查询词典 damped harmonic oscillation
- 与 damped harmonic oscillation 相关的网络例句 [注:此内容来源于网络,仅供参考]
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The stress was the study of the new methods of calculation the harmonic voltage and the harmonic current, and a new concept of filter ratio to evaluate the actual effect of single harmonic filter was raised considering the background harmonics. As well, the calculation mode of the single harmonic filter was also given based on the concept of filter ratio; it can offer effect data to evaluate the actual filter ratio of the single harmonic filter. At the same time, a method of designing the single harmonic filter was given, too, considering the background harmonics of the power system. In this paper, both the computer analysis and the proven had been done. And the result was shown to be that the voltage aberration and the harmonic current were decreased, and that the actual filter ratio of single harmonic filter was raised. The reason that we must consider the background harmonics when designing a single harmonic filter was also expatiated in this paper.
重点研究了考虑电网背景谐波下谐波电压、电流的计算方法,提出了用滤波率来评价单调谐滤波器安装容量利用率的概念,基于滤波率,分别给出了不考虑、考虑电网背景谐波时,单调谐滤波器的计算模型,为定量分析和评价单调谐滤波器的实际补偿效果提供了依据:并以此提出了考虑电网背景谐波的单调谐滤波器计算机辅助优化设计方法,并经计算机仿真分析、论证,减少了负载母线谐波电压畸变率和注入系统的谐波电流,有效地提高了单调谐滤波器的滤波效果,阐述了单调谐滤波器的设计过程中要考虑电网背景谐波的理论和实际意义。
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Harmonic Drive Technical Dynamic League Group Co., Ltd. is consisted of Beijing Feida CTKM Harmonic Drive Technology Innovation Co., Ltd., Beijing CTKM Harmonic Drive Co., Ltd. and other units. The group company is home to many experts, professors and researchers, who have been in the field of harmonic drive for years, and have had a number of key results of harmonic drive technology, including series harmonic drive products with 8 different structures. The group has the strongest capability in harmonic drive technology innovation, and has made important contributions to the development of China's harmonic drive technology.
由北京飞达克美谐波传动技术创新有限公司和北京中技克美谐波传动有限责任公司等单位组成的动态联盟集团公司集中了我国多年来从事谐波传动技术研究的专家,教授及科技人员,曾主持完成我国多项谐波传动技术成果,开发出八个不同结构的谐波传动系列产品,具有最强的谐波传动技术创新能力,为我国的谐波传动技术的发展做出了重大贡献。
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The paper consists of four chapters:In chaper 1, we introduce the background and signficance, research and actuality on oscillation of functional partial differential equations; we present research subject in this paper;In chaper 2, we discuss oscillatory property of systems of parabolic differential equations with delays and obtain necessary and sufficient conditions for the oscillation of their solutions; we show the difference between oscillatory property of systems of parabolic differential equations with delays and that of systems of partial differential equtions without delays; we explain the main results with examples;In chapter 3, we discuss oscillatory property of systems of functional parabolic differential equations of neutral type; we obtain some sufficient conditions for the oscillation or full oscillation of their solutions under some conditions; we explain the main results with examples;In chapter 4, we discuss oscillatory property of systems of functional hyperbolic differential equations of neutral type; we obtain sufficient conditions for the oscillation or full oscillation of their solutions under some conditions; we explain the main results with examples.
全文共分四章:第一章简要介绍了泛函偏微分方程的振动的背景和意义、对其研究的简单历史和现状,给出了本文的主要研究对象;第二章讨论了一类时滞抛物方程组解的振动性质,获得了判断其所有解振动的一个易于验证的充要条件;指出了这类具有时滞偏差变元的抛物方程组解的振动性质和不具有时滞偏差变元的抛物方程组解的振动性质的差异;并举例对主要结果进行阐明;第三章讨论了一类中立型抛物方程组解的振动性质,获得了在给定的条件下其所有解振动或全振动的若干充分条件;并举例对主要结果进行阐明;第四章讨论了一类中立型双曲方程组解的振动性质,获得了在给定的条件下其所有解振动或全振动的若干充分条件;并举例对主要结果进行阐明。
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Firstly, the mechanism of heat transfer enhancement by oscillation heat surface is discussed in natural convection scene. For different oscillation amplitude and Rayleigh number, the frequency that the heat transfer rate of oscillation heat surface is higher than non-oscillation condition is found and called critical oscillation frequency. The limitation enhancement of similar physical model is still researched by this study in mixed and forced convection scenes for different amplitude and Grashof number. Generally, that a heat surface subject to a oscillation motion is advantageous to convective heat transfer is a well-known tuition.
