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《Journal of Manufacturing Processes》2014,16(2):312-319
The majority of the research activities in the area of warm forming are concentrated on demonstrating or simulating the improved formability associated with forming lightweight materials such as aluminum alloys at elevated temperatures. However, the ability to design the proper thermal management system within the forming tool is a critical aspect to delivering this technology as a viable, stable production alternative to traditional stamping. This work begins to address the thermal stability issues of this process by examining the impact of process cycle time on the parting surface temperature response. Cycle times of 10, 15, 30, and 300 s were evaluated using a reciprocating surface and a self-heated experimental block of 1020 steel fitted with resistance cartridge heaters. The presented results indicate that cycle time does not significantly impact the steady-state temperature response at the parting surface for a well-insulated die that has proper thermal management. Parting surface experimental results were compared to values obtained numerically and through the use of the novel thermal finite element analysis software PASSAGE/Forming®. 相似文献
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长期不同耕作方式对紫色水稻土重金属含量及有效性的影响 总被引:14,自引:5,他引:9
通过长期定位试验,研究了常规平作、水旱轮作、免耕冬水、垄作免耕和厢作免耕5种耕作方式对紫色水稻土剖面重金属(Fe、Mn、Cu、Zn、Pb、Cd)总量、有效量及水稻根、茎叶和糙米重金属含量的影响.结果表明,经过22 a的耕作,5种耕作方式对紫色水稻土剖面Fe、Cu、Zn、Pb、Cd总量的剖面分布状况影响不显著,而对土壤Mn的剖面分布状况影响显著,常规平作、水旱轮作及免耕冬水均导致表层土壤Mn向下层淋失.5种耕作方式下土壤Fe、Cu、Zn、Pb和Cd的有效量均随土层深度的增加呈降低趋势,而常规平作、免耕冬水、垄作免耕及厢作免耕土壤Mn有效量则表现出随土层深度的增加而增高的趋势.5种耕作方式下,表层土壤Fe、Mn有效量以水旱轮作最高,Zn、Pb有效量以常规平作最高,而Cu有效量受耕作方式的影响不显著.相关分析结果表明,表层土壤有效Fe与pH呈极显著的负相关关系,与有机质呈显著的负相关关系,有效Mn与pH和有机质均呈极显著的负相关关系,有效Zn与总Zn呈显著正相关关系.水旱轮作、垄作免耕及厢作免耕条件下水稻根部Fe、Mn含量,茎叶Fe、Mn、Cu、Cd含量,糙米Cu含量均高于常规平作和免耕冬水,水旱轮作能明显降低Cd向糙米的迁移系数,对降低糙米Cd含量有明显的效果,且水旱轮作条件下糙米Cd含量低于国家食品卫生标准.水稻根部Fe含量与pH呈极显著负相关关系,与有效Fe呈极显著正相关关系,根部Mn含量与pH呈极显著负相关关系,与有效Mn呈极显著正相关关系,茎叶中Mn含量与pH呈显著的负相关关系,与总Mn及有效Mn呈显著的正相关关系,茎叶和糙米Cu含量与pH均呈极显著的负相关关系,糙米中Zn含量与pH呈显著负相关关系,与CEC呈极显著正相关关系.结果表明,耕作方式主要通过影响土壤pH而影响土壤重金属的有效量及水稻重金属的含量,水旱轮作可提高表层土壤Fe、Mn活性,降低土壤Zn、Pb和Cd活性,并能在一定程度上降低糙米Pb、Cd含量,但也应注意长期的水旱轮作可能会导致表层土壤Mn过度向下层淋溶. 相似文献
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A Comprehensive Python Toolkit for Accessing High‐Throughput Computing to Support Large Hydrologic Modeling Tasks 下载免费PDF全文
Scott D. Christensen Nathan R. Swain Norman L. Jones E. James Nelson Alan D. Snow Herman G. Dolder 《Journal of the American Water Resources Association》2017,53(2):333-343
The National Flood Interoperability Experiment (NFIE) was an undertaking that initiated a transformation in national hydrologic forecasting by providing streamflow forecasts at high spatial resolution over the whole country. This type of large‐scale, high‐resolution hydrologic modeling requires flexible and scalable tools to handle the resulting computational loads. While high‐throughput computing (HTC) and cloud computing provide an ideal resource for large‐scale modeling because they are cost‐effective and highly scalable, nevertheless, using these tools requires specialized training that is not always common for hydrologists and engineers. In an effort to facilitate the use of HTC resources the National Science Foundation (NSF) funded project, CI‐WATER, has developed a set of Python tools that can automate the tasks of provisioning and configuring an HTC environment in the cloud, and creating and submitting jobs to that environment. These tools are packaged into two Python libraries: CondorPy and TethysCluster. Together these libraries provide a comprehensive toolkit for accessing HTC to support hydrologic modeling. Two use cases are described to demonstrate the use of the toolkit, including a web app that was used to support the NFIE national‐scale modeling. 相似文献
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Influence of temporally variable groundwater flow conditions on point measurements and contaminant mass flux estimations 总被引:2,自引:0,他引:2
