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991.
Lei Wang Mirko Salewski Bengt Sundén Andreas Borg Hans Abrahamsson 《International Communications in Heat and Mass Transfer》2012
The endwall heat transfer characteristics of forced flow past bluff bodies have been investigated using liquid crystal thermography (LCT). The bluff body is placed in a rectangular channel with both its ends attached to the endwalls. The Reynolds number varies from 50,000 to 100,000. In this study, a single bluff body and two bluff bodies arranged in tandem are considered. Due to the formation of horseshoe vortices, the heat transfer is enhanced appreciably for both cases. However, for the case of two bluff bodies in tandem, it is found that the presence of the second bluff body decreases the heat transfer as compared to the case of a single bluff body. In addition, the results show that the heat transfer exhibits Reynolds number similarity. For a single bluff body, the Nusselt number profiles collapse well when the data are scaled by Re0.55; for two bluff bodies arranged in tandem, the heat transfer scaling is changed to Re0.51, indicating that the power index of Reynolds number is flow dependent. 相似文献
992.
Statistical accident data plays an important role for traffic safety development involving the road system, vehicle design, and driver education. Vehicle manufacturers use data from accident mail surveys as an integral part of the product development process. Low response rates has, however, lead to concerns on whether estimates from a mail survey can be trusted as a source for making strategic decisions. 相似文献
993.
Protein phosphorylation is a post-translational modification that is essential for the regulation of many important cellular activities, including proliferation and differentiation. Current techniques for detecting protein phosphorylation in single cells often involve the use of fluorescence markers, such as antibodies or genetically expressed proteins. In contrast, infrared spectroscopy is a label-free and noninvasive analytical technique that can monitor the intrinsic vibrational signatures of chemical bonds. Here, we provide direct evidence that protein phosphorylation in individual living mammalian cells can be measured with synchrotron radiation-based Fourier transform-infrared (SR-FT-IR) spectromicroscopy. We show that PC12 cells stimulated with nerve growth factor (NGF) exhibit statistically significant temporal variations in specific spectral features, correlating with changes in protein phosphorylation levels and the subsequent development of neuron-like phenotypes in the cells. The spectral phosphorylation markers were confirmed by bimodal (FT-IR/fluorescence) imaging of fluorescently marked PC12 cells with sustained protein phosphorylation activity. Our results open up new possibilities for the label-free real-time monitoring of protein phosphorylation inside cells. Furthermore, the multimolecule sensitivity of this technique will be useful for unraveling the associated molecular changes during cellular signaling and response processes. 相似文献
994.
EBSD技术在大塑性变形制备超细晶与纳米材料中的应用:试样制备、参数优化与数据分析 总被引:1,自引:0,他引:1
在场发射扫描电镜的帮助下,电子背散射技术(EBSD)能用来研究大小低达几十纳米的晶粒(或亚晶粒),其角分辨率达~0.5°。EBSD 技术的快速发展(电子衍射花样的采集速度已高达1100点/s)使其相关领域的科技论文发表数量迅速增加。本文评述了 EBSD 的试样制备、参数优化和数据分析,特别是在大塑性变形(SPD)制备超细晶和纳米材料方面的应用。总结了电化学抛光、二氧化硅乳液机械抛光和离子束抛光等EBSD试样制备技术的优缺点和实用参数。结果表明,离子束抛光技术是一项通用的、几乎适用于所有EBSD试样的有效抛光方法。随着EBSD扫描步长的变化,花样的标定率存在一个极大值。最优化的EBSD扫描步长取决于试样图片的放大倍数和数据采集板的分辨率(或电子步长)。对晶粒和亚晶粒、织构和晶界结构等进行分析是EBSD的基本功能。EBSD也可对塑性变形的应变和存储能等进行分析。 相似文献
995.
大塑性变形纳米结构Al-Mg合金中的形变缺陷和电子辐照效应 总被引:1,自引:0,他引:1
为澄清大塑性变形纳米结构Al-Mg合金中形变缺陷形成的本质,采用高分辨透射电子显微镜(HRTEM)研究电子辐照对高压扭转合金中面缺陷形成的影响。结果表明:对已有高密度面缺陷的HRTEM图像,经电子束照射一段时间后,这些面缺陷会完全消失;而在没有缺陷的HRTEM图像区域进行电子辐照,即使电子束的照射提高到足以在该区域击出孔洞,整个过程均未观察到任何晶格缺陷。因此,高压扭转合金中的面缺陷主要来源于极度的塑性变形,而与HRTEM观察过程中的电子辐照效应无关。 相似文献
996.
Peter?J.?H.?HulshofEmail author Peter?T.?Vanberkel Richard?J.?Boucherie Erwin?W.?Hans Mark?van?Houdenhoven Jan-Kees?C.?W.?van?Ommeren 《OR Spectrum》2012,34(2):391-405
Outpatient clinics traditionally organize processes such that the doctor remains in a consultation room while patients visit
for consultation, we call this the Patient-to-Doctor policy (PtD-policy). A different approach is the Doctor-to-Patient policy
(DtP-policy), whereby the doctor travels between multiple consultation rooms, in which patients prepare for their consultation.
