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Flow characteristics and Shannon entropy analysis of dense-phase pneumatic conveying under high pressure
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作者 赵长遂 梁财 +3 位作者 陈晓平 蒲文灏 鹿鹏 范春雷 《Journal of Southeast University(English Edition)》 EI CAS 2007年第4期609-614,共6页
Experiments of dense-phase pneumatic conveying of pulverized coal using nitrogen are carded out in an experimental test facility with the conveying pressure up to 4. 0 MPa and the gas-solid ratio up to 450 kg/m^3. The... Experiments of dense-phase pneumatic conveying of pulverized coal using nitrogen are carded out in an experimental test facility with the conveying pressure up to 4. 0 MPa and the gas-solid ratio up to 450 kg/m^3. The influences of different conveying differential pressures, coal moisture contents, gas volume flow rates and superficial velocities on the solid-gas ratios are investigated. Shannon entropy analysis of pressure fluctuation time series is developed to reveal the flow characteristics. Through investigation of the distribution of the Shannon entropy under different conditions, the flow stability and the evolutional tendency of the Shannon entropy in different regimes and regime transition processes are discovered, and the relationship between the Shannon entropy and the flow regimes is also established. The results indicate that the solid-gas ratio and the Shannon entropy rise with the increase in conveying differential pressure. The solid-gas ratio and the Shannon entropy reveal preferable regularity with gas volume flow rates. The Shannon entropy is different for different flow regimes, and can be used to identify the flow regimes. Both mass flow rate and the Shannon entropy decrease with the increase in moisture contents. The Shannon entropy analysis is a feasible approach for researching the characteristics of flow regimes, flow stability and flow regime transitions in dense-phase pneumatic conveying under high pressure. 展开更多
关键词 pneumatic conveying high pressure dense-phase solid-gas ratio Shannon entropy
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Multi-scale analysis on the pulverized coal flow behaviors under high,pressure dense-phase pneumatic conveying 被引量:2
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作者 Heming Gao Xiaojuan Wang Qi Chang 《Particuology》 SCIE EI CAS CSCD 2022年第1期107-114,共8页
To deeply knowledge of the flow behaviors of pulverized coal particles in dense gas-solid two-phase flow,a multi-scale analysis method based on electrostatic sensor array is applied for the multi-scale characterizatio... To deeply knowledge of the flow behaviors of pulverized coal particles in dense gas-solid two-phase flow,a multi-scale analysis method based on electrostatic sensor array is applied for the multi-scale characterization of flow behaviors of dense gas-solid flow.The experimental results indicate that:for steady flow,with the increment of conveying pressure difference,the individual particles increase and the particle clusters decrease,the individual particle distribution is always inhomogeneous but the particle cluster distribution tends to be more homogeneous over the cross-section of pipe,while the average flow behavior of pulverized coal particles is always in the relatively static state.For unsteady flow,the average flow behavior of pulverized coal particles is dynamic,and the flow behaviors of the multi-scale flow structures over the cross-section of pipe are all significantly inhomogeneous.Moreover,the effect of particle size on flow behavior of pulverized coal is also investigated and validated. 展开更多
