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整体式压缩机振动及噪声治理效果分析_以某气田增压站为例.pdf

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天然气技术与经济2014年第8卷第5期Vol.8,No.5Oct.2014天 然 气 技 术 与 经 济Natural Gas Technology and Economy0引言在气田开采后期常使用天然气压缩机保持管道起点有较高的输送压力,从而维持稳定的生产能力。每个处于开发后期的气田都建有压缩机站,每个机站都会配备一台或多台压缩机用于气举排水或管道增压输送。随着压缩机数量的增多和压缩机使用时间的增加,压缩机本身及附属设备产生的振动和噪声逐渐增大1,不仅给机组本身正常运行带来影响,同时也给机组操作人员造成身心健康的损害,因此对压缩机站机组振动及噪声的治理就显得尤为重要。现以某气田DZ增压站噪声治理措施及效果为例进行探讨。1DZ增压站的基本情况DZ增压站是2009年4月投资新建的一座集增压气举排水和增压管输为一体的综合性场站。站内共设有4台整体式压缩机,在场站正北方向呈一条直线排开(图1),降噪设施有封闭式降噪房和阻抗型消声器。2009-2010年该站使用气举压缩机和管输压缩机各一台(另两台备用)维持着某气田60104m3d的生产能力。截至2010年年底,随着气田采出程度的增加和地层压力的衰减,又增开了一台增压管输的压缩机来确保天然气的外输压力。3台压缩机全天不间断地运转,压缩机本体及空冷器的振动和噪声随使用时间的延长而增大,在员工值班室已经能明显感觉到轻微振动,在值班室旁厕所狭小的空间里甚至会有头晕的感觉。通过检测发现部分监测点的振动值已严重超标,降噪房周围部分检测点的噪声值甚至超出了 工业企业厂界噪声排放标准 类的范围,因此需采取有效措施进行噪声治理,以保证机组安全运行的同时保障操作员工及周边群众的身心健康。图1DZ增压站场站布局示意图2振动及噪声原因分析2.1振动及噪声产生的原因通过仔细排查和分析,认为该站整体式压缩机主要振源为冷却器、动力缸及压缩缸2。于是有针对性地查找原因:通过检查机组外围固定设备doi:10.3969j.issn.2095-1132.2014.05.013整体式压缩机振动及噪声治理效果分析以某气田增压站为例张 翼周 璟王克琼敖 梅(中国石油西南油气田公司川西北气矿,四川江油621741)摘要针对天然气压缩机及附属设备随运行时间增加产生的振动和噪声逐渐增大而影响机组操作人员身心健康的问题,以某气田DZ增压站为例进行了振动及噪声原因分析,认定原因包括地脚螺栓及管卡松动或断裂、空冷器风扇轴承支撑架刚度不够、运动部件严重磨损、气流引起共振及消声器吸声材料损坏,在此基础上有针对性地采取检测并紧固地脚螺栓和管卡、按时保养并更换磨损严重的部件、增设固定支架避免形成共振以及更换新型宽频消声器等振动和噪声治理措施。关键词增压站整体式压缩机振动噪声治理文献标识码:B文章编号:2095-1132(2014)05-0043-04修订回稿日期:20140909作者简介:张翼(1987),助理工程师,从事规划计划工作。E-mail:52251060743Natural Gas Technology and Economy第8卷第5期(地脚螺栓、管卡、支撑件等)的松紧度和刚度发现:3号机组风扇轴承与曲轴连接皮带下方有两颗地脚螺栓松动,4号机组空冷器下方有1颗地脚螺栓断裂;3号、4号机组空冷器振动较大原因为空冷器支架刚度不够,有轻微变形;2号机组二级排气管支撑管卡断裂。月度保养过程中拆卸燃气喷射阀,检查火花塞、电子盒等部件发现4台机组共24只燃气喷射阀中有8只的气门顶杆已严重磨损,负荷较重的1号机组、2号机组点火提前角出现了偏差。燃气液压系统管路里也有大量生料带等杂质物。在机组停机大修过程中拆卸动力缸及压缩缸检查运动部件的磨损程度中发现4台机组的16副轴瓦中共有6副已严重磨损,48根动力活塞环和8组压缩活塞环磨损程度严重超标。2.2振动及噪声超标原因解析1)地脚螺栓松动或断裂。对于该站已投入运行的机组来说,摩擦系数和机组总重力是一定的,但因长时间振动、故障停机导致载荷骤减等原因会引起地脚螺栓松动或断裂,使得地脚螺栓拧紧力逐步减小发生松动,直接导致机组在基础上的振动幅度增大,严重时甚至会使螺栓断裂。2)管卡松动或断裂。因长时间处于运行状态,为防止管道振动而设计的支架管卡、固定螺栓会出现金属疲劳而松动或断裂,加剧振动。此外支架上原用于减震的橡胶垫因老化变硬或损坏,造成管卡无法完全固定管道,从而无法消除管道振动及管道和支架间摩擦形成的噪声。3)空冷器风扇轴承支撑架刚度不够。在相同工况下运行时,3 号、4 号机组空冷器振动值(68mms)相对1号、2号机组空冷器振动值(24 mms)超出很多,检查发现是机组空冷器支架刚度不够,有轻微变形,导致空冷器振幅增大并造成噪声增大。4)动力缸动力不均衡。整体式燃气压缩机每个动力缸配有两个燃气喷射阀,正常情况下燃气喷射阀点燃进入动力缸的天然气和空气混合气后推动活塞运动。但有时因火花塞积炭、点火时间错乱或燃气比不正确等因素引起的动力缸内气体爆燃会导致推力不均匀,进而引起动力缸和压缩缸激振,振动值和噪声值会在正常基础上成倍上升。5)运动部件严重磨损。因曲轴、十字头等部件磨损,曲轴与轴瓦、十字头与卡槽的间隙会越来越大,使动力端推力与摩擦力形成的合力不在一条直线上而导致活塞在直线运动过程中跳动,进而使机组的振动加大,严重时曲轴与轴瓦直接抱死,运动部件严重受损。同时,摩擦力引起旋转运动的不平衡惯性力会逐步增大,超过飞轮设计的平衡能力范围时,也会进一步加剧机组振动3。6)共振使振幅加剧。首先,地脚螺栓松动引起的振动、管卡松动引起的振动、周期性压缩天然气(上接第24页)4Spencer C W.Review of characteristics of low permeability gas reservoirs in Western United StatesJ.AAPGBulletin,1989,73(5):613-629.5 叶军.再议四川盆地西部坳陷深盆气 J.石油实验地质,2008,30(2):109-114.6姜福杰,庞雄奇,姜振学,等.致密砂岩气藏成藏过程的物理模拟实验 J.地质论评,2007,53(6):844-849.7曾大乾,李淑贞.中国低渗透砂岩储层类型及地质特征J.石油学报,1994,15(1):38-45.8庞军刚,李文厚,赵靖舟,等.子洲地区山西组及盒8段有利砂体成因探讨 J.西北大学学报,2007,37(4):636-641.9庞军刚,李文厚,杨友运,等.鄂尔多斯盆地子洲地区上古生界沉积体系特征 J.