人员、企业密度大,且需要跨界协同治理。本文通过分析该项目的治理技术路线,制定了双核驱动、多联协同的治理技术路线,并采取雨污管网、活水补水等六类工程措施,使茅洲河国考断面水质提前达到考核目标。在治理过程中通过技术创新,保证了工程质量、进度,可为国内类似城市高密度建成区水环境治理提供借鉴。 相似文献