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in the pipeline相关的网络例句

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与 in the pipeline 相关的网络例句 [注:此内容来源于网络,仅供参考]

The battery electrode is characterized in that the battery electrode comprises an electrode frame which is arranged in the battery body, movable electrode particles are piled in the electrode frame, the electrode particles are negative particles or positive particles made of solid electrode material, the electrode frame has net-shaped structure and is connectively provided with an input pipeline and an output pipeline which extend out of the battery body, and the electrode frame is connectively provided with an electrode post head.

其特征在于包括安装在电池体内的电极框,电极框内堆积可活动的电极粒子,所述的电极粒子为固体电极材料制成的阴极粒子或阳极粒子,所述的电极框为网状结构,电极框上连接设置伸出电池体外的输入管道、输出管道,电极框上还连接设置电极接线柱。

And detailedly analyzing reasons including these problems, it is can be found that not thinking of the slope of pipeline and the friction in the process of production water hammer pressure functions, but thinking of the effect of the slope pipeline in the process of production the consequent water hammer calculative continuity function , which results in the inconsequent illogicality in the whole process of producing.

对这些问题存在的原因进行了详细分析,发现在当前推导水击压强公式的过程中没有考虑管道的倾斜度和摩擦阻力的影响,而在后面水击计算的连续性方程的推导过程中则考虑了管道的倾斜度,这就导致了在当前连续性方程的整个推导过程中前后矛盾的不合理现象。

Secondly, detailedly analyzing reasons inducing these problems, author finds it is that not thinking of the slope of pipeline and the friction in the process of producing water hammer pressure functions, but, thinking of the effect of the slope of pipeline in the process of producing the consequent water hammer calculative continuity function, which results in the inconsequent illogicality in the whole process of producing.

接着,对这些问题存在的原因进行了详细分析,发现在当前推导水击压强公式的过程中没有考虑管道的倾斜度和摩擦阻力的影响,而在后面水击计算的连续性方程的推导过程中则考虑了管道的倾斜度,这就导致了在当前连续性方程的整个推导过程中前后矛盾的不合理现象。

The high speed advantage of FPGA's operation is made hard to demonstrate for the inconsequence in structural arrangement. The pipeline technology had well solved this problem. We presents a new pipeline optimization technology of inventer's control system based on FPGA,and completed the optimization design of the inventer controller. Analyzed the design process in detail and offered a kind of thought for the people who devoted to FPGA's application in power electronic field.

分析了"流水线操作"等设计优化问题,并针对逆变器控制系统中,控制系统算法呈多层结构,且层与层之间还有数据流联系,其执行顺序和数据流的走向较为复杂,不利于直接采用流水线技术进行设计的特点,提出一种全新的"分层多级流水线"设计技术,有效地解决了复杂控制系统的流水线优化设计问题。

In need of special note is the kitchen, equipment room is large and the places where the pipeline, to be used in control and equipment pipeline wall so that it can achieve the flexibility and modification requirements.

需要特别指出的是,厨房,设备室和大的地方的管道,用于控制和设备管道墙,以便它能够实现的灵活性和修改的要求。

The main research work and its results are: 1Empirical results are analysed for the relations of fault displacement and earthquake magnitude, and difference between permanent ground deformation and maxium dynamic relative displacement on the two sides of fault; 2An analytic method is proposed for resopnse of a buried pipeline due to earthquake fault movement; 3A new shell model with an equivalent boundary and relted finite element analysis method are proposed for estimating response of a buried pipeline under large fault movement; 4By the proposed method, damage performance of water supply steel pipelines with large diameter is simulated to the real cases in Kocaeli Earthquake and Ji-Ji Earthquake, and simulating results show the real failure mode of pipes is revealed; 5Effects of overlying soil and soft/hard interlayers are analyzed on ground rupture mode and degree due to earthquake fault, and some earthquake rupture phenomena in soil layers are theoretically described for the first time; 6Pipeline response characters are discussed for the case of considering effects of soil layers on ground rupture mode; 7Research results and proposed method are applied in seismic analysis of pipline acrossing fault in the Gas Tansportation Project from West to East in China.

主要工作和成果包括:1)分析了不同断层位错形式下地表破裂位错量与震级之间的经验关系,并基于集集地震近断层记录分析了断层两侧永久地面变形和地震动相对位移幅值之间的差别,为合理地考虑地震断层位错地面变形动态影响提供了依据;2)发展了断层位错地面大变形下管线反应分析模型并给出物理概念明确、简单实用的解析分析方法;3)建立了断层位错下埋地管线反应分析的等效边界壳模型有限元方法,方法中引入了以非线性弹簧形式模拟离断层较远处管段影响的等效边界,简化了计算模型并突出了近断层处管体反应;4)利用等效边界壳模型方法,对土耳其地震和集集地震中大口径埋地管线震害进行了模拟,结果表明所提方法可以更清地解释震害所表现的管体破坏特征;5)研究了覆盖土层和软硬夹层的存在对断层位错地面破裂形式和程度的影响,首次从理论上解释了某些地震地表破裂现象;6)探讨了考虑土层对断层位错地面变形影响的管体反应特征;7)本项目成果已在西气东输工程的管道跨断层抗震问题分析中得到了应用。

Buried depth is one of the important factors to be considered in pipeline design. There are different requirements to different areas. In the region of rock collapse, pipeline is easily damaged by rockfall impact.

管道埋深是管道设计时需考虑的重要因素之一,不同地域有不同的要求,在崩塌落石地区,由于落石对管道的冲击作用,管道容易发生破坏。

In general, the key measure to pipeline recovering is grouting, which means grouting in subjacent bed to raising the pipeline.

以北京地铁黄庄站下穿热力管道抬升注浆工程为研究对象,利用三维有限差分数值方法分析了新建车站开挖引起超大管道的变形特征。

The nonlinear hyperbolic conservation laws of the transient flow of the media in gas pipeline are hard to he solved, so, the control conservation laws are constituted of mass, momentum arid energy conservation laws, TVD/Godunov hydrid algorithm is used to simulate the transient flow in gas pipeline, and the traditional splitting approach processing nonlinear convection in momentum equation is dismissed ,the convection tern; is directly processed, in the way, the stablization of the algorithm and emulating accuracy of the transient flow are greatly improved.

针对管道中介质瞬变流动的非线性偏微分方程组难以解析求解的问题,由质量、动量、能量三个偏微分方程构成的控制方程组,应用TVD/Godunov混合算法数值模拟天然气管道中气体的瞬变流动,摒弃了传统的差分方法时动量方程非线性时流项的线性化处理,而直接处理非线性对流项,从而大大提高了算法的稳定性和管道瞬变流动的仿真精度。

There is no need of bottom valve in pipeline, only to ensure certain priming oil in pump body before work, which has not only simplified the pipeline system, but also improved working conditions.

管路中不需安装底阀,工作前只需保证泵体内储有定量引液即可。因此简化了管路系统,又改善了劳动条件。

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