天然气工业,2007,27(12):58-61.10黄东杰,杨宇,伊向艺,等.子洲气田山2单井出水机理研究 J.新疆石油天然气,2010,6(3):46-54.11杨宇,周文,杨勇,等.子洲气田山2气藏气井产水成因研究 J.新疆石油地质,2010,28(2):197-199.12位云生,邵辉,贾爱林,等.低渗透高含水饱和度砂岩气藏气水分布模式及主控因素研究 J.天然气地球科学,2009,20(5):822-826.13王晓梅,赵靖舟,刘新社.苏里格气田西区致密砂岩储层地层水分布特征 J.石油与天然气地质,2012,33(5):802-809.14代金友,李建霆,王宝刚,等.苏里格气田西区气水分布规律及其形成机理 J.石油勘探与开发,2012,39(3):524-529.15杨华,付金华,魏新善,等.鄂尔多斯盆地天然气成藏特征 J.天然气工业,2005,25(4):5-8.(编辑:卢栎羽)张翼,等:整体式压缩机振动及噪声治理效果分析 以某气田增压站为例44天然气技术与经济总第47期2014年产生的气流脉动,在一定频率范围内容易引起共振,导致振动进一步加剧;其次,4台相同型号的整体机,不同的机组间振动频率也很接近,极易引起机组间的共振而使得振动进一步加剧。7)消声器内部吸声材料损坏。整体式压缩机排气温度为350400,高温气体经动力缸排气管直接进入消声器内部后排出,消声器内部的吸声材料长时间与高温气体接触易损坏。而没有吸声材料的消声器又只能依靠其设计结构进行部分降噪。3振动及噪声治理的措施1)检查地脚螺栓和管卡等固定设施的松紧程度。日常巡检过程中观察机组振动状态,观察机组振动值曲线,对于突然出现的异常振动或逐渐升高的振动数据,应及时分析、及时查找原因,对松动的地脚螺栓、管卡及时加固,对刚度不够的支撑件及时增加支撑以减少振动及噪声的影响。2)定期检查动力缸元件。通过检查维修和更换磨损喷射阀顶杆和座圈,保证喷射阀及时开启和关闭;确保燃气液压系统运动机构在正常范围内动作,保证喷射阀开度从而确保动力缸内混合气体进入量;通过清除火花塞积炭或更换火花塞,保证火花塞能正常点火;检查调整点火提前角,确保电子盒及高压点火线圈正常工作。3)检查运动部件的磨损情况。通过按时进行的月保养、半年保养、年度保养及三年期机组大修,及时检查运动部件磨损程度和配合间隙值,对于磨损严重产生间隙超标的磨损件和运动件应及时进行维修或更换,保证机组运动部件处于良好的运动状态,同时正确的起停机操作和良好的润滑状态也是防止磨损加剧的措施。4)增设固定支架。在吸气和排气管路上增设固定支架,避免管路振动与气流脉动形成共振,同时也可适当调整相邻机组的飞轮转速,在一定范围内尽可能避免机组间产生共振。5)更换消声器。通过分析认为之前用的4台阻抗型消声器在结构上吸收低频噪声能力较弱,且内部吸声材料大多已损坏,于是在2011年的大修过程中更换了4台新型宽频消声器。4采取措施前后振动及噪声值对比2011年DZ增压站通过以上一系列治理措施,取得的效果十分明显。2010年、2012年采取治理措施前后的监测数据对比见表1。由表1可以看出,采取措施前厂界噪声日间8个测点,只有两测点达到GB12348-2008工业企业厂界环境噪声排放标准2类要求,夜间只有8号测点达到2类要求,而采取措施后厂界噪声日间8个测点均达到GB12348-2008工业企业厂界环境噪声排放标准2类要求,夜间有4个监测点达到2类要求。数据表明这些措施对于噪声治理起到较好的效果。采取治理措施前后3台在用机组振动数据见表2。由表2可以看出采取措施前该站压缩机基础12个监测点中有3个监测点位移大于200 m,有1个测点速度大于6.3 mms。采取措施后压缩机基础所有测点位移均小于评价指标200 m,所有测点速度均小于评价指标6.3 mms,采取措施后该站振动值全部控制在了指标范围以内,振动治理效果较为明显。年份20102012测点编号LeqdB(A)LeqdB(A)日间夜间日间夜间标准值dB(A)605060501号71.154.853.947.72号69.655.855.151.43号62.857.857.555.64号62.856.956.554.45号57.255.455.452.06号65.551.555.347.97号59.066.750.749.08号60.749.751.848.1表1采取措施前后监测点的厂界噪声数据对比表天然气技术与经济地面工程45Natural Gas Technology and Economy第8卷第5期类别1号压缩机基础3号压缩机基础4号压缩机基础测点准确位置靠飞轮一侧的动力缸下方水泥基础水平方向靠飞轮一侧的动力缸下方水泥基础铅直方向靠冷却器一侧正对压缩缸下方水泥基础水平方向靠冷却器一侧正对压缩缸下方水泥基础铅直方向靠飞轮一侧的动力缸下方水泥基础水平方向靠飞轮一侧的动力缸下方水泥基础铅直方向靠冷却器一侧正对压缩缸下方水泥基础水平方向靠冷却器一侧正对压缩缸下方水泥基础铅直方向靠飞轮一侧的动力缸下方水泥基础水平方向靠飞轮一侧的动力缸下方水泥基础铅直方向靠冷却器一侧正对压缩缸下方水泥基础水平方向靠冷却器一侧正对压缩缸下方水泥基础铅直方向2010年位移m382.6452.9118.2569.51343.3989.9129.0571.3340.4455.71190.03744.07速度(mms-1)5.20.810.370.94.81.370.470.990.730.892.5510.912012年位移m13.2754.5649.0135.8534.2259.2522.5535.5341.5940.8447.0325.29速度(mms-1)0.290.830.690.470.710.820.410.740.660.620.880.48表2采取措施前后3台机组的振动数据对比表5结束语引起整体式压缩机振动和噪声加剧的原因除上所述外还有基础设计不合理、装配间隙不合理、结构选型不合理、管路设计不合理及缓冲罐缓冲效果不理想等,只有因地制宜地对不同地点、不同状态的不同机组采取针对性的措施,才能起到减小振动降低噪声的效果。参考文献1朱新社.往复式压缩机管系振动及其治理 J.石油化工设备技术,2006,27(6):50-53.2骆江锋.降低往复式压缩机振动与噪声的设计 J.食品与机械,2006,22(6):91-94.3时俊杰.往复式压缩机振动分析及管系改进 J.石油化工设备,2004,33(2):68-69.