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1.
Film boiling chemical vapor infiltration (FB-CVI) is considered as one of the fastest process methodologies for manufacturing carbon-carbon (C–C) composite products and possesses various advantages compared to conventional methodologies. However, there are safety concerns associated with this process for large-scale manufacturing, mainly owing to the intrinsic nature of the precursor and the process conditions. Considering the multifunctional interactions of the various systems during the process, a system-theoretic process analysis (STPA)/system theoretic accident model and process (STAMP) model is used to perform a safety analysis of the hazardous states of the FB-CVI process at the system level. As a case study, the FB-CVI process equipment employed for the manufacturing of C–C composites is considered. The safety constraints present in the system are assessed for adequacy through a hazard analysis by STPA/STAMP. The analysis through STPA/STAMP demonstrated the capability to create proactive strategies for the design and realization of process equipment that can be employed to manufacture C–C composite products through the FB-CVI process. 相似文献
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非饱和土边坡稳定的安全分析及进展 总被引:6,自引:2,他引:6
笔者基于基质吸力和土抗剪强度之间的关系和非饱和土力学理论 ,以基质吸力问题为中心 ,通过工程实例对影响非饱和土边坡滑动的各种内在及外界因素进行了参数分析 ,尤其对降雨入渗和裂隙影响的定量分析新进展进行了研究。研究结果表明 :非饱和土边坡稳定分析应加强考虑基质吸力对抗剪强度的折减影响 ,修正极限平衡方法对考虑降雨入渗 ,裂隙影响及暂态渗流的非饱和土边坡稳定性研究具有工程意义和实用价值。 相似文献
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针对农村污水的特点,结合湖北十堰地区农村污水处理工程案例,分析了以人工快渗技术为核心的一体化设备在实际应用中的运行效果和工艺优势。经过实际运行监测,工程处理出水主要水质指标可达到GB 18918—2002《城镇污水处理厂污染物排放标准》一级A排放标准,并且该工艺设备具有运行成本低、抗冲击负荷能力强、运行管理方便等优点,可有效地解决目前农村地区由于资金、技术、人才等因素限制造成的污水处理能力低和管理水平低的问题,是一种适合我国农村地区污水处理的工艺设备。 相似文献
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我国京津冀地区近年频遭大气PM2.5污染侵扰,相关研究表明,既使关闭建筑外窗,大气中PM2.5仍可以通过渗透通风方式进入室内污染环境.为定量评价建筑渗透通风及无室内污染源条件下建筑结构(如外窗缝隙结构、房间建筑结构等)对室内ρ(PM2.5)的影响规律,基于北京市东城区、朝阳区6个不同建筑结构的房间室内外ρ(PM2.5)实时监测数据,重点比较分析了建筑结构对室内外ρ(PM2.5)关联特性的影响规律.此外,根据颗粒物穿透特性及沉降特性机理,提出了反映建筑外窗缝隙结构(如缝高、缝深)的无量纲特征参数AP与反映房间建筑结构(如层高、开间、进深)的无量纲特征参数Ak.在前期提出的室内ρ(PM2.5)预测模型基础上,进一步构建了二者(AP与Ak)对室内ρ(PM2.5)影响的评价模型,并通过实测数据验证了模型的正确性.结果表明:当室外PM2.5污染程度与气象条件一定时,建筑结构对I/O[室内外ρ(PM2.5)之比]影响较大,其范围在0.4~0.7之间;随着建筑外窗气密性等级的提高,对应室内ρ(PM2.5)呈显著的下降趋势.建筑外窗缝隙结构对室内ρ(PM2.5)影响程度远大于房间建筑结构,敏感性分析结果表明,当建筑外窗缝高每降低50%或缝深每提高50%,对应室内ρ(PM2.5)约可下降33.6%与31.9%.研究显示,气密性等级较高的建筑外窗缝隙缝高往往较小、缝深较长,渗透通风条件下对控制室内ρ(PM2.5)水平作用更显著。 相似文献
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生态高负荷土地快速渗滤系统处理猪场废水的效能及微生态 总被引:1,自引:1,他引:0
以经过厌氧反应器处理后的猪场废水为研究对象,探讨了新型生态高负荷土地快速渗滤系统对废水中COD、氨氮及总氮的去除情况;同时分析了该系统中的微生物群落结构以及过氧化氢酶、脲酶、硝酸盐还原酶的含量.结果表明,在水力负荷为11 cm·d~(-1)、进水COD为700 mg·L~(-1)左右的条件下,一级土地渗滤柱与二级土地渗滤柱对COD的去除率分别为78.8%与63.0%,总去除率达到了92.6%;而当水力负荷增大到22 cm·d~(-1)时,总的COD去除率仍在90.0%以上;该系统对于氨氮的去除更为显著,去除率可达99%左右.一级土地快速渗滤系统中上、中、下部的过氧化氢酶含量分别为1.899、0.990、0.323 m L·g~(-1),表明猪场废水中的有机物主要在该系统的上部与中部得以去除;二级土地快速渗滤系统上、中、下部的硝酸盐还原酶含量分别是3.453、3.831、1.971 m L·g~(-1),表明脱氮作用主要发生二级土地快速渗滤系统的上部与中部.该土地快速渗滤系统中微生物以Gram Negative与Gram Positive为主,特别是在二级土地快速渗滤系统中,AM Fungi与Actinomycetes占有一定比例,为猪场废水中难降解有机物的去除提供了保障. 相似文献
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紫色丘陵区不同弃土弃渣下垫面入渗特征及影响因素 总被引:5,自引:0,他引:5
采用环刀法研究了紫色丘陵区不同碎石含量弃土弃渣下垫面的入渗特征及影响因素.结果表明,不同弃土弃渣下垫面入渗性能随碎石含量的增加而差异显著,其中,碎石含量为40%的弃土弃渣下垫面初始入渗率、稳定入渗率及平均入渗率分别是土质弃渣下垫面的1.30、1.13和1.54倍.不同下垫面初始入渗率和稳定入渗率与弃渣初始含水率、容重呈显著负相关,与下垫面总孔隙度、非毛管孔隙度呈显著正相关.其中,初始入渗率与初始含水率相关系数在-0.689~-0.912之间,稳定入渗率与容重相关系数为-0.745~-0.999,且稳定入渗率随非毛管孔隙度增加而显著提高.Horton模型对不同弃土弃渣下垫面入渗率与时间拟合的可决系数在0.899以上,且Horton模型计算入渗率与实测入渗率的相对误差在0.07%~6.60%之间,是紫色丘陵区分析不同弃土弃渣下垫面入渗过程的适宜性模型.研究结果可为紫色丘陵区弃土弃渣水土流失量预测和评价提供技术参数. 相似文献
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Richard C. Warner Carmen T. Agouridis Page T. Vingralek Alex W. Fogle 《Journal of the American Water Resources Association》2010,46(4):724-732
