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51.
桥梁混凝土水管冷却温度场有限元分析 总被引:6,自引:0,他引:6
针对混凝土水管冷却温度场的计算问题,分析了当前冷却水管有限元分析的主要方法,对多重网格法进行有效的处理,从而在不增加计算时间的前提下能更准确地计算出水管冷却温度场。基于这种处理方法,结合通用软件ANSYS对某高墩大跨刚构桥桥墩混凝土水管冷却温度场进行了仿真分析,计算结果与实测数据比较表明该方法计算精度是较高的。 相似文献
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汽车制动液的发展与选用 总被引:1,自引:0,他引:1
汽车制动液是保证车辆有效制动和行驶安全的专用化学制品。介绍了制动液的基本要求、发展概况、以及制动的性能和选用中应注意的事项。 相似文献
54.
Evaluation of added resistance in regular incident waves by computational fluid dynamics motion simulation using an overlapping grid system 总被引:2,自引:0,他引:2
A computational fluid dynamics simulation method called WISDAM-X was developed to evaluate the added resistance of ships in waves. The Reynolds-averaged Navier–Stokes (RANS) equation was solved by the finite-volume method and a MAC-type solution algorithm. An overlapping grid system was employed to implement rigorous wave generation, the interactions of ships with incident waves, and the resultant ship motions. The motion of the ship is simultaneously solved by combining the solution of the motion of the ship with the solution of the flow about the ship. The free surface is captured by treatment by the density-function method. The accuracy of WISDAM-X is examined by a comparison with experimental data from a container carrier hull form, and shows a fairly good agreement with respect to ship motion and added resistance. Simulations were also conducted for a bow-form series of a medium-speed tanker to examine the effectiveness of the WISDAM-X method as a design tool for a hull form with a smaller resistance in waves. It was confirmed that the WISDAM-X method can evaluate the added resistance with sufficient relative accuracy and can be used as a design tool for ships. 相似文献
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为了更好地优化纯电动汽车动力电池系统的加热策略,以磷酸铁锂电池包为研究对象,测试其在3种不同环境温度下的电池降温性能,结合实际环境的影响,建立电池降温速率计算模型并通过测试验证。 相似文献
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发动机的正常运转与发动机冷却液密不可分,本文主要探讨了乙二醇型汽车发动机冷却液的科学检测和正确使用。发动机冷却液,俗称防冻液,是发动机正常运转不可缺少的散热介质,能保持发动机在最有利的工作温度范围内运行,避免因发动机温度过高或过低带来的不良后果。根据发动机运行的情况对冷却液进行科学的检测、正确的使用和更换会直接影响发动机的使用寿命。 相似文献
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Objective To analyze the effect of three therapeutic methods to find an optimal approach to the treatment of intracranial bacterial infection by retrospectively reviewing 33 intracranial bacterial infection patients who were admitted from 1995 to 2008 in oar hospital. Methods The treatments by intermittent lumbar puncture,continuous lumbar subarachnoid space drainage, and embedment of Ommaya cyst for continuous drainage from the ventricles were performed in 15 cases, 12 cases, and 6 cases respectively along with intravenous application of full dose of antibiotics. Results Nineteen cases were cured and the best prognosis was from the group of Ommaya cyst embedment and continuous drainage from the ventricles. Conclusion Management goals are prompt recognition of the central nervous system (CNS) infection, rapid identification of causative organisms and initiation of treatment with the optimal management methods for complications. Embedment of Ommaya cyst for continuous drainage from the ventricle is a safe and effective treatment for intracranial bacterial infection. 相似文献
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A flow-dependent critical-point method for investigating topographically controlled flow in natural channels is applied to the bottom current through the Irbe Strait connecting the Baltic proper and the Gulf of Riga. This approach is based on the functional formalism due to Gill [Gill, A.E., 1977. The hydraulics of rotating-channel flow. J. Fluid Mech., 80, 641–671.], and here is used for the stratified flow structure observed during the IRBEX-95 field campaign. A critical section of the realizable flow regime was found to be located slightly downstream of the most pronounced horizontal constriction of the channel. The predicted baroclinic volume flux 7200 m3 s−1 overestimates the observed mean bottom-water transport by around 30%, a discrepancy which most likely can be explained by the lack of sea level conditions and friction in the model. 相似文献
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研究车辆在怠速工况下的发动机舱热空气回流问题,基于OpenFOAM 软件进行回流计算方法的开发。通过设置监控面及组分转换面来重新定义格栅新空气和舱内回流热空气等组分,可直接计算出回流在监控面上的分布及回流率和回流量。根据开发的方法对某款插电式混合动力汽车(Plug-in Hybrid Electric Vehicle,PHEV)车型进行计算并提出不同的优化方案,使其发动机舱回流率从32.7% 分别降低至24.0%和9.3%,回流量从0.169 kg/s分别降低至0.128 kg/s和0.048 kg/s,从而降低了冷凝器等散热器的进风温度,提高了怠速工况下热管理系统的性能。 相似文献