In the latter approach, the doctor saves time by consulting fully prepared patients. We use a queueing theoretic and a discrete-event
simulation approach to provide generic models that enable performance evaluations of the two policies for different parameter
settings. These models can be used by managers of outpatient clinics to compare the two policies and choose a particular policy
when redesigning the patient process. We use the models to analytically show that the DtP-policy is superior to the PtD-policy
under the condition that the doctor’s travel time between rooms is lower than the patient’s preparation time. In addition,
to calculate the required number of consultation rooms in the DtP-policy, we provide an expression for the fraction of consultations
that are in immediate succession; or, in other words, the fraction of time the next patient is prepared and ready, immediately
after a doctor finishes a consultation. We apply our methods for a range of distributions and parameters and to a case study
in a medium-sized general hospital that inspired this research. 相似文献
997.
Eva Hopma Ashwin Ittoo Yuan Lu Ilse Luyk Laura Maruster Joël Ribeiro Ton Weijters Hans Wortmann 《Quality and Reliability Engineering International》2012,28(8):873-886
Advance technology development and wide use of the World Wide Web have made it possible for new product development organizations to access multi‐sources of data‐related customer complaints. However, the number of customer plaints of highly innovative consumer electronic products is still increasing; that is, product quality and reliability is at risk. This article aims to understand why existing solutions from literature as well as from industry to deal with these increasingly complex multiple data sources are not able to manage product quality and reliability. Three case studies in industry are discussed. On the basis of the case study results, this article also identifies a new research agenda that is needed to improve product quality and reliability under this circumstance. Copyright © 2011 John Wiley & Sons, Ltd. 相似文献
998.
Ekroll IK Torp H Løvstakken L 《IEEE transactions on ultrasonics, ferroelectrics, and frequency control》2012,59(6):1182-1192
The trade-off between temporal and spectral resolution in conventional pulsed wave (PW) Doppler may limit duplex/triplex quality and the depiction of rapid flow events. It is therefore desirable to reduce the required observation window (OW) of the Doppler signal while preserving the frequency resolution. This work investigates how the required observation time can be reduced by adaptive spectral estimation utilizing 2-D spatial information obtained by parallel receive beamforming. Four adaptive estimation techniques were investigated, the power spectral Capon (PSC) method, the amplitude and phase estimation (APES) technique, multiple signal classification (MUSIC), and a projection-based version of the Capon technique. By averaging radially and laterally, the required covariance matrix could successfully be estimated without temporal averaging. Useful PW spectra of high resolution and contrast could be generated from ensembles corresponding to those used in color flow imaging (CFI; OW = 10). For a given OW, the frequency resolution could be increased compared with the Welch approach, in cases in which the transit time was higher or comparable to the observation time. In such cases, using short or long pulses with unfocused or focused transmit, an increase in temporal resolution of up to 4 to 6 times could be obtained in in vivo examples. It was further shown that by using adaptive signal processing, velocity spectra may be generated without high-pass filtering the Doppler signal. With the proposed approach, spectra retrospectively calculated from CFI may become useful for unfocused as well as focused imaging. This application may provide new clinical information by inspection of velocity spectra simultaneously from several spatial locations. 相似文献
999.
Cappon H Keesman KJ 《IEEE transactions on ultrasonics, ferroelectrics, and frequency control》2012,59(5):1023-1032
Design of ultrasonic equipment is frequently facilitated with numerical models. These numerical models, however, need a calibration step, because usually not all characteristics of the materials used are known. Characterization of material properties combined with numerical simulations and experimental data can be used to acquire valid estimates of the material parameters. In our design application, a finite element (FE) model of an ultrasonic particle separator, driven by an ultrasonic transducer in thickness mode, is required. A limited set of material parameters for the piezoelectric transducer were obtained from the manufacturer, thus preserving prior physical knowledge to a large extent. The remaining unknown parameters were estimated from impedance analysis with a simple experimental setup combined with a numerical optimization routine using 2-D and 3-D FE models. Thus, a full set of physically interpretable material parameters was obtained for our specific purpose. The approach provides adequate accuracy of the estimates of the material parameters, near 1%. These parameter estimates will subsequently be applied in future design simulations, without the need to go through an entire series of characterization experiments. Finally, a sensitivity study showed that small variations of 1% in the main parameters caused changes near 1% in the eigenfrequency, but changes up to 7% in the admittance peak, thus influencing the efficiency of the system. Temperature will already cause these small variations in response; thus, a frequency control unit is required when actually manufacturing an efficient ultrasonic separation system. 相似文献
1000.
Snare SR Torp H Orderud F Haugen BO 《IEEE transactions on ultrasonics, ferroelectrics, and frequency control》2012,59(3):583-589
A real-time scan assistant (SA) for use with echocardiography is presented. The motivation is to aid nonexpert users in capturing apical 4-chamber views (A4CH) during echocardiography. The algorithm is based on a parametric multi-chamber model of the A4CH view, updated in an extended Kalman filter framework. The regional model goodness-of-fit is used to calculate a score, which is provided to the user during acquisition, together with an icon (emoticon) indicating whether the current view is acceptable or not. The SA was implemented on a commercially available scanner. A feasibility test was performed using two healthy volunteers as models and 10 medical students acting as nonexpert users. The students examined the models on two occasions, separated more than four days in time. Half of the students used the SA during the first exam and no SA at the second exam. The other half used the opposite order. The recordings were later rated by a cardiologist. A Wilcoxon signed pair rank test revealed a statistically significant improvement when using SA. Nine cases were rated as poor without using the SA. In eight (89%) of these cases, view quality improved to acceptable when the SA was used. 相似文献