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Laboratory investigation into the oil diffusion from submarine pipeline under water flow 被引量:2
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作者 JIANG Meirong YU Jianxing +3 位作者 LI Zhigang ZHONG Wenjun WU Zhaohui YU Yang 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2018年第11期96-103,共8页
A physical model test has been conducted to study the oil diffusion from the submarine pipeline under water flow.The crude oil in the flume is spilled from a leakage point of the pipeline and diffused from the seabed ... A physical model test has been conducted to study the oil diffusion from the submarine pipeline under water flow.The crude oil in the flume is spilled from a leakage point of the pipeline and diffused from the seabed to the surface. By the non-contact optical measuring technology, an image acquisition and data analysis system is designed to explore the spilled mechanism and characteristic. The oil trajectory, velocity and the rising time to the surface are obtained through this system. The influence of the water flow and the spilled discharge on the behavior of the spilled oil are analyzed from both qualitative and quantitative perspectives. The sensitivity study of the characteristic physical quantities to various factors are presented afterward. The spilled oil under water is mainly distributed in the form of the scattered particles with different sizes. The rising process of the oil can be divided into three stages: full, dispersion and aggregation period. The spilled discharge is the primary factor affecting the rising time of the oil particles. In the rising process of the oil particles, the vertical velocity of the oil is mainly affected by the spilled discharge, and the transverse velocity is more dependent on the water velocity. The deviation of the transverse oil velocity is much larger than that of the rising time and the vertical oil velocity. The study can provide a theoretical reference for the prediction system of oil spill emergency. 展开更多
关键词 oil diffusion submarine pipeline model test water flow spilled discharge
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Diffusion coefficients of natural gas in foamy oil systems under high pressures 被引量:1
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作者 Yan-Yu Zhang Xiao-Fei Sun +1 位作者 Xue-Wei Duan Xing-Min Li 《Petroleum Science》 SCIE CAS CSCD 2015年第2期293-303,共11页
The diffusion coefficient of natural gas in foamy oil is one of the key parameters to evaluate the feasibility of gas injection for enhanced oil recovery in foamy oil reservoirs. In this paper, a PVT cell was used to ... The diffusion coefficient of natural gas in foamy oil is one of the key parameters to evaluate the feasibility of gas injection for enhanced oil recovery in foamy oil reservoirs. In this paper, a PVT cell was used to measure diffusion coefficients of natural gas in Venezuela foamy oil at high pressures, and a new method for deter- mining the diffusion coefficient in the foamy oil was de- veloped on the basis of experimental data. The effects of pressure and the types of the liquid phase on the diffusion coefficient of the natural gas were discussed. The results indicate that the diffusion coefficients of natural gas in foamy oil, saturated oil, and dead oil increase linearly with increasing pressure. The diffusion coefficient of natural gas in the foamy oil at 20 MPa was 2.93 times larger than that at 8.65 MPa. The diffusion coefficient of the natural gas in dead oil was 3.02 and 4.02 times than that of the natural gas in saturated oil and foamy oil when the pressure was 20 MPa. However, the gas content of foamy oil was 16.9 times higher than that of dead oil when the dissolution time and pressure were 20 MPa and 35.22 h, respectively. 展开更多
