Journal of Liaoning Petrochemical University
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The Security Technology Research for Ultrahigh Pressure Natural Gas Pipeline Network in Densely Populated Area
He Yang1,Jin Guanghao2,Wang Xin,Wang Youlong,Sun Lei,Li Wuhua,Li Liang,Shen Longshe
Abstract
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468
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301
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Aiming at the leakage and diffusion problems of the 35 MPa ultrahigh pressure gas pipeline in densely populated area, the FLUENT software in the threedimensional numerical simulation was used under different climate conditions in the deep buried gas pipeline leak case. And the axial and surface safety area of the hydrogen sulfide and methane was provided when the ultrahigh pressure gas pipeline had leaked under the conditions of different wind speeds. Because of the buoyancy, the natural gas developed in the upward form during the process of diffusion. The wind speed and pressure had different effects on the diffusion process under the different environments. The result was that as the wind speed and pressure was higher, the natural gas was spread to the farther distance. This increased the lowest explosive limit and alerted the concentration range of the natural gas. The research result could provide the effective basis to the stuffs and security management in leakage spot.
2014, 34 (3): 53-57.
DOI:
10.3696/j.issn.1672-6952.2014.03.014
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Numerical Simulation of Bend Multiphase Flow Erosion
Li Liang, Shen Longshe, Fan Kaifeng, Sun Lei, Wang Yufu, Yang Zhong
Abstract
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684
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387
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Highpressure steam injection method is the major method of exploitation of heavy oil reservoir. In steam injection pipe network, the fluid in steam, liquid and solid phases scoured the bend and led to leakage. Based on the turbulence models, multiphase flow models, discrete phase models and erosion models ,and considering the mutual coupling of the different phases, the numerical simulation of the flow of the three phases in the bend flow was established. The results show that in the steam injection pipelines,as bending degree of the bent pipe increased, the distribution and wall wear area of the liquid phases and particle phases moved backwards step by step,and the value increased accordingly. Moreover, the increase of liquidphase volume fraction in the pipe wall could effectively reduce the surface corrosion of the solid phase.
2014, 34 (3): 48-52.
DOI:
10.3696/j.issn.1672-6952.2014.03.013
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Calibration and Error Analysis of Differential Pressure Flowmeter
LI Wuhua, SHEN Longshe, LI Hu, GUO Tu, SUN Lei, HE Yang, LI Liang
Abstract
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803
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(1497KB)(
587
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In flow measurement field, the differential pressure flowmeter was used widely. Adopting highprecision calibration system to calibration differential pressure flowmeter,the flow coefficient of the flowmeter was obtained. And the error analysis of the flow coefficient with scientific method was made to draw calibration result and its error accuracy. The results show that the measurement errors of the flowmeter followed the standard, and the flowmeter could be used for the actual measurement in the field.
2014, 34 (1): 60-64.
DOI:
10.3696/j.issn.1672-6952.2014.01.0016
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Numerical Simulation of Erosion Wear in Conical Restrictor
LI Liang,SHEN Longshe, YAN Yongfei, SUN Lei
Abstract
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432
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201
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In Gas injection pipeline the erosion wear of solid particle in cone throttling element was an important factor for causing failure. In this paper, made by the method of computational fluid dynamics finite volume was used for the numerical simulation of the erosion abrasion and the degree to erosion abrasion and the relationship of the shear stress with the injection volume, particle diameter and the particle content change were researched. The results showed that as the particle diameter increased, the tube wall wear relatively focused on the high speed area, the degree to the cone wear was increased. When the flow rate increased, erosion rate and shear stress were increased. And when the particle concentration increased, the quantity of the erosion abrasion was increased. So the research to the throttling element antifriction corrosion study and throttling element failure prediction would provide the theory guidance.
2013, 33 (4): 45-49.
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OFP Viscoelastic Fluid Effects on Water Film Transport
SUN Lei, ZHOU Lifeng,SHEN Longshe, LIU Chang, SUN Hao,HE Yang1
Abstract
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410
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213
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Water film lubricated transport of super heavy oil is one of the energysaving technologies in the energy sector. In water film transport of super heavy oil,OFP produces a normalstress to make the water film stay steadily and no eccentrically phenomenon in the pipeline and plays a supporting role. To understand the change of the normalstress of OFP indepth in water film transport of super heavy oil, the effects of OFP to the stability of water film was analyzed through our experiments.The OFP is a viscoelastic liquid as the shear rate decreases and the solubility of OFP reduces gradually, and the normalstress difference also reduces gradually.
2013, 33 (3): 39-42.