溶剂脱沥青装置离心式机泵根据介质分类,主要由渣油泵、液态丙烷泵、蜡油泵、增压泵及污水泵等组成.泵用机械密封是保证机泵安全环保运行的主要组件,针对溶剂脱沥青装置机泵不同介质特点,对其所选用机械密封进行分析,简图示意密封冲洗布置方式,阐述所选机械密封运行主要机理,分析各类机泵机械密封发生问题原因,并给出了优化配置.通过实践应用,进一步延长了溶剂脱沥青装置泵用机械密封平均寿命,有效推进机泵无泄漏平稳运行.
从甲醇、乙二醇、甘油3种防冻剂以及泡排剂FA-1中优选出质量浓度为15%乙二醇+3‰FA-1泡排剂的复合防冻泡排体系.复配体系在97.9℃以下稳定性良好,携液能力达到FA-1泡排剂同等条件下的88.94%,能够满足地面温度在高于-5℃条件下,从井口注入、井筒返出、地面输送"全周期、全流程"的防冻,对于保护"地面、地下"管道免受冻堵危害有一定的借鉴和应用意义.
采用多产丙烯、异丁烯和低硫燃料油组分技术对中国石化青岛石油化工有限责任公司140万t/a重油催化裂化装置进行了改造.改造后,将汽油加氢装置中的汽油切割塔塔顶轻汽油替代改造前的柴油送入提升管回炼.结果表明:在轻汽油回炼比为4.29%的情况下,液化气和干气收率分别增加2.18,0.31个百分点;液化气中丙烯体积分数较回炼前提高0.43个百分点;装置回炼轻汽油增产丙烯约1 t/h,获得的综合经济效益约12.8万元/d.
毛细管泡沫组合排水采气技术、气举泡沫组合排水采气技术、管柱排水采气技术及柱塞气举组合排水采气技术是湿气气藏排水采气新技术.其中,毛细管泡沫组合排水采气技术适用于地层深度为4000 m、日排液量在150 m3左右且排水硬度值小于8 g·L-1、水中其他可溶性酸性物含量较低的湿气气藏;气举泡沫组合排水采气技术适用于井深为3500 m、地层压力小于10 MPa的情况,其日排液量为800 m3;柱塞气举组合排水采气技术适用于地层深度为2900 m的情况,其日排液量为60 m3;柱塞气举组合排水采气技术适用于地层深度不超过2700 m且具有一定自喷能力的气井.
围油栏布放舵能够充分利用水流动能,使围油栏布放舵自动布放到合理位置.其关键推进部分的栅板是设计的重中之重.特定尺寸的弧状栅板结构能够利用水流动能产生压差进而按照特定方向推进围油栏布放舵.从栅板的结构设计出发,应用ANSYS Workbench软件进行栅板的外流场数值模拟计算,获得了其外流场的压力分布、速度分布以及所受水流作用力的大小,进而说明栅板设计的合理性以及围油栏布放舵在水中布放的功能实现,并为后续布放舵的生产设计提供了参考.
随着全球贸易化进程的加快,IMO《国际防止船舶造成污染公约》规定,从2020年1月1日起全球船用油的硫质量分数上限必须从3.5%降低到0.5%.本文介绍了国内外船用燃料油低硫化的进程和原因、应对船燃低硫化的措施以及国内外船用燃料油市场情况,分析了低硫船用燃料油的生产技术、海南炼化低硫船用燃料油的生产方法和效益以及低硫船用燃料油带来了挑战和机遇,提出了建立海南炼化船用燃料油基地的建议以及有关政策建议.
围油栏布放舵能够充分利用水流动能,使围油栏布放舵自动布放到合理位置,从而拉动围油栏达到围困溢油的目的.本文介绍的围油栏布放舵的结构及其使用方法,并简要分析了使用原理,对围油栏布放舵的未来研制发展提出了新的方向和展望.
气藏在开发过程中,随着气体产出,地层压力会不断下降,气井产能也会逐渐降低.当气井产量降低到某一值时,气体将不能够将液体从井筒中带出,导致液体在井筒中累积,造成积液,积液的存在会改变气井井筒压力梯度分布.本文提供了一种利用测压资料快速求取判断液面位置的方法,通过确定测压资料中的压力梯度突变点,利用突变点前后气液混合段和纯液段压力梯度以及纯气段末端测点深度和纯液段起始测点深度,便可快速计算出井筒中的液面深度.现场应用20口井,统计表明该方法与实测结果平均误差仅为1.33%,可为准确计算井筒积液量,确定泡排、气举等工艺参数选择提供依据,达到高效、长效开发气田的目的.
