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81.
为解决由于隧道施工断面大、在开挖过程中产生的粉尘难以通过施工通风排除的问题,对秦岭天台山隧道(双向6车道)施工过程中钻孔、爆破、出渣、喷浆等不同工况下的隧道粉尘质量浓度进行现场实测,并根据现场实测结果,对隧道内各工况施工粉尘分布特性进行数值模拟研究,提出适合于大断面隧道施工的粉尘控制措施。现场测试结果表明,出渣和喷浆工况下,粉尘质量浓度超过规范要求数倍。通过数值模拟得到: 1)靠近掌子面40 m区域内粉尘质量浓度不稳定,下降趋势不明显; 2)在布置风管时,风管末段至掌子面距离建议取为60~80 m,以保证新鲜风以较大的喷射面抵达掌子面; 3)建议采用附壁风筒降尘+车载除尘方案,除尘效率达95%,能有效处理隧道各区域粉尘,且对施工造成的影响小。 相似文献
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83.
常莉蓉 《国防交通工程与技术》2010,8(4):67-70
重庆江北火车站大跨度钢管桁架无柱式雨棚,高14m,长540m,建筑面积达56230m2。结构工程跨度大,场地条件复杂,施工制约因素多,质量要求高。对主桁架等大型构件首次采用加工厂下料、现场加工制作、现场拼装、整体吊装的方案。详述了主桁架的吊装、焊接等工艺和施工控制措施。通过合理选择施工方案,严格按照工艺要求,合理安排施工程序,保证了工程如期保质保量的完成。 相似文献
84.
Chia-Juch Chang Robert D. Miles Kumares C. Sinha 《Transportation Research Part B: Methodological》1981,15(4):227-238
A regional railroad network is presented to evaluate the system's response to increased coal traffic. An optimal, multimodal, coal-shipping pattern is developed for the study region to minimize total costs and to efficiently use the existing network. A two-stage, general model allocates resources among demands and then assigns flows to the network according to efficiency criteria. The model is sufficiently general to permit modification for specific needs, assumptions and data. Government agencies and industries can apply the model in resource allocation decisions and transportation policy analysis. 相似文献
85.
阐述高压钠灯功率、亮度和寿命与电压的关系,分析能对电网电压波动快速响应,闭环自动稳压、可控平缓调压的智能装置的工作原理和节能模式,应用它在软启动和运行时,灯具电流几乎恒等于额定电流,因而,不仅可以大量节约电能,还可以延长灯具的使用寿命,并探讨它在集装箱堆场应用集中远程控制的方案。 相似文献
86.
分析离焦产生机理,并通过实验的方法,定量地分析离焦对光测的影响.有助于解决在进行大视场测量时,特别是对大视场内的运动目标位置进行测昔时,在什么位置标定既方便又不影响测量精度的难题. 相似文献
87.
AlterationIntroductionThereisastrongini6ractionamongtemPetalrefield,strCssfield,andmicrosttuctutulaltOrationinm8terialsduringtheirhotworking[l'2].Especiallyduringthecoolingprocess,inwhichtemPeratorechangnsgreatly,intendionsbecomemorecomplexbecauseoftransformationoccurmnce.Duringthehotdeformation,thingswillaPpearsuchas:a.hotdeformation,relatedtostressfieId,changesessentiallytheshaPeofmaterialsandcausesthevariationofthecontactstatebetWeenthedieandsample,resultinginchangeofthethermalboundnyco… 相似文献
88.
Time-series samples of settling particles were collected in the water column of Gaoping (formerly spelled Kaoping) Submarine Canyon (KPSC) with two sediment traps on taut-line moorings deployed at two different depths (60 and 280 m) between May 26 and June 27, 2004. Average total polycyclic aromatic hydrocarbon (PAH) concentrations of upper and lower trap array samples were 310 ± 61 ng g− 1 dw (range: 200–440) and 240 ± 36 ng g− 1 dw (range: 180–290), respectively. Principal component analysis results suggest that PAH sources in the trap-collected particles included diesel vehicle/coal burning, diagenetic sources, and petroleum release. PAH downward fluxes based on settling particles were estimated to be 12–44 μg m− 2 d− 1. These values are higher than those reported in the literature for most coastal areas. During the sampling period, both traps were significantly tilted by tidal current and fluctuated vertically. The upper traps experienced greater vertical movements, thus their particle characteristics (e.g., POC, particle mass, and fine particle fraction) varied more than those of the lower traps. Hourly depth variations of the tilted sediment trap array were echoed by the corresponding total PAH concentrations. Moreover, the PAH composition of the collected particles was related to the flow direction and speed. These observations suggest that PAHs can be used as an effective chemical tracer for the transport of terrestrial and marine particulates in a complex aquatic environment like Gaoping (Kaoping) Submarine Canyon. 相似文献
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90.
This paper offers novel insights to the design and implementation of an innovative state-of-charge (SOC) estimator for the lithium-ion (Li-Ion) series battery pack. The most interesting feature of this approach is that it can utilize information from each filtered terminal voltage of the Li-Ion cells connected in series for SOC estimation of the battery pack. Without actual sensing each discharging/charging current (DCC) applied to the Li-Ion cells, it is possible to extract each DCC estimation from the corresponding filtered terminal voltages with an equivalent electrical circuit model (EECM) identification of all Li-Ion cells in the battery pack. There are two advantages to SOC estimation of the battery pack with this approach. First, the proposal can be implemented simply and effectively, reducing the computational steps required for SOC estimation. By reducing computational steps, the proposal is expected to be more cost-effective. Second, the approach guarantees an improved SOC performance, even if the battery pack results in inevitable cell-to-cell variation among Li-Ion cells. Accordingly, there are fewer differences to previously estimated DCCs among Li-Ion cells. Specifically, all values from the estimated DCCs are properly compensated for by simultaneous parameter modification according to each cell’s electrochemical characteristics. Experimental results clearly demonstrate that our DCC sensorless SOC estimator provides robust SOC performance for the battery pack. This approach considered an experimental battery pack (12S1P) connected in series using 2.6 Ah LiCoO2 cells produced by Samsung SDI. 相似文献