Warner, Richard C., Carmen T. Agouridis, Page T. Vingralek, and Alex W. Fogle, 2010. Reclaimed Mineland Curve Number Response to Temporal Distribution of Rainfall. Journal of the American Water Resources Association (JAWRA) 46(4): 724-732. DOI: 10.1111/j.1752-1688.2010.00444.x Abstract: The curve number (CN) method is a common technique to estimate runoff volume, and it is widely used in coal mining operations such as those in the Appalachian region of Kentucky. However, very little CN data are available for watersheds disturbed by surface mining and then reclaimed using traditional techniques. Furthermore, as the CN method does not readily account for variations in infiltration rates due to varying rainfall distributions, the selection of a single CN value to encompass all temporal rainfall distributions could lead engineers to substantially under- or over-size water detention structures used in mining operations or other land uses such as development. Using rainfall and runoff data from a surface coal mine located in the Cumberland Plateau of eastern Kentucky, CNs were computed for conventionally reclaimed lands. The effects of temporal rainfall distributions on CNs was also examined by classifying storms as intense, steady, multi-interval intense, or multi-interval steady. Results indicate that CNs for such reclaimed lands ranged from 62 to 94 with a mean value of 85. Temporal rainfall distributions were also shown to significantly affect CN values with intense storms having significantly higher CNs than multi-interval storms. These results indicate that a period of recovery is present between rainfall bursts of a multi-interval storm that allows depressional storage and infiltration rates to rebound. 相似文献
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Does the Temporal Resolution of Precipitation Input Influence the Simulated Hydrological Components Employing the SWAT Model? 下载免费PDF全文
Andreas Bauwe Sara Tiedemann Petra Kahle Bernd Lennartz 《Journal of the American Water Resources Association》2017,53(5):997-1007
This study aimed to evaluate the influence of sub‐daily precipitation time steps on model performance and hydrological components by applying the Green and Ampt infiltration method using the Soil and Water Assessment Tool (SWAT). Precipitation was measured at a resolution of 0.1 mm and aggregated to 5‐, 15‐, 30‐, and 60‐min time steps. Daily discharge data over a 10‐year period were used to calibrate and validate the model. Following a global sensitivity analysis, relevant parameters were optimized through an automatic calibration procedure using SWAT‐CUP for each time step. Daily performance statistics were almost equal among all four time steps (NSE ≈ 0.47). Discharge mainly consisted of groundwater flow (55%) and tile flow (42%), in reasonable proportions for the investigated catchment. In conclusion, model outputs were almost identical, showing simulations responded nearly independently of the chosen precipitation time step. This held true for (1) the selection of sensitive parameters, (2) performance statistics, (3) the shape of the hydrographs, and (4) flow components. However, a scenario analysis revealed that the precipitation time step becomes important when saturated hydraulic conductivities are low and curve numbers are high. The study suggests that there is no need in using precipitation time steps <1 h for lowland catchments dominated by soils with a low surface runoff potential if daily flow values are being considered. Editor's note : This paper is part of the featured series on SWAT Applications for Emerging Hydrologic and Water Quality Challenges. See the February 2017 issue for the introduction and background to the series. 相似文献