Arno Rein Sebastian Bauer Peter Dietrich Christof Beyer 《Journal of contaminant hydrology》2009,108(3-4):118-133
Monitoring of contaminant concentrations, e.g., for the estimation of mass discharge or contaminant degradation rates, often is based on point measurements at observation wells. In addition to the problem, that point measurements may not be spatially representative, a further complication may arise due to the temporal dynamics of groundwater flow, which may cause a concentration measurement to be not temporally representative. This paper presents results from a numerical modeling study focusing on temporal variations of the groundwater flow direction. “Measurements” are obtained from point information representing observation wells installed along control planes using different well frequencies and configurations. Results of the scenario simulations show that temporally variable flow conditions can lead to significant temporal fluctuations of the concentration and thus are a substantial source of uncertainty for point measurements. Temporal variation of point concentration measurements may be as high as the average concentration determined, especially near the plume fringe, even when assuming a homogeneous distribution of the hydraulic conductivity. If a heterogeneous hydraulic conductivity field is present, the concentration variability due to a fluctuating groundwater flow direction varies significantly within the control plane and between the different realizations. Determination of contaminant mass fluxes is also influenced by the temporal variability of the concentration measurement, especially for large spacings of the observation wells. Passive dosimeter sampling is found to be appropriate for evaluating the stationarity of contaminant plumes as well as for estimating average concentrations over time when the plume has fully developed. Representative sampling has to be performed over several periods of groundwater flow fluctuation. For the determination of mass fluxes at heterogeneous sites, however, local fluxes, which may vary considerably along a control plane, have to be accounted for. Here, dosimeter sampling in combination with time integrated local water flux measurements can improve mass flux estimates under dynamic flow conditions. 相似文献
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《Chemosphere》2013,92(3):233-246
Organochlorine pesticides (OCPs) can cause environmental damage and human health risks since they are lipophilic compounds with high resistance to degradation and long half-lives in humans. As most persistent OCPs have been banned years ago, it is expected to find these compounds at trace levels in environment. Therefore, increasingly sensitive and reliable analytical techniques are required to ensure effective monitoring of these compounds. The aim of this review is to discuss extraction and clean-up methods used to monitor OCP residues in milk, reported in the last 20 years. To carry out this review, an exhaustive bibliographic review was conducted. Despite the disadvantages of conventional extraction and clean-up methods, such as liquid–liquid, solid-phase or Soxhlet extractions, these procedures are still used due to their reliability. New extraction methods, like solid-phase microextraction, matrix solid-phase dispersion or QuEChERS, have not been thoroughly evaluated for OCP determination in milk. Almost all the methodologies analyzed in this review presented good performance characteristics according to the performance acceptability criteria set in SANCO’s procedure. Comparison between limits of quantification (LOQ) and detection (LOD), for the reported methodologies, is not always possible due to the heterogeneity of the units. Thus, researchers should take into account an homogenization of LOD and LOQ units, according to the international regulations and MRLs established. Finally, more research is necessary to obtain the ideal methodology for OCPs determination in milk, which comprises the environmentally friendly characteristics of the new techniques and the reliability of the traditional methodologies. 相似文献