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Research of the high performance low temperature vortex street flowmeter

机译:高性能低温涡街流量计的研究

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Flow measurement is the key method for R&D and operation monitoring of liquid rocket engine. Therefore, it is important to measure flux of low temperature liquid propellants for the liquid hydrogen/liquid oxygen or the liquid oxygen/kerosene rocket engine. Presently in China, the level meter and the turbine flowmeter are usually used in the experimentation of the liquid hydrogen/liquid oxygen rocket engine. The level meter can only scale average flux and the precision of the turbine flowmeter (the measuring wild point is 1.5%) can not be ensured due to the reason which there is not devices of low temperature real-time demarcation in China. Therefore, it is required to research the high performance low temperature flow measurement equipment and the vortex street flowmeter is selected because of its advantages. In the paper, some key techniques of low temperature vortex street flowmeter are researched from the design aspect. Firstly, the basic theoretical research of vortex street flowmeter includes signal detection method, shape of vortex producer and effects of dimension of vertex producer to vortex quality. Secondly, low temperature vortex street flowmeter adopts the method of piezoelectric components stress mode. As for the weakness of phase-change, lattice change and fragility for many piezoelectric materials in low temperature, it can not be fulfilled piezoelectric signal and mechanism performance under this condition. Some piezoelectric materials which can be used in low temperature are illustrated in the paper by lots of research in order for the farther research. The article places emphasis upon low temperature trait of piezoelectric materials, and the structure designs of signal detector and calculation of stress, electric charge quantity and heat transfer.
机译:流量测量是液体火箭发动机研发和运行监控的关键方法。因此,重要的是测量用于液态氢/液态氧或液态氧/煤油火箭发动机的低温液态推进剂的通量。目前在中国,液位计和涡轮流量计通常用于液氢/液氧火箭发动机的实验中。液位计只能标定平均流量,而由于中国没有低温实时标定装置,因此无法保证涡轮流量计的精度(测量野点为1.5%)。因此,需要研究高性能的低温流量测量设备,并且由于其优点选择了涡街流量计。本文从设计的角度研究了低温涡街流量计的一些关键技术。首先,涡街流量计的基础理论研究包括信号检测方法,涡产生器的形状以及涡产生器的尺寸对涡质量的影响。其次,低温涡街流量计采用压电元件应力模式的方法。至于许多压电材料在低温下的相变,晶格变化和脆性的弱点,在这种条件下不能满足压电信号和机构性能。为了进一步的研究,本文通过大量的研究举例说明了一些可以在低温下使用的压电材料。本文重点介绍了压电材料的低温特性,信号检测器的结构设计以及应力,电荷量和传热的计算。

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