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自动喷水灭火系统喷头动压水试验的综合分析
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作者 梁锦旭 《山西建筑》 2011年第20期127-128,共2页
通过对自动喷水灭火系统中喷头的类型及性能的概述,就自动喷水灭火系统中的喷头进行动压水试验设备的流量及压力进行了综合分析,从而为采购自动喷水灭火系统动水压检验设备提供指导。
关键词 喷水灭火系统 喷头 动水压试验 流量 压力
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High-Speed Ring Shear Tests to Study the Motion and Acceleration Processes of the Yingong Landslide 被引量:9
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作者 HU Ming-jian Pan Hua-li +1 位作者 Zhu Chang-qi Wang Fa-wu 《Journal of Mountain Science》 SCIE CSCD 2015年第6期1534-1541,共8页
In this paper, the motion and acceleration process, as well as the mechanism of a high speed and long run landslide are investigated by adopting high speed ring shear test and taking the landslide occurred at Yigong R... In this paper, the motion and acceleration process, as well as the mechanism of a high speed and long run landslide are investigated by adopting high speed ring shear test and taking the landslide occurred at Yigong River in Bomi, Tibet on April 9, 2000 as the background. According to the motion characteristics of high-speed and long distance motion landside, the mechanism is studied under different conditions such as shear speed, consolidated drained and consolidated undrained status. Results show that high speed shearing process hinders and delays the dissipation of pore pressure, and drives pore water migrating to shear zone slowly. Both of water content and fine particle content at shear zone are obviously higher than those in other layers; and soil liquefaction occurs at shear zone in the saturated consolidated undrained ring shear tests. The effective internal friction angle of the consolidated undrained soil is much lower than that of the consolidated drained soil under ring shearing. The results also indicate that the shearing speed affecting the strength of soil to some extent. The higher the ring shearing speed is, the lower the strength of soil is. This investigation provides a preliminary interpretation of the mechanism of the motion and acceleration process of the Yigong landslide, occurred in Tibet in 2000. 展开更多
关键词 Yigong landslide Ring shear tests Shear zone Liquefaction Strength
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Experimental and CFD Simulations of Pressure Loss through Perforated Plates
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作者 J.A. Barros Filho M.A. Navarro +1 位作者 A. dos Santos E. Jordao 《Journal of Energy and Power Engineering》 2011年第2期112-121,共10页
This paper presents the experimental pressure loss of water flow through perforated plates with geometry similar to the ones of the bottom end piece of a Pressurized Water Reactors (PWR) fuel element. Geometric feat... This paper presents the experimental pressure loss of water flow through perforated plates with geometry similar to the ones of the bottom end piece of a Pressurized Water Reactors (PWR) fuel element. Geometric features like the number, pattern and diameter of holes were evaluated as well as different inlet chamfers. The recovering pressure profile downstream of the plates was also measured. The experimental results were compared with numerical modeling performed with the commercial Computational Fluid Dynamics (CFD) code CFX 11.0. The analysis of the results shows that the standard k-e turbulence model presents the best compromise between computing time and accuracy for the calculation of the total pressure loss through the perforated plates tested. 展开更多
关键词 Computational fluid dynamics (CFD) pressurized water reactors-PWR pressure drop perforated plates
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Experimental Investigation on Critical Heat Flux for Water Flowing in a Vertical Uniformly Heated Rifled Tube under Near-critical Pressures 被引量:3
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作者 XIE Haiyan YANG Dong +2 位作者 ZHAO Yunjie JIANG Huiqing QU Mofeng 《Journal of Thermal Science》 SCIE EI CAS CSCD 2018年第6期527-540,共14页
This study experimentally investigated the critical heat flux(CHF) of departure from nucleate boiling(DNB) of water flowing under near-critical pressures in a 2 m-long vertical upward rifled tube with the size of Φ35... This study experimentally investigated the critical heat flux(CHF) of departure from nucleate boiling(DNB) of water flowing under near-critical pressures in a 2 m-long vertical upward rifled tube with the size of Φ35 × 5.67 mm. Operating conditions included pressures of 18–21 MPa, mass fluxes of 475–1000 kg·m^(-2)·s^(-1), inlet subcooling temperatures of 3–5°C, and wall heat fluxes of 40–960 kW·m^(-2). Tube wall temperature distribution and heat transfer performance in different test conditions were obtained. The effects of the operating parameters on CHF were analyzed. Four heat transfer coefficient correlations were evaluated against our experimental data for further investigation of the two-phase heat transfer characteristics. A heat transfer correlation based on Martinelli number utilized in two-phase region and two empirical correlations used to predict the CHF in rifled tube at near-critical pressures were proposed. Meanwhile, experimental CHF data in rifled tube were compared with six widely used correlations and a CHF look-up table. The CHF enhancement effect in rifled tube is obvious as compared with the CHF data in smooth tube. Results show that DNB occurs at low vapor quality and subcooled region in the rifled tube at near-critical pressures. The increase in pressure leads to the early occurrence of DNB and the decrease in CHF, whereas the increase in mass flux delays the occurrence of DNB and results in the increase in CHF. DNB presents a tendency to move toward the inlet of the rifled tube. At individual operating conditions, DNB and dryout coexist at different sections of the rifled tube. 展开更多
关键词 critical heat flux near-critical pressure rifled tube DNB heat transfer
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