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被动控制装置改进轴流风机失速余度的实验研究 总被引:2,自引:0,他引:2
1前言近年来,使用被动控制装置改进风机的失速特性一直引起风机设计和研究人员的重视。例如:在转子前加装可调进口导叶,在转子叶尖区吹气和放气,机匣处理装置(轴向、斜向和周向开缝)等来抑制风机失速的技术已被实际应用。但这些装置仍然存在着一些缺点。例如:降低了风机的最高效率尚2%-4%),改进失速余度的范围小,大约只有20%的流量失速金度的改进.以及装置本身结构复杂,增加了造价。因而一种被称为空气分流器的被动控制技术,首先由NBAHOB;C.K申请了专利川。由于空气分流器在控制轴流风机失速有很好的效果,因而许多… 相似文献
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HL-2A和HL-1M装置采用了激光吹气注入高Z杂质来缓减大破裂中的等离子体电流衰竭,并给出了初步实验结果。在HL-2A装置上建立了利用MHD扰动的参量预报放电破裂先兆的报警系统,研制了MHD实时检测与处理系统,实现了放电破裂先兆的预报、快速触发激光吹气、形成阻性高辐射等离子体、消耗热能和磁能,缓减大破裂。实验证明,这是一种使得大型聚变实验装置在放电破裂之前显著减少等离子体中热能和磁能,而且能安全终止放电的简单、快速和有效的途径。 相似文献
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利用有机玻璃管、吸管、泡沫球等简易材料自制了演示流体压强与流速关系的实验装置。该装置有效地解决了小球随意滚动、吹气方向不固定等问题。实验用泡沫球代替乒乓球,并将其放置在玻璃管中放置,使实验过程不受外界空气影响,且较轻的泡沫球更易运动,实验效果更明显。利用该原理还自制了模拟非洲草原犬鼠洞穴的演示装置,有趣且直观地演示了犬鼠洞穴中的气体流向。 相似文献
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HL-2A装置激光吹气系统采用了全新自动控制的设计方法,实现了杂质注入量、靶片位移以及激光器被触发的时刻的精确自动控制.运行结果表明,该系统能把杂质的注入量控制在适当的水平,既不对等离子体约束产生影响,又便于光谱测量和杂质粒子输运研究.给出了激光吹气系统的设计,以及初步的实验结果. 相似文献
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HL—1M装置等离子体离子温度测量 总被引:3,自引:3,他引:0
张集泉 《核聚变与等离子体物理》1998,18(A07):33-38
在HL-1M托卡马克装置上,利用8通道中性粒子能谱仪测量的等离子体离子温度。在等离子体电流和密变化、激光吹气、弹丸注入,超声分子束注入和低混杂波加热等实验条件下,观测了Ti的变化。 相似文献
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基于紧凑重复频率Tesla变压器实验平台,运用设计加工的紧凑型内部气流循环式火花隙开关,对吹气提高火花隙开关重复频率运行性能进行系统的实验研究,结果表明:重复频率小于50 Hz时,火花隙开关击穿电压不稳定度(RMS)小于5%,不需要吹气;在给定吹气速度下,火花隙开关重复频率运行存在临界重复频率;火花隙开关重复频率运行存在最佳吹气速度,且最佳吹气速度与重复频率之间满足线性关系,并可由实验确定;在优化吹气速度条件下,当气压处于0.7~1.5 MPa范围时,该火花隙开关击穿电压不稳定度(RMS)小于3%;在2.0 MPa的压强范围内,该吹气式火花隙开关可稳定工作至重复频率300 Hz,击穿电压400 kV。 相似文献
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描述了CCD相机在HL-1M装置上的应用。报告了中性束、分子束、弹丸注入和激光吹气实验的布置、拍摄的图象和一些实验结果。对实验现象作了解释。 相似文献
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针对采用主动式扩压器的自由旋涡气动窗口,实验考察了扩压器入口面积比对扩压器压力恢复性能及自由旋涡气动窗口密封性能的影响。结果表明:入口面积比是影响扩压器压力恢复性能的重要因素;通过优化扩压器入口面积比,可以提高气动窗口密封压比和稳定性。主动式扩压器比传统扩压器具有更小的最佳入口面积比,使气动窗口射流更接近于理想自由旋涡射流;主动式扩压器最佳入口面积比约为2.03。在最佳入口面积比情况下,扩压器内端壁吹气临界驻室压力最低,外端壁吹气压力对密封压力基本没有影响。 相似文献
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目前理论、实验以及数值模拟主要研究自由来流中的小扰动与壁面局部粗糙相互作用激发边界层感受性问题. 但是, 针对自由来流湍流与壁面局部吹吸相互作用诱导边界层感受性的相关报道甚少. 本文采用直接数值模拟和快速傅里叶变换的方法, 数值研究了二维平板壁面具有局部吹吸的边界层感受性问题. 结果发现, 在二维边界层内能找到一组被激发产生的Tollmien-Schlichting(T-S)波波包的包络序列以及从波包中能够分离出一组稳定的、中性的和不稳定的T-S波, 证明了二维边界层内感受性现象的存在性. 经数值计算获得了T-S波波包传播的群速度; 并建立了自由来流湍流强度、壁面局部吹吸强度和长度与二维边界层感受性之间的关系, 获得了与Dietz感受性实验相类似的结论. 另外, 还发现在自由来流湍流与壁面局部吹、吸相互作用下能诱导二维边界层内产生相位相反的T-S波. 依据这一理论机理来优化设计局部吹吸装置, 不但能促使层流向湍流转捩的提前, 也可以延迟转捩过程的发生, 达到控制湍流运动的目的. 相似文献
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Pump-probe measurements are presented of gain compression and recovery in a series of four semiconductor optical amplifiers of different lengths but otherwise identical structures. A continuous wave probe beam from a tunable laser is used to measure the wavelength dependence of gain compression and recovery times. A good level of agreement is obtained when these results are compared with numerical simulations using a model that includes the material gain spectrum, saturation effects and the variation of optical intensities with longitudinal position in the device. In addition the experimental results are interpreted in terms of a recent theory that offers approximate analytic expressions connecting recovery time with transmission gain. The spectral dependence of the recovery time and the gain are used to verify the correlations between these quantities and their dependence on device length. The results for recovery time show a strong dependence on probe wavelength with a pronounced minimum which is coincident with the peak of the gain spectrum for each device. A rather weak correlation of speed with length is found. 相似文献
