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ID:36636913
大小:1.76 MB
页数:83页
时间:2019-05-13
《液氮过滤器过滤特性研究》由会员上传分享,免费在线阅读,更多相关内容在学术论文-天天文库。
1、上海交通大学硕士学位论文液氮过滤器过滤特性研究姓名:谢伟申请学位级别:硕士专业:制冷与低温工程指导教师:石玉美20070201上海交通大学硕士学位论文摘要度以后增大的趋势明显放慢。(2)过滤过程的理论分析建立低温过滤器过滤过程的压降计算模型。利用实验数据拟合出模型中3个重要参数,并应用模型对实际过滤过程的压降进行预测计算,其中包括对后续CGSE系统实际工况模拟实验的工况条件计算和CGSE系统实际中该过滤器的实际运行工况计算。同时还预测了在这些过滤工况下过滤器的理论失效时间。关键词:液氮、液氦、过滤
2、、压降计算、烧结金属过滤器V上海交通大学硕士学位论文摘要STUDYOFCHARACTERISTICSOFFILTERSUSEDTOFILTRATELIQUIDNITROGENABSTRACTCryogenicliquidfluidsarewidelyusedinsomehugescienceprojects,whichusuallyhaveveryspecialdemandsofthepurityofthosecryogenicliquidfluids.Thisstudyfocusesonhowt
3、oobtainhighlypurifiedcryogenicliquidfluids(thepercentageofpurity>99.999%)whichsatisfiesthedemandsofCGSEsystem.ThecharacteristicsofthecryogenicfilterusedinCGSEsystemarestudied.Thisstudyisbasedontheusageofengineeringproject.Itusestheoreticalanalysisande
4、xperimentalobservationtostudythecharacteristicsofthecryogenicfilter.Duringexperiment,theexperimentalplatformwhichisusedtosimulatetherealCGSEsystemisbuildandtheexperimentdataarerecordedbymanyrecordinginstruments.Byanalyzingtheexperimentdata,cometothese
5、conclusionsonsteadyprocessoffiltration:Ifilter’spressuredrop1)Thefilter’spressuredropincreasesasthepressureofcryogenicliquidfluidsgrows.2)Thefilter’spressuredropandtheflowrateofVI上海交通大学硕士学位论文摘要cryogenicliquidfluidsarelinear,whichmeanstheincreaseofflow
6、rateleadstotheincreaseofpressuredrop.3)Thefilter’spressuredropincreasesastheconcentrationofcryogenicliquidfluids’impuritygrows,butaftertheconcentrationofcryogenicliquidfluids’impuritycomestoacertainleveltheincreasetrendbecomeambiguous.IIfilter’scollec
7、tionefficiency1)Atthebeginning,thefilter’scollectionefficiencyincreasesgentlyastheflowrateofcryogenicliquidfluidsgrows.Afterthefilter’scollectionefficiencyachievesthemaximum,itbeginsdecreaseveryslowlyastheflowrateofcryogenicliquidfluidsincreases.2)Att
8、hebeginning,thefilter’scollectionefficiencyincreasesgentlyasthepressureofcryogenicliquidfluidsgrows.Afterthefilter’scollectionefficiencyachievesthemaximum,itbeginsdecreaseveryslowlyasthepressureofcryogenicliquidfluidsincreases.Theyformaparabol
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