用于确定机械密封摩擦功率性能的软传感器技术

IF 3.8 Q2 COMPUTER SCIENCE, INFORMATION SYSTEMS
Nils Reeh, Gerd Manthei, Peter J. Klar
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引用次数: 0

摘要

机械密封可确保离心泵的内部密封不受周围环境的影响。它们是离心泵中最关键的部件之一。因此,应在运行期间监测机械密封的状况。机械密封摩擦功率是离心泵机械损耗的重要组成部分,可用作磨损指标,因此也可用作密封状况指标。本文所述的软传感器基于密封件的温度测量,可用于确定摩擦功率性能。决定摩擦功率性能的一个主要因素是机械密封和泵内介质之间的热传递。为了计算热传递,机械密封环中的静态温度场由传输效率来描述。为评估软传感器计算的质量,确定了稳态运行条件下的均方根误差。摩擦功率性能可通过记录机械密封配合环和介质的温度来确定。该算法能检测到稳态工作条件的变化,但不能映射出静态工作条件之间的动态变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Soft Sensor Technology for the Determination of Mechanical Seal Friction Power Performance
Mechanical seals ensure the internal sealing of centrifugal pumps from the surrounding environment. They are one of the most critical components in a centrifugal pump. For this reason, the condition of mechanical seals should be monitored during operation. Mechanical seal friction power is an important component of mechanical losses in centrifugal pumps and is used as an indicator of wear and therefore seal condition. The soft sensor described in this paper is based on temperature measurements at the seal and can be used for determining the frictional power performance. A major factor in determining frictional power performance is the heat transfer between the mechanical seal and the medium inside the pump. For calculating the heat transfer, the stationary temperature fields in the rings of the mechanical seal are described by transmission efficiencies. The root mean squared error was determined for steady-state operating conditions to assess the quality of the soft sensor calculation. The frictional power performance can be determined by recording the temperature at the mechanical seal mating ring and the medium. The algorithm detects when the steady-state operating conditions change but does not map the dynamic changes between the stationary operating conditions.
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来源期刊
Applied System Innovation
Applied System Innovation Mathematics-Applied Mathematics
CiteScore
7.90
自引率
5.30%
发文量
102
审稿时长
11 weeks
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