关键词 dense-phase pneumatic conveying Pulverized coal MULTI-SCALE Particle charging
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An investigation into flow mode transition and pressure fluctuations for fluidized dense-phase pneumatic conveying of fine powders 被引量:14
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作者 A.Mittal S.S.Mallick P.W.Wypych 《Particuology》 SCIE EI CAS CSCD 2014年第5期187-195,共9页
This paper presents the results of an ongoing investigation into the fluctuations of pressure signals due to solids-gas flows for dense-phase pneumatic conveying of fine powders. Pressure signals were obtained from pr... This paper presents the results of an ongoing investigation into the fluctuations of pressure signals due to solids-gas flows for dense-phase pneumatic conveying of fine powders. Pressure signals were obtained from pressure transducers installed along different locations of a pipeline for the fluidized dense-phase pneumatic conveying of fly ash (median particle diameter 30μm; particle density 2300 kg/m^3; loose- poured bulk density 700 kg/m^3) and white powder (median particle diameter 55 p.m; particle density 1600 kg/m^3 ; loose-poured bulk density 620 kg/m^3) from dilute to fluidized dense-phase. Standard deviation and Shannon entropy were employed to investigate the pressure signal fluctuations. It was found that there is an increase in the values of Shannon entropy and standard deviation for both of the prod- ucts along the flow direction through the straight pipe sections. However, both the Shannon entropy and standard deviation values tend to decrease after the flow through bend(s), This result could be attributed to the deceleration of particles while flowing through the bends, resulting in dampened particle fluctua- tion and turbulence. Lower values of Shannon entropy in the early parts of the pipeline could be due to the non-suspension nature of flow (dense-phase), i.e., there is a higher probability that the particles are concentrated toward the bottom of pipe, compared with dilute-phase or suspension flow (high velocity), where the particles could be expected to be distributed homogenously throughout the pipe bore (as the flow is in suspension). Changes in straight-pipe pneumatic conveying characteristics along the flow direction also indicate a change in the flow regime along the flow. 展开更多
关键词 Fluidized dense-phase Pneumatic conveying Fine powders Shannon entropy Flow transition Particle turbulence
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Experimental study on dense-phase pneumatic conveying of coal powder at high pressures 被引量:2
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作者 Qingliang Guan Zhen Liu +5 位作者 Xinhui Fang Bing Liu Baozai Peng Ziyang Feng Ya Suo Wenhua Li 《Clean Energy》 EI 2017年第1期50-67,共18页
