Introduction
The use of recycled oil as an energy source presents a significant processing problem. Because composition of the fluid is not consistent and it also may contain impurities, the use of conventional flowmeter technologies is not practical. ADMAG CA, however, has been shown to provide reliable and stable flow measurement of recycled oil containing water.
Reverse Osmosis Filter Monitoring
Application
One cement producer uses recycled oil as a kiln fuel. A Coriolis mass flowmeter was used to control the recycled oil flow, however the meter readings were very unstable which made reliable control impossible. The Coriolis meter's problems were related to the separation of the oil and water as the fluid traveled the length of the meter and also the changing composition of the components (oil and water) resulted in unstable densities. In addition, the meter's zero was unstable and it was also difficult to clean the inside of the meter.
Solution
Initially, consideration was given to applying a conventional magnetic flowmeter. However, because the oil and other residuals showed a tendency to build-up in the Coriolis meter, a similar situation was expected to occur in the magmeter and the electrodes would be covered with an insulating coating. With ADMAG CA the non-wetted, capacitively coupled electrodes are immune to the effects of coating. In addition, the shorter lay length, as compared to the Coriolis meter, would better handle the potential layer separation of the oil and water.
The ADMAG CA was tested in series with the Coriolis meter. The test conditions were as follows:
Fluid Conductivity: | 2.94-3.07 mS/cm |
---|---|
Fluid Composition: | 48% oil, 43% water, 9% other |
Flow Range: | 0-5 tons/hr |
Meter Size: | 1" |
Temperature: | 30°C (86 deg F) |
Pressure: | MPa (142 psi) |
Meter damping: | 3 seconds |
The test set-up used is in the figure above. The recorded output of the Coriolis meter shows large output fluctuations. The recorded output of ADMAG CA, however, shows the output is stable and tracks the set-point closely.
Notes
- Be sure to measure the conductivity of the fluid to insure that consistent values are obtained.
- The water content and potential water/oil separation can significantly affect the fluid conductivity. Examine a fluid sample to determine whether a two-layer separation occurs immediately or happens gradually. If separation occurs immediately, measurement even with ADMAG CA may not be possible.
![]() |
![]() |
The suspected cause for the output fluctuation is the variation in the fluid's density | The ADMAG CA output is stable without large output fluctuations |
ADMAG CA
![]() |
ADMAG CA |
- Impervious to coating problems
- Measures ultralow conductivity fluids to 0.01 μS/cm
- Stable output with varying levels of oil and impurities
- Short lay length avoids problems due to fluid separation
업종
Related Products & Solutions
-
CA Series
CA Series는 슬러리(Slurry) 유체와 점착성(Adhesive) 유체와 같이 측정하기 어려운 유체에도 안정된 측정을 제공합니다.
'Total Insight' 컨셉을 기반으로 고객들의 작업용이성과 유지보수성을 향상시킵니다.
-
유량계
Yokogawa는 고 품질, 고 정확도 및 고 신뢰성을 갖춘 광범위한 유량 솔루션을 보유하고 있습니다. 100 년이 넘는 유량계 경험을 바탕으로 당사의 기술은 사실상 모든 유량 어플리케이션을 위한 솔루션을 제공 할 수 있습니다.
-
전자 유량계
Yokogawa의 전자 유량계에 대해 수십 년의 경험을 가지고 있습니다. 당사의 전자 유량계는 대부분의 산업 분야에서 유연한 구성을 제공합니다.