(编辑:蒋龙)张翼,等:整体式压缩机振动及噪声治理效果分析 以某气田增压站为例46天然气技术与经济field with H2S,CO2and S,a domestic nickel-based alloy with goodcorrosion resistance was evaluated and validated.The programwhich adopts materials of both domestic 4c+4d nickel-based alloytubes and 718+725 tool sets can not only ensure safety but also usethe lower-grade material.To further reduce the completion cost,electroplate tungsten liner and 160 solid-free annulus protectionfluid were developed.Finally,a synthetical technology using do-mestic nickel-based alloy tube,electroplate tungsten liner,and sol-id-free annulus protection fluid,was applied to 15 wells.It plays akey role in the construction of 34108m3productivity of Yuanbagasfield,and provides reference of anticorrosion for similar sour-gas wells.Key Words:Yuanba marine facies,anticorrosion,domestic high-nickel alloy,tungsten plating,annulus protection fluidApplication of Super Sonic Separator toDehydration and Dehydrocarbon of Natural GasBy YANG Bo,ZHANG Shuqin and ZHENG RuiABSTRACT:Since in Tahe oilfield,many remote single wells arefar away from gas gathering pipelines,it s very difficult to carry outboth dehydration and dehydrocarbon of natural gas.A new technol-ogy named super sonic separator(3S)is presented.This paper illus-trates the 3S technology in detail,including the fundamental princi-ples and the structure of used vortex tube.Meanwhile,3S skid-mounted equipment has been applied to one well to implement nat-ural-gas dehydration and dehydrocarbon.In addition,this technol-ogy has more advantages than other traditional approaches in termsof efficiency,energy consumption,and economic benefits.At last,some disadvantages are also pointed out.Key Words:super sonic separator,dehydration,dehydrocarbon,vortex tube,energy consumptionControlling Vibration and Noise from Integral Compressors:An Example from OneBooster StationBy ZHANG Yi,ZHOU Jing,WANG Keqiong and AO MeiABSTRACT:With continuous operation of gas compressors andtheir supporting facilities,both vibration and noise from them mayincrease gradually,thus affecting physical and mental health of op-erators.In this study,some causes of vibration and noise from DZbooster station in a gasfield are analyzed,which include looseningor breakage of anchor bolt and pipe clamp,insufficient rigidity offan bearing support of air cooler,heavy wear of moving parts,reso-nance generated by airstream,and break of acoustic absorbing ma-terial of silencer.So,some measures to control vibration and noiseare made,including detecting and fastening anchor bolt and pipeclamp,carrying out scheduled maintenance and changing heavy-wear parts,avoiding resonance by preparing an additional fixedsupport,and replacing a new broadband silencer.Key Words:booster station,integral compressor,vibration,noisecontrolEconomic Analysis on Inner Coating Technology for Long-distance Gas PipelineBy LIAO Zhimin,XIONG Shan,WEN Tao and ZHOU HaoABSTRACT:In order to reduce the pressure loss in a long-dis-tance gas pipeline