关键词 Foamy oil diffusion coefficient - Heavy oil Gas injection High pressure
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用于RFCC催化剂的Y型分子筛的研究进展 被引量:1
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作者 孙志国 高雄厚 +3 位作者 马建泰 张莉 刘宏海 王宝杰 《现代化工》 CAS CSCD 北大核心 2016年第1期45-48,共4页
指出了目前重油催化裂化(RFCC)催化剂研究的核心在于减少重油分子在Y型分子筛中的扩散限制;研究方向主要集中在制备具有介-微孔结构的Y型分子筛和制备小晶粒Y型分子筛。分别介绍了介-微孔结构Y型分子筛和小晶粒Y型分子筛的优势、存在的... 指出了目前重油催化裂化(RFCC)催化剂研究的核心在于减少重油分子在Y型分子筛中的扩散限制;研究方向主要集中在制备具有介-微孔结构的Y型分子筛和制备小晶粒Y型分子筛。分别介绍了介-微孔结构Y型分子筛和小晶粒Y型分子筛的优势、存在的问题以及制备的方法。最后提出了制备用于RFCC催化剂的新型Y型分子筛的发展趋势。 展开更多
关键词 重油 催化裂化 扩散限制 介-微孔结构Y型分子筛 小晶粒Y型分子筛
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重质油在孔道内扩散传质的研究进展 被引量:9
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作者 陈振涛 徐春明 《化工学报》 EI CAS CSCD 北大核心 2016年第1期165-175,共11页
内扩散广泛存在于非均相催化反应过程中。重质油因为具有更大的分子尺寸和复杂的组成结构,其在催化转化过程中通过孔道的扩散传质受到显著影响,极大降低了重质油的高效转化和催化剂的有效利用。本文重点对重质油在孔道内扩散传质的主要... 内扩散广泛存在于非均相催化反应过程中。重质油因为具有更大的分子尺寸和复杂的组成结构,其在催化转化过程中通过孔道的扩散传质受到显著影响,极大降低了重质油的高效转化和催化剂的有效利用。本文重点对重质油在孔道内扩散传质的主要研究方法(隔膜池、吸附扩散和反应动力学法)和现状、孔内扩散的影响因素以及内扩散对重质油催化转化的影响等方面进行了综述,还探讨了重质油催化转化过程中扩散传质研究的发展方向。 展开更多
关键词 扩散传质 重质油 受限扩散 分子构型 缔合
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MATHEMATICAL MODELING OF OIL SPILL ON THE SEA AND APPLICATION OF THE MODELING IN DAYA BAY 被引量:10
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作者 CHEN Hai-zhou LI Da-ming LI Xiao 《Journal of Hydrodynamics》 SCIE EI CSCD 2007年第3期282-291,共10页
Through the study of the theory of oil spill model, a mathematical modeling of oil spill on the sea is developed which with the consideration of spread, diffusion, drifting and attenuation of oil slick is influenced b... Through the study of the theory of oil spill model, a mathematical modeling of oil spill on the sea is developed which with the consideration of spread, diffusion, drifting and attenuation of oil slick is influenced by evaporation and emulsification factors. A model that under the effect of ocean dynamic condition of tide, wind and wave, using Monte Carlo method to simulate the movement of oil slick is established. The modeling is applied to calculate and predict pollution range of oil spill at oil quay and oil ship in Daya Bay. The prediction results have basically shown the pollution situation by emergency of oil spill on the sea. 展开更多
关键词 oil spill on the sea spread of oil slick diffusion of oil slick Monte Carlo method bay contamination
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海水流中溢油扩散的多相光滑粒子流体动力学模拟
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作者 Diana De Padova Michele Mossa Stefano Sibilla 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2023年第2期49-60,共12页
在灾害造成石油泄漏的情况下,引发的主要环境问题之一是石油的轨迹及其空间分布.本文通过二维光滑粒子流体力学(SPH)多相模拟方法研究海底溢油情形,可以更好地了解原油在水中的扩散过程.重点研究了射流在静水中或横向进入不同流速的流... 在灾害造成石油泄漏的情况下,引发的主要环境问题之一是石油的轨迹及其空间分布.本文通过二维光滑粒子流体力学(SPH)多相模拟方法研究海底溢油情形,可以更好地了解原油在水中的扩散过程.重点研究了射流在静水中或横向进入不同流速的流动流中诱导流动的主要特征,此外,还研究了原油泄漏速率的影响.通过与实验数据的对比,验证了SPH数值模型的有效性,分析了主要物理参数对流动的影响.模拟结果表明,流速是影响溢油运移流量的关键因素. 展开更多
关键词 Smoothed particle hydrodynamics models oil spill diffusion Seawater currents
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