Clean utilization and conversion of coal resources is significant to China’s energy sustainable development.Entrained-flow coal gasification technology is an important method used for clean and efficient conversion o... Clean utilization and conversion of coal resources is significant to China’s energy sustainable development.Entrained-flow coal gasification technology is an important method used for clean and efficient conversion of coal.The characteristics and stability of high-pressure dense-phase pneumatic conveying of pulverized coal is crucial to the safe and stable operation of dry-feed entrained-flow coal gasifiers.Dense-phase pneumatic conveying experiments were carried out using a high-volatile bituminous coal in pipes with diameters of 25,15 and 10 mm,respectively,and at back pressures of 1.0-4.0 MPag.The conveying characteristics and effects of operating and structure parameters were studied.Pressure drop models were established for horizontal and vertical upward conveying.The prediction uncertainty was within±30%for the horizontal conveying and±20%for the vertical upward conveying.The relative standard deviation of solid flow rate was proposed to explain conveying stability.The effect of operating parameters on conveying stability was systematically analyzed.The gas velocity-related criterion was proposed for stable conveying. 展开更多
关键词 dense-phase pneumatic conveying pulverized coal high pressure pressure drop STABILITY
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Dense-phase pneumatic conveying under pressure in horizontal pipeline 被引量:5
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作者 Daoye Yang Bin Zhou +1 位作者 Chuanlong Xu Shimin Wang 《Particuology》 SCIE EI CAS CSCD 2011年第4期432-440,共9页
The gas/solid flow regime of dense-phase pneumatic conveying of pulverized coal under a pressure of 4.0 MPa in horizontal pipeline 10 mm in diameter, is monitored by electrical capacitance tomography (ECT) using 8 e... The gas/solid flow regime of dense-phase pneumatic conveying of pulverized coal under a pressure of 4.0 MPa in horizontal pipeline 10 mm in diameter, is monitored by electrical capacitance tomography (ECT) using 8 electrodes. To improve the accuracy of the capacitance measurement, an AC-based singlechannel capacitance measuring circuit was developed, and a modified iterative Landweber algorithm was used to reconstruct the image. A two-fluid model based on the kinetic theory of granular flow was used to study the three-dimensional steady-state flow behavior of dense-phase pneumatic conveying of pulverized coal. 展开更多
关键词 Electrical capacitance tomography (ECT) Pneumatic conveying dense-phase Numerical simulation
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Validated scale-up procedure to predict blockage condition for fluidized dense-phase pneumatic conveying systems 被引量:2
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作者 G.Setia S.S.Mallick +1 位作者 P.W.Wypych Renhu Pan 《Particuology》 SCIE EI CAS CSCD 2013年第6期657-663,共7页
This paper presents results of an ongoing investigation into modelling fluidized dense-phase pneumatic conveying of powders. For the reliable design of dense-phase pneumatic conveying systems, an accurate estimation o... This paper presents results of an ongoing investigation into modelling fluidized dense-phase pneumatic conveying of powders. For the reliable design of dense-phase pneumatic conveying systems, an accurate estimation of the blockage boundary condition or the minimum transport velocity requirement is of sig- nificant importance. The existing empirical models for fine powder conveying in fluidized dense-phase mode are either based on only a particular pipeline and product or have not been tested for their accuracy under a wide range of scale-up conditions. In this paper, a validated test design procedure has been devel- oped