滤器
- filter;strainer;colander;sieve;sifter
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[filter; strainer] 过滤用的装置。一种多孔性物品或物质(如布、纸或砂),作为一种介质用来从所通过的液体或气体中分离出悬浮物质或溶解杂质或色素物质
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船用滤器的选用
The selection of marine strainer
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所有与泵相连的管线彻底冲洗后,连续两次检查没有发现垃圾碎块后,拆掉临时的吸入粗滤器。(请指正)
After all lines available to the pump have been thoroughly flushed , remove the temporary suction strainer after finding no debris on two successive examinations .
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EAST超导托卡马克偏滤器水冷结构设计
Design of divertor cooling structure for EAST superconducting tokamak
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TrapEase腔静脉滤器预防肺栓塞的应用研究
Clinical application of Trap Ease vena cava filter for prevention of pulmonary embolism
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基于自组织的柴油机PM袋滤器系统的研制
Research of a Diesel Particulate Bag Filter System Based on Self-Organizing
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TrapEase腔静脉滤器的临床应用
Clinical application of Trap Ease vena cava filters
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所有溶液的PH值调整在7.5左右,使用滤器消毒,-200C储存。
The pH of all solutions was adjusted to approximately 7.5 , and the stock solutions were filter-sterilized and stored at-20 ℃ until use .
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方法对37例有发生肺栓塞倾向的患者行TrapEase腔静脉滤器置入术。
Methods 37 patients with the tendency of pulmonary embolism were treated with implantation of Trap Ease vena cava filters .
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本文用MonteCarlo方法模拟了偏滤器扁平抽气收集板附近区域的氦原子输运。
A Monte Carlo code " IDHET " has been utilized for simulating the transport of neutral helium near divertor target plate .
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结果全部患者均成功置入上腔静脉滤器,随访复查期间均未出现PE及滤器倾斜、移位。
Results SVCF was inserted successfully in all the patients without PE , and no tilt and migration of filter were found during the following-up .
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东风4型机车GZ型空滤器在运用、检修中有关问题的分析与对策
Fault Analysis on the GZ Type Air Filter of DF_4 Type Diesel Locomotive
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FEB偏滤器等离子体温度及靶板运行温度的优化
Optimization on the temperatures of divertor plasma and divertor plate in the Feb
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HL-2A单零偏滤器的位形特征
Characteristics of the single null divertor of the HL-2A tokamak
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目的:测试PL型滤器对浓缩血小板制剂(PCs)中白细胞的滤除作用。
Objectives : To determine the role of white blood cells-depletion with PL model filter in platelet concentrates ( PCs ) .
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结论TCD监测可以评价滤器保护的CAS术前、术中和术后微栓子发生和脑血流变化。
Conclusions TCD monitoring might evaluate the microemboli and cerebral blood flow before , after and during CAS with filter devices .
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HL-2A偏滤器结构改造及热负荷分析
Structural modification and power flux analysis of HL-2A divertor
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HL-2A偏压偏滤器物理设计
Physics design of biased divertor in the HL-2A tokamak
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HL-2A偏滤器位形的边缘等离子体特性
Edge plasma characteristics of divertor configuration in HL-2A tokamak
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HL-2A偏滤器运行模式的探针测量
Measuring the HL-2 A divertor plasma with probes
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HL-2A偏滤器托卡马克真空室的预装
Vacuum Vessel Preassembly of the HL-2A Divertor Tokamak
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大脉冲热负荷下HL-2A偏滤器靶板的热分析
Thermal analysis of the HL-2A divertor plates under dumping of intense pulse thermal load
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HL-2A装置偏滤器室中性气体压强的初步研究
Preliminary study of neutral gas pressure in the divertor chamber of the HL-2A tokamak
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肾静脉导丝定位在引导IVC滤器置入中的作用
The value of guide wire localization of renal veins to guide placement of inferior vena cava filter
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HL-2A装置偏滤器改造的初步设计
Preliminary design of the HL-2 A divertor
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方法1998~2004年,北京铁路总医院共为70例DVT病人植入腔静脉滤器。
Methods From 1998 to 2004,70 patients with DVT were transplanted the vena caval filter in Beijing General Railway Hospital .
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方法在下腔静脉置入滤器后,应用经颈静脉髂股静脉血栓清除术、经导管接触性溶栓术和经皮腔内血管成形术(PTA)等多种血管介入技术进行综合性介入治疗。
Methods Transjugular iliofemoral venous thrombectomy , catheter directed thrombolytic therapy and PTA were sequentially performed after inferior vena cava filter was implanted .
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目的本文用国产白细胞过滤器滤除浓缩血小板制剂中的白细胞(PL型滤器),用于防止反复输注和血小板的病人发生血小板输注无效。
Objective Using domestic PL-filter to deplete leucocytes in the preparation of platelet-concentrate . To prevent inefficacy in platelet transfusion in cases of repeated platelet transfusion .
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针对H2S污染的严峻形势,构建了包括催化再生装置和生物滴滤器的生物催化氧化装置。
To the rigorous pollution of H2S , the bio-catalytic oxidation reacter was constructed which included a catalytic regenerator and a trickled-bed biofilter .
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红细胞聚集指数、变形指数和刚性指数,红细胞电泳时间,游离Hb等红细胞相关参数的测定。结果经白细胞滤器处理后,红细胞各项指标均无明显改变,血液黏度轻度下降。
Results All parameters about RBC : aggregation index , deformability index , rigidity index and dissociative Hb had no change , blood viscosity gently decreased .
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结果70付PL型滤器过滤浓缩血小板,白细胞去除率999%,血小板回收率超过90%。
Results 70 sets of PL-filter were used to prepare platelet concentrate . The recovery rate of platelet was over 90 % , with a leucocyte-depletion of 99.9 % .