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针对在Z型管道中传输的高能量密度激光束受到的气体热效应问题,采用光波标量衍射方程计算光传输、N-S方程计算管道内流场,仿真计算了以不同的速度沿管道轴向吹入对激光能量无吸收的气体时,由于气流扰动对出射光束远场光斑质量的影响。结果表明,在采用纵向吹气减小气体热效应对光束传输的影响时,应尽可能采用大气量、低流速的方案,既有利于排空管道中的杂质气体,减小气体热效应,又有利于减小管道中流场密度分布的不均匀性,从而保证出射光束的质量。 相似文献
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Peshkovsky AS Forguez J Cerioni L Pusiol DJ 《Journal of magnetic resonance (San Diego, Calif. : 1997)》2005,177(1):67-73
A simple Q-damper device for active probe recovery time reduction is introduced along with a straightforward technique for the circuit's component value optimization. The device is inductively coupled to a probe through a coupling transformer positioned away from the main coil, which makes the design independent of the coil type being used. The Q-damper is a tuned circuit, which is resonant at the same frequency as the probe and can be actively interrupted. When the circuit is interrupted, it is detuned and, thereby, is uncoupled from the probe, which operates normally. Turning the device on leads to re-coupling of the circuits and causes splitting of the probe's resonance line, which can be observed through its drive port. A resistance of an appropriate value is introduced into the Q-damper circuit, resulting in smoothing of the resonance splitting into one broad line, representing the coupled system's low-Q state, in which the energy stored in the main coil is efficiently dissipated. The circuit's component values are optimized by monitoring the shape of this low-Q state. Probe recovery time reduction by, approximately, an order of magnitude has been obtained with this device. Application of the device during an NQR experiment led to an increase in the signal-to-noise ratio by a factor of 4.9. 相似文献
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V. V. Bely S. V. Porozov V. V. Vasiliev A. A. Dekterev E. S. Tepfer 《Thermophysics and Aeromechanics》2007,14(2):287-299
For the purpose of the development and introduction of the arrangements aimed at increasing the slagless power, economy, and
reliability of the P-67 boiler of the 800 MW unit of the Berezovskaya Power Plant No. 1, the variation of heat-engineering
characteristics of the coal (lignite) of the open-cast mine “Berezovsky-1” and its slag properties was investigated, the aerodynamics,
heat exchange, formation of nitrogen oxides, and the intensity of local slag formation for different operation regimes and
variants of the reconstruction of the furnace-burner device were modelled mathematically, the thermal efficiency of furnace
walls was studied experimentally during their long-term operation, including the time after their mechanical cleaning, modernization
of the system of water sootblowing, under low air excess, coal dust coarsening, loading the lower rows of burners, and lower
air blowing. 相似文献
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The cross gain modulation, the cross phase modulation and their recovery time in the SOAs with the various lengths were experimentally investigated. It was found that these values strongly depended on the device length. 相似文献