to accurately scale-up the blockage boundary with the help of a modelling format that employs solids loading ratio and Froude number at pipe inlet conditions using conveying data of two different samples of fly ash, electro-static precipitation (ESP) dust and cement (particle densities: 2197-3637 kgJm3; loose poured bulk densities: 634-1070kg/m3; median size: 7-30 l^m). The developed models (in power func- tion format) have been used to predict the blockage boundary for larger diameter and longer pipelines (e.g. models based on 69 mm I.D. ~ 168 m long pipe have been scaled up to 105 mm I.D. and 554 m length). The predicted blockage boundaries for the scale-up conditions were found to provide better accuracy compared to the existing models. 展开更多
关键词 Fluidized dense-phase Pneumatic conveying Blockage boundary Minimum conveying velocity Scale up
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Numerical simulation of fluidized dense-phase pneumatic conveying of powders to develop improved model for solids friction factor
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作者 Baldeep Kaur Anu Mittal +2 位作者 S.S. Mallick Renhu Pan Soumendu Jana 《Particuology》 SCIE EI CAS CSCD 2017年第6期42-50,共9页
Accurate prediction of the solids friction factor through horizontal straight pipes is important for the reliable design of a pneumatic conveying system, but it is a challenging assignment to date because of the highl... Accurate prediction of the solids friction factor through horizontal straight pipes is important for the reliable design of a pneumatic conveying system, but it is a challenging assignment to date because of the highly concentrated, turbulent, and complex nature of the gas-solids mixture. Power-station fly ash was transported through different pipeline configurations. Numerical simulation of the dense-phase pneumatic conveying systems for three different solids and two different air flow rates have shown that particle and actual gas velocities and the ratio of the two velocities increases in the flow direction, whereas the reverse trend was found to occur for the solids volumetric concentration. To develop a solids friction-factor model suitable for dense-phase flow, we modified an existing pure dilute-phase model by incorporating sub-models for particle and actual gas velocities and impact and solids friction factor. The solids friction-factor model was validated by using it for scale-up predictions for total pipeline pressure drops in longer and larger pipes and by comparing experimental and predicted pneumatic conveying characteristics for different solids flow rates. The accuracy of the prediction was compared with a recently developed two-layer-based model. We discussed the effect of incorporating the particle and actual gas velocity terms in the solids friction-factor model instead of superficial air velocity. 展开更多
关键词 Pneumatic conveying dense-phase Numerical analysis Pressure drop Scale-up validation
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8.2m超大采高综采成套装备研制及应用 被引量:25
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作者 王国法 庞义辉 《煤炭工程》 北大核心 2017年第11期1-5,共5页
针对6~8m厚煤层大采高一次采全厚综采技术与装备难题,以金鸡滩煤矿2-2上煤层赋存条件为基础,通过建立超大采高工作面顶板岩层断裂的"悬臂梁+砌体梁"力学模型及煤壁片帮的"拉裂-滑移"力学模型,研究了超大采高工作面... 针对6~8m厚煤层大采高一次采全厚综采技术与装备难题,以金鸡滩煤矿2-2上煤层赋存条件为基础,通过建立超大采高工作面顶板岩层断裂的"悬臂梁+砌体梁"力学模型及煤壁片帮的"拉裂-滑移"力学模型,研究了超大采高工作面顶板岩层断裂结构及煤壁片帮力学机理,研制了8.2m超大采高综采成套装备,实现了金鸡滩煤矿8.2m超大采高工作面安全、高效、高回采率开采。研究结果表明,通过液压支架与围岩的耦合动力学模型可以确定顶板岩层对液压支架的冲击动载荷,煤壁的破坏深度与开采高度、矿山压力呈正相关性,与煤体强度呈负相关性。通过设计研发大缸径抗冲击双伸缩立柱、三级协动护帮装置等新结构,提高了超大采高液压支架对围岩的适应性。通过研制大运量变频控制刮板输送机及新结构,解决了超大采高工作面瞬间煤量大、煤量变化大、片帮煤易压死刮板输送机等问题。研制了8.2m超大采高综采成套装备,设计采用"大梯度+小台阶"过渡配套方式,解决了端头煤损失问题。金鸡滩煤矿8.2m超大采高工作面日产5.7万t,月产达到150万t以上,实现了安全、高效、高回采率开采。 展开更多
