Setting the Studs and Nuts Before Mounting a Waterman Fabricated Slide Gate


This video covers how to set up the studs and nuts before mounting a Waterman fabricated sliding gate valve, and also how to adjust the cross rail to ensure there are no gaps between the seat and the slide plate.

INSTRUCTIONS

The first thing you want to do is refer to your submittal drawing to make sure that the studs are exposed to proper length.  Align each nut on the corners, so that your gate is perfectly plumb.  Go from side to side, and corner to corner, aligning the nuts with the straight edge. 

After you have the gate mounted, you'll work with a cross rail seal.  Start with the two middle nuts, and alternate one and another, working your way out to the edge of the gate as shown of the Waterman installation manual for fabricated slide gates. Using a 0.004 feeler gauge, check the cross rail seal between the slide and the seal to ensure that it does not pass through. If you do have a place where it crosses through, you need to loosen the front nut and tighten up the back nut, bringing the frame of the gate closer to the slide and decreasing the leakage path.  

Go back through the gate installation and make sure all your bolts are very tight, and that you don't have any leakage pass across the top seal. It's the most critical part of your installation - making sure that the cross seal doesn't have any leaks.  

ABOUT WATERMAN

Waterman takes pride in their industry-leading technical capabilities and experience. Their engineering knowledge allows them to tackle any project, and they welcome all opportunities to create custom design products for any water control application.

For more information about water control products for water treatment, wastewater, high-volume agricultural and rural surface water delivery, hydro-power, and flood control management, contact Automatic Controls of Virginia. They can be reached by calling (804) 752-1000 of by visiting their website at https://acva.com.

Level Measurement Using Guided Wave Radar

Guided Wave Radar Level Transmitter
Guided wave radar transmitter
mounted in bypass chamber with
magnetic level gauge.
(Questtec Solutions)
Guided wave radar transmitters are widely used across different industries. These devices with their simple installation and trouble-free operations help industrial companies save time and money. They are ideal for a large number of process applications ranging from simple to complex.

How Do Guided Wave Radar Transmitters Work?


Guided wave radar transmitters rely on microwave pulses. Since microwaves are not affected by dust, pressure, temperature variations, and viscosity, this type of transmitter produces highly accurate results.

A low-energy microwave pulse is sent down a probe, and a part of it is reflected back when the pulse hits the process media. The liquid level is directly proportional to the time-domain reflectometry. The time when the pulse is launched and received back is measured to determine the distance from the surface of the media.

Types of Guided Wave Radar Level Transmitters


Guided wave radar level transmitters are available in different probe configurations. Selecting the right probe is important for successful implementation of the device. While manufacturers offer a range of guided wave radars, most are derived from the three basic probe configurations: single element, twin element, and coaxial.

  • Single element probe — The single element probe is the most widely used and least efficient device. The device is popular since it is more resistant to the coating of the liquid.
  • Twin element probe — The twin element probe is a good, general purpose probe that is generally used in long-range applications. They are ideal in situations where flexible probes are important for successful reading.
  • Coaxial probe — The coaxial probe configuration is the most efficient guided wave radar level transmitters. The probes are used in more challenging low-dielectric applications.

Benefits of Guided Wave Radar Level Transmitters


Guided Wave Radar Level transmitters provide a range of benefits in different applications. The concentration of the measuring signal is strong and clean. This is due to the narrow path of the signal propagation that reduces the chances of impact by stray signals due to obstacles or construction elements inside the tank.

Another benefit of guided wave radar level transmitters is that they are easy to install. No mounting holes are required to install the device. This results in cost savings for the organization. The waveguide can be formed to follow the tank’s contours or mounted at an angle.

The device is ideal in situations where an interface measurement is required. The measuring signals can penetrate the medium deeply, resulting in more accurate results. The waveguide technology is suitable for applications where the medium is subjected to heavy vapors, foam, and dust.

Guided Wave instruments can detect changes in dielectric consents on the boundary of a property. The device can be configured to detect level at both the top and the bottom of a layer of emulsion.

Industrial Application of Guided Wave Radar


Guided wave radar level transmitters are increasingly being used in process industries. The sensors are used in situations that previously employed ultrasonic, hydrostatics, and capacitance. The accuracy specification of the basic model range is up to ±5mm, while the accuracy of the advanced models is up to ±2mm.

The device is generally used in industries to take level readings. The readings are used for local indication and visualization in control systems.

Moreover, guided wave radar level transmitters are also used for managing liquid inventory, determining safety limits, dry run protection, and leak detection. Other applications of guided wave radar level transmitters include communicating low limits to suppliers, automated ordering systems, and streamlining the logistics process.

Guided radar level measurement is also suitable for bulk solids. The surface type is not restricted to liquids since the reflected waves are guided easily through any medium. Foam formation and turbulent liquid surfaces and different angled surfaces (as is the case with bulk solids) don’t influence the accuracy of the reading.

Selection of Guided Wave Radar Level Transmitters


Selection of guided wave radar level transmitters should be based on the requirements of the task. Generally, the rigid single element probe configuration is ideal for angled installations for flowing liquids. The dual flexible wire probe is suitable for most other common applications.

A coaxial probe configuration is recommended for liquids that are cleaner with low dielectric constant and with turbulence on the product’s surface. This type of guided wave radar device is also recommended for installations where the probe is near the tank wall or other obstacles.

Make sure that the device can withstand the range of temperature within the tank. Most GWR devices are rated up to 850 deg F or 450 deg C. You should select a device with added signal strength since this will result in increased reliability and accuracy of the devices.