and increase the pipeline s transmission effi-ciency,a technology of inner coating has been used.Taking onelong-distance gas pipeline in south China as an example,we wereworking on the assumption that both outlet pressure at the first sta-tion and inlet pressure at the last station accorded with pipelinespecification while establishing a hydraulic simulation calculationmodel;and then,two projects with inner coating and without innercoating were simulated and calculated;thirdly,we offered distinc-tive investment to these two projects,including compressor pur-chase fee,electricity charge,and maintenance cost.Results showthat for one project with inner coating,its investment in buyingcompressors,paying for electricity,and maintenance fee is lowereven though a higher investment at the initial construction.And asthe extension of time,its overall investment is much lower than thatof another project without inner coating.Key Words:long-distance gas pipeline,inner coating technology,economic analysis,investment,operation costInfluence of Optimum Design on CostControl of Natural-gas Engineering:AnExample from Comprehensive Utilizationof Gas ProjectBy ZHAO Li and YAN DanABSTRACT:In view of the current situation of cost managementin China natural-gas projects,this paper takes the comprehensiveutilization of gas project in Xinjiang Karamay Base as an example,and analyzes the basic features of project cost from four optimiza-tions,including architectural design,structure design,installation,and preliminary estimates.It not only explains the influence of opti-mum design on cost control,but also provides some advices on im-proving optimum design,such as enhancing the design awareness ofowners,doing better on supervision of design work,and choosingthe best survey and design enterprises.Key Words:natural-gas project,cost control,optimum design,preliminary estimates optimizationComprehensive Evaluation of Gas MarketDemand:A Case Study of Target Marketfrom the Sichuan to East Gas TransmissionBy GUAN Surui,YUAN Jianli,ZHANG Peng and LI PuABSTRACT:In recent years,Chinese natural-gas market has en-tered a period of rapid development.In 2013,gas consumptionreached 1692 108m3.With an increasing consumption,the gasprice and structure should be optimized and adjusted,which mayaffect the whole gas demand a lot.Taking the target market from theSichuan to East Gas Transmission as an example,we study the de-mand of gas market.Results show that the key steps for further mar-keting are to expand the gas source and to speed up the construc-tion of gas pipelines.Key Words:demand of gas market,comprehensive evaluation,the Sichuan to East Gas Transmission,target marketReasonable Responsibilities of Oil andGas Enterprises Taking for Natural-gasPeak Shaving:An Example from Sichuan-79
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