Flow Controller
Linearization and Calibration
Abstract
Experiments run in fall 2007 have indicated that the float valve can hold back head of at least 8m with less than 0.5cm 5 cm of change occurring in the flow controller water level in the first 2m of pressure. In field tests in Honduras the flow controllers have not been dosing as expected, which current lab work is aiming to correct2 m of pressure. Data gathered in the laboratory on outflow rate has followed a linear model in the laminar flow range, but attempts to model the turbulent transition range have produced varying results. It is considered a high priority to develop a reliable model for dosing at higher flow rates, which will be used in the near future at the larger plant in Marcala, currently under constructionplants.
Keywords: Flow Controller, laminar flow, height of outflow, influent pressure, float valve
Introduction and Objectives
Constructing reliable and cost-effective solutions for water treatment in Honduras is challenging due to the lack of infrastructure. Electricity is unreliable, which has rendered modern computer-automated water treatment plants unusable, moreover the mountainous terrain sometimes makes access to materials needed for construction or repairs difficult. While it does isolate villages and their utilities, the rough topography has created an opportunity for the use of gravity-powered treatment plants. There has been success with the implementation of AguaClara researched and designed flocculators that are mixed by gravitationally-derived kinetic energy, but chemical dosing in these plants without the use of electric pumps is still inconsistent.
...
Plastic bottle flow controllers have been used in Honduras for alum and chlorine dosing for several months now, and a few problems have arisen. They have been clogging and the head loss to alum dosing relationship does not appear linear. Further testing this during the fall of 2007 has been done with more precise equipment and an extra connector was removed from the flow controller to make it resemble the set up used in Honduras. The outflow to head loss relationship once again appears relatively linear in the laminar range, and it is possible that a different type of experiment should be designed to address the non-linear data from Honduras.
Other aspects of flow controller performance have also been tested this fall, including maximum inlet head allowable, water level variation in the flow controller, and corrosion resistance of the manufactured float valves. There have also been updates made to the materials used in the flow controller design.
Research Methods
Float valve corrosion test methods
- A simple test where float valve parts were left in alum and chlorine for extended periods of time to determine corrosion effects
Flow controller body design and selection
- Includes notes on the brainstorming that went into FCM parts selection and design
Flow versus head loss data collection in the turbulent range methods
- Experiments were conducted to establish a model for the relationship between FCM outflow and headloss associated with outflow tube position
Determining the maximum inlet shut-off pressure
- The maximum inlet pressure that the float valve can shut off was investigated in order to determine how much head there can be between the chemical stock tanks and the flow controllers
Results
Float valve corrosion test results
The corrosion test was conducted for five weeks. There was no visible corrosion to the float valve screw, pad or pin in the alum solution. After a week, the float valve placed in the chlorine solution had severe visible corrosion of the screw, but no visible corrosion of the float valve pin or pad in the chlorine solution. Although the chlorine and alum solutions were replaced every week to maintain reactivity, we were uncertain of how reliable this data would be. The flow controllers in place in Honduras are continually supplied with fresh chemicals and they are constantly monitored, so we are deferring data collection on float valve corrosion to the plant operators and engineers in Honduras.
Conclusions and Areas for Further Research
Through this semester the Flow Control Module testing apparatus has evolved to allow more precise testing to take place. The next upgrade to our testing equipment is an automated position control, which will be capable of changing the head loss in the system automatically. This will increase the precision and quantity of data collected in the future.
...