Guided Wave Radar Level Transmitter
Guided wave radar transmitter.
(Questtec Solutions)
Guided wave radar level transmitter with dynamic vapor compensation is recommended where a high level of accuracy is required under a high-pressure environment. The measurement taken from the device can compensate for changes in vapor dielectric, which results in improved accuracy.

Other factors that should be considered include mounting and proximity. Single probe configuration can be installed almost anywhere. But the single probe configuration can only to apply to specific situations.


Guided Wave radar level transmitters can also be used with an agitator. However, certain things must be considered prior to use the device. The probe must be prevented from contacting the agitator blades. Make sure that you confirm the ability of the probe to withstand the force inside the medium. This is important since turbulent on the surface may decrease the accuracy of the measurement. You can install the device in a bypass chamber or stilling well for an agitated tank. Make sure you speak with an applications expert before specifying or installing a guided wave transmitter. With their consultation, you'll save time as well as improve efficiency and safety.

For more information, contact Automatic Controls of Virginia. Call (804) 752-1000 or visit https://acva.com.

Emerson Bettis CBB Pneumatic Scotch Yoke Actuators: Key Component sand Features


Bettis CBB-Series actuator represents the latest generation in pneumatic scotch yoke actuators from Emerson. The CBB draws from the best features of earlier versions – CB and CBA. Incorporating cutting edge features provides the CBB with a proven, rugged design that is dependable and reliable in the field. Because it has the same envelope dimensions and mounting interfaces as previous CB versions, the CBB allows for mounting interchangeability.

Compact, lightweight and ideally suited for automating ball, butterfly and non- lubricated plug valves, or any quarter-turn (90 degree) rotating mechanism, the CBB Series is also economical and low maintenance. Available in double-acting and spring- return models and are independently certified to IEC 60529 IP66 and IP67M for water ingress protection.

For more information about Bettis actuators, contact Automatic Controls of Virginia by calling (804) 752-1000 or by visiting https://acva.com.

Automating Large Municipal and Industrial Valves


When you need to automate large ball, butterfly, gate, or globe valves consider Automatic Controls of Virginia.

ACVA has decades of experience, the know-how, the staff, and the facilities to handle the most challenging valve actuation applications.

With scores of successful installations at municipal water facilities, chemical companies, pulp & paper mills and government R&D facilities, ACVA has established a solid reputation for outstanding quality and service.

For more information, contact Automatic Controls of Virginia at https://acva.com or call 804-752-1000.

Magne-Trac Magnetic Level Indicators by Questtec

Magne-Trac Magnetic Level Indicator
Click for larger view.
Questtec Solutions is a leading supplier of magnetic level indicators, as well as traditional sight glasses and conductivity type remote level indicators for water indication in steam service. This wide range of products for level indication allows Questtec Solutions the option of providing the best technology for nearly any level application. The Magne-Trac level indicator is easy to install, low maintenance, and easy to view. Accessories include point level switches and transmitters to provide integration into plant control systems.

Magne-Trac Magnetic Level IndicatorThe Questtec Solutions Magne-Trac utilizes a non-magnetic pipe chamber mounted directly to a vessel. The process connections from the chamber to the vessel act as an inlet and outlet that allow the liquid level in the pipe chamber to match the level in the process vessel. Inside the chamber, a custom designed float rises and falls with the level of the liquid in the chamber. A 360 deg. magnet array within the float projects a magnetic field through the pipe chamber to an externally mounted indicator to provide a visual read out of the liquid level within the vessel.

For more information about Questtec Solutions products, contact Automatic Controls of Virginia by calling (804) 752-1000 or by visiting their website at https://acva.com.




XOMOX XP3 and XP 4D: The First Soft Seated Plug Valve Meeting the Most Demanding Emissions Standards

XOMOX XP3 and XP 4D
ISO 15848-1 is an International standard for fugitive emissions issued by the ISO Organization. It contains both dynamic life cycles and thermal cycles and is considered one of the most demanding fugitive emission standards for soft seated valves. This standard contains different levels of acceptance based on the number of thermal and mechanical cycles, temperature, and number of adjustments. The objective of ISO 15848-1 is to enable classification of performance in different designs and constructions of valves to reduce fugitive emissions.

The XOMOX XP3


The XOMOX XP3 Sleeved Plug Valves. with patent pending live loaded cartridge seal, are the first valves to pass all four thermal cycles without any packing adjustments, meeting the ISO 15848-1 standard at the BH BH CO3 200C SSA0.

The XP3 still contains the same maintenance-free and cavity-less design benefits of the standard XOMOX® sleeve plug valve, namely no costly lubrication required and no accumulation or contamination of process media.

The XOMOX® XP 4D


The XOMOX® XP 4D Sleeved Plug Valve contains the same live loaded stem cartridge as XP3, while also adding a set of contingency bolting. This additional set of packing allows for a manual override of the seal to atmosphere manual adjustable 4D stem seal of the cover. If there is any emergency failure, this seal can be activated and reduce the need (in the very unlikely case) of any costly unscheduled shutdowns.

XP 4D Features:
  • Primary Seal to Atmosphere - Sleeve ensures inline sealing. Manual adjustments are possible.
  • Tertiary Seal to Atmosphere Additional 4D Manual - Live loaded cartridge provides improve stem sealing.
  • Additional 4D Manual - Manual 4D stem packing for adjustment in case of emergency or excessive assurance.