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951.
针对目前铁路隧道超挖普遍较大的问题,从现场存在的钻孔质量不高、爆破装药结构不规范、封堵工艺落实不到位等方面进行分析,研究控制铁路隧道超挖的工艺措施。经现场多次试验证明,在周边眼采取PVC管材间隔装药及封堵水炮泥等一系列优化措施后,隧道超挖控制取得良好效果,在节约炸药单耗的同时,最大限度减少喷射混凝土超耗,降低施工成本、加快施工进度,同时也可避免因超挖太大给施工带来的危险。 相似文献
952.
介绍了机载相控阵雷达的主要工作方式,分析了机载相控阵雷达战术性能飞行验证的参数,讨论了机载相控阵雷达战术性能飞行检验的统计科目和统计方法,对机载相控阵雷达战术性能飞行检验中的数据处理进行了简要的探讨,为飞行试验方案的设计和相关标准的建立打下基础。 相似文献
953.
针对城市公共交通场站用地紧张和居民公交出行不便等问题,文中根据部分城市公共交通配套标准经验,并以土地利用和交通需求等相关理论为基础,构建建设项目公共交通设施配套规模的计算方法。方法根据建设项目的规模,推算项目需要的公共交通设施配套规模,最后以中山市城区的相关交通参数为例,代入模型进行计算,得出中山市公共交通设施配套标准。 相似文献
954.
This paper shows the results of a comparative fleet test the main objective of which was to measure the influence of Low Viscosity Oils (LVO) over the fuel consumption and CO2 emissions of urban buses. To perform this test, 39 urban buses, classified into candidate and reference groups depending on the engine oil viscosity, covered a 60,000 km mileage corresponding to two rounds of standard Oil Drain Interval (ODI). In the same way, for 9 buses of the 39 buses, the effect of differential LVO over fuel consumption and their interaction with engine LVO was assessed during the second ODI.Test results confirm that the use of LVO could reduce fuel consumption, hence CO2 emissions. However, special attention should be taken prior to its implementation in a fleet, particularly if the vehicles are powered by engines with high mechanical and thermal stresses during vehicle operation because this could lead to friction loss increase, loss of the potential fuel consumption reduction of LVO and, in the worst scenario, higher rates of engine wear. 相似文献
955.
956.
为研究大坡道米轨(齿轨)有砟轨道结构稳定性,通过建立米轨离散元和有限元轨排模型,分析该结构在不同坡度条件下道床阻力变化及在荷载作用下轨排纵、横向稳定性。研究表明:(1)受轨枕与道床之间正压力减小和道砟颗粒之间接触减弱的共同作用,随着坡度增大,轨枕道床纵、横向阻力逐渐降低,且降低幅度明显高于轨枕与道床间正压力的降低幅度;(2)随着坡度的不断增大,在纵向制动荷载作用下轨枕位移显著增大,且有砟道床整体稳定性逐渐降低;(3)综合考虑轨枕位移及有砟道床整体稳定性,建议米轨有砟轨道最大坡度不超过500‰;(4)在温度荷载及制动荷载作用下,为保证米轨铁路曲线段的横向稳定性,在坡度为250‰时,无齿轨段曲线半径≮700 m,有齿轨段曲线半径≮600 m。 相似文献
957.
With the continuous growing of the aquaculture industry and increasingly limited fish farming sites at close to shore areas both in Norway and worldwide, there is a need to develop fish farms suitable for aquaculture production in typical offshore environments. For this purpose, SALMAR has developed and deployed the Ocean Farm 1 facility for offshore fish farming.The main purpose of this paper is to develop a reliable numerical model and investigate the motion responses of the Ocean Farm 1 structure in waves and current. The established numerical model consists of the Ocean Farm 1's frame structure (with rigidly-connected circular column components), the net and the mooring system. The hydrodynamic external loads and coefficients of the frame structure are obtained by using potential flow theory. The quadratic drag load on the individual circular columns of the frame structure is formulated by a given drag coefficient. The loads on the net are formulated by using the screen model, where the Reynold number dependent lift and drag forces are formulated as a function of the solidity ratio Sn of the net, relative inflow angle and velocity. The hydrodynamic loads on the mooring lines are formulated using the Morison's equation and the structural responses of the mooring lines are obtained using a nonlinear FE model.With the developed numerical model, time domain simulations are performed. The simulation results are firstly validated against measured data from the decay tests, current tests, and regular wave tests. After the validation, numerical simulations are performed in different irregular wave and current combined weather conditions and the obtained motion response of Ocean Farm 1 are discussed and compared with available measurement data. 相似文献
958.
959.
Wind energy is clean and sustainable. Taiwan is establishing offshore wind farms using wind turbines in the Taiwan Strait. However, these are located in an earthquake-prone area with sandy seabed conditions. To ensure their safety and reliability, the turbines’ support structure must be protected against wind, waves, and seismic loads. Tuned mass dampers (TMDs) are commonly employed to reduce structural vibrations. A TMD is more simply incorporated into turbine structures than are other energy dissipation devices. In this study, a 1:25-scale test model with a TMD was constructed and subjected to shaking table tests to experimentally simulate the dynamic behavior of a typical 5-MW wind turbine with a jacket-type support structure and pile foundation. The scaled-down wind turbine model has a nacelle without rotating blades; therefore, the aerodynamic and rotational effects due to the rotating blades were ignored in this study. A large laminar shear box filled with saturated sandy ground was used to simulate the typical seabed conditions of Taiwanese offshore wind farms. The TMD system was designed to be tuned the first-mode frequency of the test model. Two ground accelerations, selected by considering wind farm site condition and near-fault characteristics, were used for excitation in the test. The responses of the test model with and without the TMD system were compared, and the influence of soil liquefaction on the effectiveness of TMD vibration control was addressed. 相似文献
960.
提出一种船用增压器的包覆层结构,其内层为绝热材料和吸声材料,外层为金属薄片。采用统计能量法(SEA)建立该结构的中高频段隔声数值模型,开展包覆层的隔声试验,隔声量实测值与仿真结果吻合较好,能验证数值建模的有效性。对包覆层的吸声材料的厚度、密度和流阻等参数进行优化设计,利用正交试验法设计数值试验组,采用极差和方差分析法分析影响材料隔声性能的关键因素,得出最重要的影响因素是材料厚度,在选型设计中还应考虑密度和流阻因素。当安装厚度受限时,可通过改变密度和流阻值来提高材料的隔声量。 相似文献