首先探讨在垂直管道内振动高温面於自然对流领域内提升高温面热传效率的机制,并且针对不同的振幅与雷利数求得加入振动条件后,高温面散热效果可以优於稳态非振动高温面散热效果的临界振动频率;进而探讨当垂直管道流进入混合对流与强制对流范围时,在不同的振幅与葛瑞秀夫数下,亦可发现加入振动条件后,振动高温面之散热效果可以优於稳态非振动高温面散热效果的临界振动频率。
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The experiment shows that:(1) In certain light intensity and electric field ranges (145~305V/cm) the material Si∶ with a resistivity of 1E4Ω·cm exhibits a current oscillation phenomenon at liquid nitrogen temperature;(2) At a certain electric field,the waveform of the current oscillation is stable and does not change with time;(3) The dependence relation between the oscillation frequency and light-intensity can be expressed by f=f0(L/L0)α where L0 is the minimum light-intensity needed to stimulate oscillation,f0 is the frequency under L0,L is the intensity of the light,and α is a coefficient that increase with electric field;(4) The modulating coefficient K K=(Imax-Imin/Imax decreases as the light increases;(5) The maximum value of the oscillation Imax decreases with the increase of the light-intensity while the minimum value of oscillation Imin increases slowly.
结果表明:在一定光照和电场范围内(276~305V/cm ,电阻率为10.4Ω·cm的材料在液氮温度下显示出电流振荡特性;在一定的电场下,电流振荡波形是固定的,不随时间变化;振荡频率随光照强度的增大而线性增大;调制系数随着光强的增强而减弱;振荡的最大值随着光照强度增大而减小,最小值随着光强增大而缓慢增大。
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This paper compared continuous casting mold oscillation types between nonsinusoidal oscillation and triangle oscillation, analyzes their oscillation waves and oscillation parameter s.
本文对非正弦振动和三角形振动这两种不同的连铸结晶器振动方式进行比较,分析二者振动波形及振动参数,确定适合高速连铸的振动参数的选择范围,选出最佳的振动形式。
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The oscillation performance of jet, as oscillation frequency, is the essential data for designing the fluidic device, which is also the key factor that influence the coupling effect of fluidic device and receiving tube. This paper does experiment on the oscillation availability and frequency of feedback jet-oscillation gas wave refrigeration. As a conclusion, the jet oscillates only in a certain range of geometrical sizes and operating conditions. Under the condition of high pressure ratio, the frequency of the jet"s oscillation is only affected by the feedback tube"s length and chamber remarkably. Under the condition of low pressure ratio, the frequency descends with rise of the pressure ratio.
本文将跨音速正反馈射流振荡器与接受管耦合,对耦合后的射流振荡气波制冷机的可振性、振荡频率以及它们的影响因素作了实验研究,得出如下结论:射流只在一定的操作条件和几何结构尺寸范围内才能稳定振荡;射流的振荡频率在较高压比下只受反馈管长和反馈管容腔大小的显著影响,在小压比下随压比的增大而增加;其它结构尺寸和操作条件只影响可振性。
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Firstly, the mechanism of heat transfer enhancement by oscillation heat surface is discussed in natural convection scene. For different oscillation amplitude and Rayleigh number, the frequency that the heat transfer rate of oscillation heat surface is higher than non-oscillation condition is found and called critical oscillation frequency. The limitation enhancement of similar physical model is still researched by this study in mixed and forced convection scenes for different amplitude and Grashof number.
首先探讨在垂直管道内振动高温面於自然对流领域内提升高温面热传效率的机制,并且针对不同的振幅与雷利数求得加入振动条件后,高温面散热效果可以优於稳态非振动高温面散热效果的临界振动频率;进而探讨当垂直管道流进入混合对流与强制对流范围时,在不同的振幅与葛瑞秀夫数下,亦可发现加入振动条件后,振动高温面之散热效果可以优於稳态非振动高温面散热效果的临界振动频率。
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The motion of a type of nonlinear damped oscillation is analyzed to resort the method of numerical analysis, and compared it with the motion of the linear damped oscillation.
摘要用数值分析方法分析一类非线性阻尼振动问题,与线性阻尼振动进行比较,得到非线性阻尼振动状态每次过θ=0位置的时刻稍后于线性阻尼振动状态。
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The motion of a type of nonlinear damped oscillation is analyzed to resort the method of numerical analysis,and compared it with the motion of the linear damped oscillation.
用数值分析方法分析一类非线性阻尼振动问题,与线性阻尼振动进行比较,得到非线性阻尼振动状态每次过θ=0位置的时刻稍后于线性阻尼振动状态。
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- 推荐网络例句
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The witness also told the jury at the Royal Courts of Justice in London that he saw a paparazzo fighting with a member of the public who was trying to stop him taking pictures in the minutes before the emergency services arrived.
他还告诉在伦敦皇家法庭的陪审团,在急救服务到来之前,他当时看见一个狗仔队正和一群阻止他拍照的人打架。
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The entire N/C program on a tape is made up of an accumulation of these successive data blocks.
纸带上的整个数控程序由这些连续数据单元连接而成。
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My master$s troops have been dispatched to your aid.
我的主人的部队正在前往你那里的路上。