一种基于多源数据的加压策略参数确定方法

By monitoring the fluid pressure tolerance level and real-time parameters during the infusion process using multi-source data, and dynamically adjusting the pressurization holding time, the problem of unstable fluid delivery in existing technologies is solved, and adaptive control and stability improvement of the fluid delivery process are achieved.

CN122407983APending Publication Date: 2026-07-17SHANGHAI GAOHUI RUBBER & PLASTIC PROD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHANGHAI GAOHUI RUBBER & PLASTIC PROD CO LTD
Filing Date
2026-05-25
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing technologies lack real-time monitoring and analysis methods for the pressure tolerance characteristics of different fluids and the dynamic state of pipelines. They are unable to adaptively control pressurization in response to changes in liquid level, flow rate fluctuations, pipeline vibration, and bubble formation, which can easily lead to low steady-state conditions, frequent negative pressure, and uneven pressure during fluid transportation.

Method used

By monitoring fluid pressure tolerance level, injection target pressure data, liquid level change, instantaneous flow rate, pipeline vibration amplitude, and number of air bubbles in the channel using multi-source data, a medium rebound time monitoring window is established, and the pressurization holding time is dynamically adjusted to achieve adaptive control.

Benefits of technology

It improves the stability of fluid transport, avoids flow rate reversal and pressure unevenness, and achieves adaptive enhancement of the transport process.

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Abstract

本发明公开了一种基于多源数据的加压策略参数确定方法,涉及加压策略技术领域,用于解决负压频发及压力不均现象的问题,通过调取同类型流体的压力耐受层级并结合历史加压时长确定默认加压保持时长,通过受压数据计算介质回弹时间并建立监测窗口,在回弹时间内同步监测瞬时流速与液位变化,分析流量脉冲周期生成输送稳定等级以识别低稳态,当低稳态发生时进行加压,同时监测管路振动与通道气泡,加压结束后根据输送状态与振动动态调节保持时长,并统计压力数据中的负压频次判断是否需要再次加压,从而构建基于流体压力耐受特性与介质恢复行为的多源数据驱动加压调控链路,实现输送稳定性的自适应增强。
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