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Abstract] Objective To discuss the clinical analysis on 37 cases of hypertension intraventricular hemorrhage with soft channel technology-liquefied drainage of hematoma.Methods 37 hypertension brain hemorrhage patients,by the hematocele quantity,the shape and patient's condition were treated with soft channel technology-micro wound in the ventricles of the brain and haematoma liquefication drainage,to eliminate the hematocele,rescue the life,improve prognosis.

目的 探讨应用软通道技术-微创脑室内血肿液化引流术治疗高血压脑室出血的疗效方法对37例高血压脑室出血患者,依据脑室内积血的量、形态及患者的病情,行软通道技术-微创脑室内血肿液化引流术,清除血肿,抢救生命,改善预后。

The results indicated that the content of cytosolic CaM in cells treated with exogenous Ca2+ has increased indistinctively, while fluorescence intensity in cells treated with TFP decreased. So we believed that exogenous Ca2+ has little effect on the expression of CaM. High concentration of TFP can enter yeast cells and combine to CaM to make it inactive, which is the reason that TFP restrain the growth of yeast cells. 5mmol/L EGTA could completely arrest the cell proliferation of MFP7 after 28h, when the fluorescence intensity in cells wasobviously increased with flow cytometry and LSCM.

被较高浓度TFP处理过的MFP7胞内荧光强度则相对较弱,推测是因为TFP进入胞内与CaM结合从而使其失活,这也是高浓度TFP抑制酵母细胞增殖的原因。5mmol/L EGTA处理28h左右后,酵母细胞的生长被抑制在G1晚期,此时通过细胞流式法和在激光扫描共聚焦显微镜下观察到胞内荧光强度显著高于对照,说明CaM的表达水平在G1后期开始上升;回加10mmol/L Ca~(2+)处理24h后,细胞开始恢复生长,细胞流式法测定胞内荧光强度有所下降,表明多数细胞完成G1/S转换,进入生长对数期。

The main achievements include as follows:(1)With research results of hydraulic jump and impinging jet,flow patterns in stilling basin and plunge pool are analyzed in detail, the distributing characteristics of mean pressure and fluctuating pressure are investigated.

主要成果包括:(1)引用水跃和冲击射流的研究成果,详细分析了底流和挑跌流消力塘内的水流流态特征,探讨了这两种型式消力塘内时均压力和脉动压力的分布规律。

The minimum fluidization velocity has a minimum value when the frequency of sound waves is 120Hz and it will decrease as the sound pressure level increases. The degree of sound attenuation will increase while bed material is higher and the fluidization quality of fine particles will become poor and the minimum fluidization velocity will increase. Compared with TiO2, the SiO2 fine particles have a better quality of fluidization at the same fluidized conditions.The cluster/subcluster model and oscillators model are used to describe the fluidization characteristics of fine particles in a sound-assisted fluidized bed. The theoretical calculations show that the minimum fluidization velocity umf is decreased with the SPL increased at the same frequency of sound and the quality of fluidization is better.

论文还系统的考察了声压和频率对纳米SiO2和TiO2颗粒流化特性的影响,结果表明:在频率一定的情况下,声压越高,流化床中形成的聚团尺寸越小,最小流化速度越低,流化质量越好;当声压低于120dB时,声场对超细颗粒流化特性的影响减小,当声压大于130dB时,则能显著改善流化效果,使流化床内的颗粒聚团明显减小,最小流化速度明显降低,粉体带出减小;声压一定,频率为120Hz左右时,最小流化速度最低,此时流化床中形成的聚团尺寸最小,流化效果最好;超细颗粒达到较好的流化状态存在一个最佳频率范围,随着声压增高,这个频率范围将增大。

The results show that the velocity ratio plays more important role than Reynolds number to influence the aerodynamic parameters of internal cooling passage.