关键词 超大采高综采 围岩控制技术 液压支架设计 变频控制刮板输送机 设备集成配套
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超高水头大型船闸输水系统研究 被引量:4
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作者 王仕民 江耀祖 +1 位作者 吴英卓 李静 《人民长江》 北大核心 2017年第24期75-79,100,共6页
随着社会经济的发展和技术的提高,船闸不断向大型化和高水头化方向发展,以往常规的等惯性输水系统已不能适应40 m以上的超高水头大型单级船闸。结合某工程实例,通过类比分析、物理模型试验及数值计算的方法,提出了新型自分流的闸室分流... 随着社会经济的发展和技术的提高,船闸不断向大型化和高水头化方向发展,以往常规的等惯性输水系统已不能适应40 m以上的超高水头大型单级船闸。结合某工程实例,通过类比分析、物理模型试验及数值计算的方法,提出了新型自分流的闸室分流口结构型式和输水系统布置型式,很好地解决了闸室高效输水和船舶停泊安全问题,显著拓展了常规等惯性输水系统的适应性,其成果可供超高水头大型船闸设计借鉴。 展开更多
关键词 输水系统 全闸室出水 自分流分流口 船舶系缆力 超高水头船闸
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TBM施工隧洞混凝土衬砌轴线的确定 被引量:3
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作者 杜士斌 杨胜 冀红伟 《水利水电技术》 CSCD 北大核心 2008年第2期36-39,共4页
根据TBM施工的特点,论述了TBM掘进轴线与设计洞轴线的关系。在全面满足结构设计、过水能力及质量控制标准的前提下,TBM施工隧洞二次混凝土衬砌轴线采用TBM掘进轴线是合适的。
关键词 大伙房输水隧洞 超长隧洞 隧洞轴线 TBM 混凝土衬砌
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彭水电站超大型压力钢管制造安装技术 被引量:1
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作者 但东 《水电站机电技术》 2008年第4期33-35,共3页
彭水电站引水隧洞压力钢管最大直径14.0m,最大管节重量46t,大直径、大吨位及复杂的施工环境给压力钢管制作、安装带来了很大施工难度。文章结合工程施工实际,论述了彭水电站超大型压力钢管制作、安装的主要施工程序及措施,以便类似工程... 彭水电站引水隧洞压力钢管最大直径14.0m,最大管节重量46t,大直径、大吨位及复杂的施工环境给压力钢管制作、安装带来了很大施工难度。文章结合工程施工实际,论述了彭水电站超大型压力钢管制作、安装的主要施工程序及措施,以便类似工程参考。 展开更多
关键词 压力钢管 超大直径 制作 翻身运输 安装
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铝电解自焙槽烟气静电净化技术
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作者 于波 蔡润甫 贾凤林 《环境工程》 CAS CSCD 北大核心 2002年第1期45-46,共2页
应用电除尘与静电凝聚技术相结合 ,净化自焙阳极铝电解槽生产过程中所产生的有害气体和烟尘。有关部门测试认定 ,其沥青烟。
关键词 烟气 静电净化技术 自焙阳极 铝电解槽 静电凝聚 电除尘器 超沈相输送 废气处理
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大伙房输水工程特长隧洞衬砌选型及支护系统优化研究 被引量:7
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作者 朴春红 《水利建设与管理》 2016年第5期33-36,共4页
大伙房输水工程特长隧洞主洞长为85km,开挖洞口直径为8m,是相对较长的隧洞。隧道开挖时常通过修建衬砌为主、钻眼爆法为辅的联合方式进行开挖。施工期间必然会遇到一些复杂地段,需要因时因地的选取衬砌的种类。本文采取理论分析和现场勘... 大伙房输水工程特长隧洞主洞长为85km,开挖洞口直径为8m,是相对较长的隧洞。隧道开挖时常通过修建衬砌为主、钻眼爆法为辅的联合方式进行开挖。施工期间必然会遇到一些复杂地段,需要因时因地的选取衬砌的种类。本文采取理论分析和现场勘查,深入研究制约衬砌类型选取的因素,并对不同种类衬砌样式的优缺点进行分析,选取合理的衬砌类型在大伙房输水工程中应用。 展开更多
关键词 输水隧洞 特长隧洞 敞开式衬砌 锚喷支护
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紧密联合体模式下超长输水隧洞施工HSE管理 被引量:1
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作者 田振保 刘敬辉 +1 位作者 董联杰 杨长松 《山西建筑》 2018年第30期249-250,共2页
以"鄂北水资源配置工程15标EPC总承包"工程为例,从紧密联合体EPC总承包HSE管理的特点出发,论述了质量、安全、职业健康环境管理体系的构建过程,对进一步提高超长输水隧洞工程总承包项目管理水平具有一定的理论意义和工程应用... 以"鄂北水资源配置工程15标EPC总承包"工程为例,从紧密联合体EPC总承包HSE管理的特点出发,论述了质量、安全、职业健康环境管理体系的构建过程,对进一步提高超长输水隧洞工程总承包项目管理水平具有一定的理论意义和工程应用价值。 展开更多
关键词 EPC总承包 HSE 超长输水隧洞 紧密联合体
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引江补汉工程超长输水隧洞线路地质比选 被引量:1
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作者 吴树良 邓争荣 +2 位作者 王吉亮 刘凯 齐凌轩 《中国水利》 2022年第18期44-47,共4页
引江补汉工程坝下方案拟定的4条线路方案,具有线路长、埋深大、地形地貌复杂、地层岩性多样、地质构造复杂、岩溶水文地质条件复杂、地应力水平总体偏高等特点,需综合比选合适的线路方案。在对各比选线路工程地质进行分析论证后,选择差... 引江补汉工程坝下方案拟定的4条线路方案,具有线路长、埋深大、地形地貌复杂、地层岩性多样、地质构造复杂、岩溶水文地质条件复杂、地应力水平总体偏高等特点,需综合比选合适的线路方案。在对各比选线路工程地质进行分析论证后,选择差异明显的地质因素,按其影响程度和重要性,划分为关键地质因素、重要地质因素和一般地质因素三类,进行综合地质比选。经对三类地质因素综合比较,龙安1线整体占优,其遭遇断裂(层)和岩溶涌水突泥问题的风险相对低于其他比选线路,推荐龙安1线为坝下方案输水隧洞线路。 展开更多
关键词 超长输水隧洞线路 地质比选 地质因素 深埋长隧洞 引江补汉工程
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