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Application of Computational Fluid Dynamics and Fluid Structure Interaction Techniques for Calculating the 3D Transient Flow of Journal Bearings Coupled with Rotor Systems 被引量:20
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作者 LI Qiang YU Guichang +1 位作者 LIU Shulian zheng shuiying 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2012年第5期926-932,共7页
Journal bearings are important parts to keep the high dynamic performance of rotor machinery. Some methods have already been proposed to analysis the flow field of journal bearings, and in most of these methods simpli... Journal bearings are important parts to keep the high dynamic performance of rotor machinery. Some methods have already been proposed to analysis the flow field of journal bearings, and in most of these methods simplified physical model and classic Reynolds equation are always applied. While the application of the general computational fluid dynamics (CFD)-fluid structure interaction (FSI) techniques is more beneficial for analysis of the fluid field in a journal bearing when more detailed solutions are needed. This paper deals with the quasi-coupling calculation of transient fluid dynamics of oil film in journal bearings and rotor dynamics with CFD-FSI techniques. The fluid dynamics of oil film is calculated by applying the so-called "dynamic mesh" technique. A new mesh movement approacb is presented while the dynamic mesh models provided by FLUENT are not suitable for the transient oil flow in journal bearings. The proposed mesh movement approach is based on the structured mesh. When the joumal moves, the movement distance of every grid in the flow field of bearing can be calculated, and then the update of the volume mesh can be handled automatically by user defined function (UDF). The journal displacement at each time step is obtained by solving the moving equations of the rotor-bearing system under the known oil film force condition. A case study is carried out to calculate the locus of the journal center and pressure distribution of the journal in order to prove the feasibility of this method. The calculating results indicate that the proposed method can predict the transient flow field of a journal bearing in a rotor-bearing system where more realistic models are involved. The presented calculation method provides a basis for studying the nonlinear dynamic behavior of a general rotor-bearing system. 展开更多
关键词 mesh movement transient flow computational fluid dynamics (CFD) fluid-structure interaction (FSI) journal bearing
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早产儿喂养不耐受的临床表现及相关影响因素 被引量:10
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作者 郑水英 罗艳赟 《中国儿童保健杂志》 CAS CSCD 2023年第4期461-464,共4页
目的分析早产儿(胎龄<34周)喂养不耐受的临床表现及相关影响因素,以期为临床早产儿的喂养不耐受防治提供参考。方法选取2018年2月—2020年8月桐庐县妇幼保健院胎龄<34周的早产儿107例,采用自制问卷调查表、查询病历资料等方式调... 目的分析早产儿(胎龄<34周)喂养不耐受的临床表现及相关影响因素,以期为临床早产儿的喂养不耐受防治提供参考。方法选取2018年2月—2020年8月桐庐县妇幼保健院胎龄<34周的早产儿107例,采用自制问卷调查表、查询病历资料等方式调查产妇及早产儿的基本资料、临床表现及喂养耐受情况,采用单因素和多因素Logistic回归分析胎龄<34周的早产儿喂养不耐受的临床表现及相关影响因素。结果本研究中,36.45%的早产儿存在喂养不耐受,经单因素分析显示,出生体重轻、存在脐带异常、多胎、开始喂养时间晚、肠内喂养达110kCal/kg时间晚、肠内喂养达150kCal/kg时间晚、胎便排尽时间晚均是早产儿喂养不耐受的相关危险因素(P<0.05)。经多因素Logistic回归分析显示,出生体重重是早产儿喂养不耐受的独立保护因素(OR=0.003,95%CI:0.000~0.789,P<0.05),开始喂养时间晚、肠内喂养达110kCal/kg时间晚、肠内喂养达150kCal/kg时间晚、胎便排尽时间晚均是早产儿喂养不耐受的独立危险因素(OR=1.213、1.525、1.230、1.505,95%CI:1.011~1.456、1.186~1.960、1.097~1.378、1.027~2.207,P<0.05)。结论临床需密切关注出生体重轻、开始喂养时间晚、肠内喂养达110kCal/kg时间晚、肠内喂养达150kCal/kg时间晚、胎便排尽时间晚的早产儿,并针对上述因素对早产儿采取及时有效的干预治疗。 展开更多
关键词 早产儿 喂养不耐受 肠内喂养
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