结果表明通道平均雷诺数对通道内和孔内的流场影响较小,速比对通道内和孔内的流场的影响较大。

The horizontal swirling flow internal dissipater tunnel being built in Gongboxia Power Station will be the first one reconstructed from a diversion tunnel whose dischargereaches to 1000m Vs and water head is more than 100m in china . Its schemes argumentation ,test research and future apply will have important meanings to the design .research and engineering application of internal dissipation discharge tunnel with swirling flow, will powerfully promote engineering application of this new kind of dissipation mode , which may solve some high velocity problems in high dam construction and provide a engineering example for technological and economical augmentation in a diversion tunnel reconstruction. It is of theoretical and practical importance to promote hydraulic structure researches and development.

公伯峡水电站右岸旋流内消能泄洪洞是国内第一个泄量达1000m/s、水头超过100m,即将修建的旋流式内消能泄洪洞,其方案的论证与试验研究以及建成后投入使用,将在国内外旋流式内消能泄洪洞设计、研究与工程应用中具有重要的意义,将有力的推动这一新的消能形式在工程中的应用,从而为解决高坝建设中泄水建筑物的高速水流问题与导流洞改建的技术与经济问题提供工程实例,对推动与发展水工水力学的研究与发展均具有重要的理论与实践意义。

Results:There were no abdominal pain and fever,jaundice faded away gradually postoperation.Biliary drainage was 300ml-1000ml/d more or less.Colour of bile changed into normal by degrees.Intra peritoneal drainage was open and the colour was light bloody.Amount of drainage dropped off day after day.Whole blood cell test, serum glutamic pyruvic transaminase,serum glutamic oxalacetic transarninase,total serum protein,serum albumin and serum globulin returned to normal in first week postoperation.Serum bilirubin,serum glutamyltranspetidase and serum alkaline phosphatase declined gradually in first week postoperation.T-tube was clipped at twelfth day postoperation.T-tube Cholangiography was clear at 24~ day postoperation.

结果:术后无上腹部绞痛、高热,黄疸逐渐减退,每日引流胆汁300ml-1000ml不等,由淡黄色混浊、内有胆泥过渡到金黄色清亮的正常胆汁,腹腔引流通畅,引流液为淡红色,量从最初的200ml迅速过渡到10ml,血常规、血清谷丙转氨酶、谷草转氨酶、总蛋白、白蛋白、球蛋白等1周内均恢复正常,血清总胆红素、直接胆红素、间接胆红素、谷氨酰转肽酶、碱性磷酸酶逐渐下降,术后12d夹闭T管,术后24d T管造影提示左、右肝管及胆总管下端通畅,无狭窄。

Through the analysis of the distributions of cold pulverized coal concentration and the area of high concentration zone, it was concluded that the smaller the central air expanding angle was, or the later the secondary air interfused, the larger the area of high concentration zone was.

通过分析冷态煤粉浓度的分布及煤粉高浓度区域面积的大小,得到:中心管扩角越小,二次风混入越晚,冷态高煤粉浓度区域面积越大;一次风率为0.2、一次风速为15 m/s、直流二次风速为25 m/s时冷态高煤粉浓度区域面积较大,有利于降低NOx的生成;内二次风旋流开度减小较外二次风旋流开度减小对冷态高煤粉浓度区域面积的影响大;内旋流强度为1.35、外旋流强度为1.56为最佳的试验工况。

PDA(particle dynamics analyzer system) was used to measure the flow velocity of particles in the XFD-12 flotation cell, the results show that tangential mean velocity in the radial direction changes from positive to negative in the flotation cell, naught point emerge in the medium of the radial direction ,it is where backward fluid emerge ,shear stress of backward fluid induce the particle detachment from bubbles .

汁算数据与实际矿石筛析结果都表明,紊流强度增大,泡沫中粗粒级含量减小。 4。用PDA在XFD-12型8L浮选机中测定的速度值,进行混合区、分离区、泡沫区紊流运动功率谱计算,得紊流脉动频率,混合区小于20Hz,分离区在20-30Hz之间,泡沫区在25-35Hz之间,浮选槽内紊流脉动以低频为主,且紊流脉动动能是混合区大于分离区大于泡沫区。

Computational fluid dynamics methods were applied to obtain the static velocity distributions in the main stage channel of the valve with different structure parameters or different pressure and flow rate.

应用流场数值模拟技术,在不同结构参数、压力、流量等条件下,对先导式纯水溢流阀主阀流道内的流场流态进行动态仿真。

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