川西坳陷东坡沙溪庙气藏属于低渗致密气藏,随着气藏开发进入中后期,为解决储层反凝析油、水锁等问题采用"投产初期合理配产,提高露点压力以上的采出程度;生产中期保持气井平稳生产,尽量避免关井和提产;生产后期采用化学药剂解除储层伤害"的生产治理技术,储层伤害治理效果显著.针对井筒堵塞和积液问题,同时推导出了全新的凝析油气井泡排剂加量公式,优化了起泡剂加注方式,制定了一井一策井筒解堵措施,成功开展20余口井井筒解堵作业,实现经济效益400余万元.
电脱盐回炼及焦炭塔回炼是平衡炼厂重污油的重要途径.由于重污油中各种杂质含量比较复杂,容易乳化,加工重污油脱水工艺单一,重污油罐容量小,静止沉降时间短,回炼流程不够优化,导致回炼的重污油含水量超高,会造成全厂重污油不平衡,引发电脱盐跳闸、分馏塔结盐、控制阀堵塞、生化池带油等一系列问题.阐述了某公司重污油回炼现状、重污油回炼流程及操作步骤,重点分析了重污油回炼存在的问题并提出相应改进措施.
简述了丙烷脱沥青原理;着重介绍了AH-90重交道路沥青和150BS光亮油所需轻脱沥青油的生产过程.
将动力车间原有的中温中压抽凝汽轮机组进行改造后,应用于纯低温低压蒸气发电,以完成公司低压蒸气回收发电项目。
本文结合天然气在开采、集输等环节的实际特点,针对薄弱环节这一中心展开叙述,首先明确了薄弱环节的概念,引入木桶原理,依据HSE体系找出了系统环节,其次从现场实际出发,找出了直接作业环节控制不力、员工安全意识仍需增强等十大薄弱环节,并进行了详细的情况描述;最后,从减少人的不安全行为、消除物的不安全状态,避免管理漏洞等方面入手,制订了详细的治理对策。
The seepage field of horizontal wells can be divided into outer region,which is a radial flow to an ellipse vertical well,and inner one,which is an ellipsoid flow to horizontal well.Each seepage model is deduced considering fluid compressibility and stress sensitivity,and then the formula for the performance of horizontal well is gained by utilizing conformal transformation and equivalent flow resistance law.Compared with classic formula,the derived formula is reasonable and reliable.When considering fluid compressibility and stress sensitivity,it means when α is not equal to zero,there is no longer a linear relationship between conduction of horizontal well and the drawdown pressure;the production will decrease with the increasing of CK and increase with the increasing of Cρ.When stress sensitivity is strong,it increases slowly with the increasing of drawdown pressure.
Taking horizontal well Sheng3-Ping8 in Shengli oilfield as an example, the operation difficulties and technical measures of 3-D barrier-bypassing horizontal well are introduced. The operation behavior of 3-D barrier-bypassing horizontal well is discussed based on profile optimization, well-bore trace control and drilling fluid technique, which provides favorable reference for similar operation in 3-D barrier-bypassing horizontal well.
<正>随着天然气生产向自动化、网络化、智能化方向的迅猛发展,大部分天然气集配气站都建立和完善了自动计量、视频监控、生产数据传输、无线通讯等系统。但是随着电气仪表设备和数据线的增多,系统受雷击或因雷电影响受损的概率陡然增加,特别是近几年,天然气集配气站内计量、控制系统设备频繁出现雷击损坏现象。因此,对天然气集配气站实施综合防雷技术改造十分必要。
Exergy analysis was used to evaluate the energy consumption for atmospheric and vacuum distillation unit in a refinery.The exergy analysis model was made for atmospheric and vacuum unit and its devices.The evaluation standards of exergy efficiency and exergy destruction rate were defined.The availability destruction of different devices for the unit and devices was calculated.The result shows that the exergy efficiency of atmospheric furnace and vacuum furnace is 41.5% and 44.1% respectively.The exergy destruction rates of atmospheric furnace,vacuum furnace,atmospheric column,vacuum column and heat exchangers are higher.
The oil and gas pressure pipe used in oilfield were classified combining with the actual production,the risk gradient and management priorities were identified. The current situation of gas pipeline was analyzed and the main problems were identified. The construction period and operating conditions of GPS and GIS information system were introduced,together with the difficulties of the current pipeline management. Some views and opinions were described and a brief description on how to advertise,governance,and emergency manage was given.
为了充分利用高压气源的能量.在加气母站的建设中灵活选用子站压缩机,同时兼顾远近期不同气源工况的情况下,加气站的设计实例.介绍了压缩天然气(CNG)加气站及减压储配站工艺流程和主要设备的选型应注意的事项以及设计过程中主要设备的作用和采取的安全措施.
This paper analyzes the noise causes of natural gas piston compressor. According to noise mechanism, it offers the relevant treatment measures. It meets the Ⅱgrade requirement of 'Standard of noise at boundary of industrial enterprises' (GB1234890) after treatment. It reduces the noise hazard and assures the normal operation and maintenance of the equipment.