深夜爽爽动态图无遮无挡,日本激情一区二区三区,波多野结衣三级在线播放,国产精品剧情对白无套在线观看,国产精品久久777,国产h在线播放,麻豆tv在线观看入口,91色在线
Welcome,Flow Switches,Shanghai ZanKe Automation Technology Co., Ltd Hotline:18001874240
Language: Chinese∷  English

Home> English Website news

Ultrasonic Flowmeter Accuracy Analysis

Time: 2025-07-30 02:07:53 Click:0

Here is the professional English translation of the ultrasonic flowmeter accuracy analysis:


Ultrasonic Flowmeter Accuracy Analysis


The measurement accuracy of ultrasonic flowmeters typically ranges from ?±0.5% to ±2.5%?, influenced by operational conditions and application requirements ?. Key details are summarized below:


1. Accuracy Classifications

High Precision (Class 0.5)?:

Error range: ?≤±0.5%?

Applications: Custody transfer, pharmaceuticals, and other high-demand scenarios. Requires annual calibration ?.

Portable devices support field calibration via magnetic probes ?.

Industrial Standard (Class 1.0)?:

Error: ?≤±1%?

Applications: Core water treatment processes, chemical industry. Requires straight pipe sections (10D upstream, 5D downstream; D=pipe diameter) ?.

General Purpose (Class 1.5+)?:

Error: ?≤±1.5%?

Applications: Wastewater monitoring, non-critical data collection. Lower maintenance costs ?.

2. Critical Factors Affecting Accuracy

Installation Conditions?:

Insufficient straight pipe sections (upstream <10D) or disturbances from valves/bends increase errors ?.

Sensor misalignment or dried coupling gel attenuates signals ?.

Fluid Properties?:

Transit-time method?: High accuracy for pure water (±0.5%~1%); exceeds ±2% with bubbles/impurities ?.

Doppler method?: Relies on suspended particle concentration; ineffective for low-impurity fluids ?.

Environmental Interference?:

EMI, temperature extremes (beyond -30℃~160℃), or pipe vibration require compensation ?.

Parameter Configuration?:

Improper damping coefficient (e.g., excessive value causing response delay) impacts dynamic accuracy ?.

3. Accuracy Reference for Typical Applications

Scenario? ?Recommended Class? ?Primary Error Sources?

Tap Water/Heating Systems Class 1.0 Water temp. variation, pipe scaling ?

Industrial Wastewater/Slurries Class 1.5~2.5 Suspended solids, turbulent flow ?

Oil/Fiscal Metering Class 0.5 Medium density fluctuations ?

Open-Channel Flow Monitoring Class 1.5~2.5 Water level variation, weir type ?


Maintenance Recommendations?:


Quarterly sensor inspections; annual calibration.

Doppler method preferred for particle-laden fluids; transit-time method for clean fluids ?.


Note: All technical terms (e.g., transit-time/Doppler method, damping coefficient) and numerical references (^^n^^) align precisely with the original Chinese content.


主站蜘蛛池模板: 万年县| 双峰县| 千阳县| 连城县| 尼玛县| 石屏县| 雷州市| 安岳县| 临沭县| 武功县| 莱芜市| 交城县| 襄樊市| 泸西县| 金塔县| 原平市| 突泉县| 唐山市| 三穗县| 普格县| 茂名市| 青州市| 准格尔旗| 涡阳县| 松桃| 谷城县| 鄱阳县| 双辽市| 滦平县| 灵武市| 塔河县| 含山县| 琼结县| 杭锦旗| 长兴县| 博客| 巴林右旗| 揭西县| 博客| 白水县| 梓潼县| 中方县| 嘉定区| 正蓝旗| 息烽县| 枣强县| 阿巴嘎旗| 闵行区| 阳原县| 柳林县| 和政县| 长子县| 沙洋县| 怀来县| 根河市| 武隆县| 邛崃市| 兴安县| 安远县| 讷河市| 略阳县| 慈利县| 康保县| 岑巩县| 满洲里市| 彝良县| 梁山县| 双柏县| 和政县| 诸暨市| 潞城市| 莱阳市| 湖北省| 衢州市| 班玛县| 云龙县| 黎川县| 绥棱县| 涪陵区| 永州市| 望城县| 郧西县|