Showing posts with label Process technology. Show all posts
Showing posts with label Process technology. Show all posts

Monday, April 29, 2019

Watlow Heaters Heating Requirements

General Method for Determining Watlow Heater Requirements


Electric Heaters, Heating Elements and Controls
Contact Flow Factor HERE!


Most electrical heating problems can be readily solved by determining the heat required to do the job. To do this, the heat requirement must be converted to electrical Power and the most practical heater can then be selected for the job. Whether the problem is heating solids, liquids or gases, the method, or approach, to determining the Power requirement is the same.
All heating problems involve the following steps to their solution:

Step 1: Define the Heating Problem

  • Gather application information
  • Sketch problem for visual reference

Step 2: Calculate Power Requirements

  • System start-up power requirement
  • System maintenance power requirements
  • Operating heat losses

Step 3: Review System Application Factors

  • Operating temperature
  • Operating efficiency
  • Safe/permissible watt densities
  • Mechanical considerations
  • Operating environment factors
  • Heater life requirements
  • Electrical lead considerations

Step 4: Select Heater

  • Type
  • Size
  • Quantity

Step 5: Select Control System

  • Type of temperature sensor and location
  • Type of temperature controller
  • Type of power controller

Defining the Problem

Your heating problem must be clearly stated, paying careful attention to defining operating parameters. Take these into consideration:

  • Minimum start and finish temperatures expected
  • Maximum flow rate of material(s) being heated
  • Required time for start-up heating and process cycle times
  • Weights and dimensions of both heated material(s) and containing vessel(s)
  • Effects of insulation and its thermal properties
  • Electrical requirements — voltage
  • Temperature sensing methods and location(s)
  • Temperature controller type
  • Power controller type
  • Electrical limitations
  • And since the thermal system you're creating may not take into account all the possible or unforeseen heating requirements, don't forget a safety factor. A safety factor increases heater capacity beyond calculated requirements.

Calculations for Required Heat Energy

When performing your own calculations, refer to Equations for values of materials covered by these equations.
The total heat energy (kWh or Btu) required to satisfy the system needs will be either of the two values shown below depending on which calculated result is larger.
  • Heat required for start-up
  • Heat required to maintain the desired temperature
The power required (kW) will be the heat energy value (kWh) divided by the required start-up or working cycle time. 
The kW rating of the heater will be the greater of these values plus a safety factor.
The calculation of start-up and operating requirements consist of several distinct parts that are best handled separately. However, a short method can also be used for a quick estimate of heat energy required.

Safety Factor Calculation

You should always include a safety factor of varying size to allow for unknown or unexpected conditions. The size of the safety factor is dependent on the accuracy of the wattage calculation. Heaters should always be sized for a higher value than the calculated figure. A factor of 10% is adequate for small systems that are closely calculated; 20% additional wattage is more common. Safety factors of 20% and 35% are not uncommon, and should be considered for large systems, such as those containing doors that open or are large radiant heat applications. You'll also want to predict how long your system will operate without failure, so examine the amount of heater life you'll be needing. And because electricity costs money, take efficiency factors into account so your system will cost as little as possible to operate.
With these considerations in mind, carefully review them all to be sure you do, in fact, have definitive information to decide on a particular solution to your heating problem. Some of this supporting information may not be readily available or apparent to you. You may find it necessary to consult the reference tables and charts in this reference data section, or reference a book that deals with the particular parameter you need to define. At the minimum, the thermal properties of both the material(s) being processed/heated and their containing vessel(s) will be required.
Figuring a safety factor requires some intuition on your part. The list of possible influences can be great. From changing ambient operating temperatures, caused by seasonal changes, to a change in material or material temperature being processed, you must carefully examine all the influences.
Generally speaking, the smaller the system with fewer variables and outside influences---the smaller the safety factor. Conversely, the larger the system and the greater the variables and outside influences — the greater the safety factor.
Here are some general guidelines:
  • 10% safety factor for small systems with closely calculated power requirements
  • 20% safety factor is average20% to 35% for large systems
The safety factor should be higher for systems that have production operations that contain equipment cycles subjecting them to excessive heat dissipations, e.g.: opening doors on furnaces, introducing new batches of material that can be of varying temperatures, large radiant applications and the like.
Flow Factor
216-765-4231

Saturday, February 20, 2010

Flow Factor and Industrial Flow Products


Flow Factor sells products to control media in flow situations, tanks and pipes.

These products include solenoid valves, pressure switches, temperature switches, level control and switches, gauge, jet pumps and flow switches and monitoring.

Some of the products sold are ASCO, Parker, Ametek, Erdco, Penberthy, Process Technology, US Gauge, King and Robertshaw.

Rating the valve capacity in terms which apply to all operating conditions is accomplished by determining the "Flow Factor" (Cv) of the valve.
The Cv value is the number of U.S. gallons of water at 16°C (60°F) per minute that, when flowing through the valve, causes a pressure drop of 1 PSI.
There are five main parameters to consider when selecting a valve: Cv, media compatibility, pressure, temperature, and process fitting.

The flow factor or Cv can be very important in valve selection. The Cv can be used to compare valves to insure similar flow capacities.

Our Jet pumps or Eductors can be used to mix, heat, and pump medias without electrical power.
Site flows are used to give a visual indication of process flow.
Gauges are used to measure and give visual indication of temperatures, flows, and pressures.
Level control is used to monitor and measure levels in tanks and vessals.


Ametek-U.S. Gauge - U.S. Gauge is one of the world's leading suppliers of high quality, competitively priced pressure and temperature measurement products. Founded in 1904, USG's product offering includes bourdon tube and diaphragm capsule pressure gauges ranging in size from 1-1/2 inches to 6 inches; with brass, stainless steel, alloy steel or Monel internals.

ERDCO - ERDCO® offers a complete line of flowmeters, sight flow indicators, flow transmitters and flow indicating switches. We employ elegantly simple measuring technologies with proven reliability in utility fluid applications.

King Instruments - King Flowmeters provide exceptional performance in a wide range of industrial, commercial and specialty applications. King offers more styles, sizes, features and options to satisfy all your rotameter requirements.

ASCO General Controls - Solenoid Gas Valves, including Pilot Gas Shutoff Valves and Main Gas Shutoff Valves; Solenoid Oil Shutoff Valves; Hydramotor Oil Valves and Hydramotor Gas Valves.

Penberthy/Tyco Flow control - EDUCTORS / EJECTORS / JET PUMPS, LIQUID LEVEL GAGES & GAGECOCKS, MAGNETIC LIQUID LEVEL GAGES, SIGHT FLOW INDICATORS & SIGHT WINDOWS, ULTRASONIC LEVEL INSTRUMENTATION, BOILER TRIM / CONDUCTIVITY PROBES AND HIGH PRESSURE GLASS GAGES

Barksdale - Barksdale offers both mechanical and electronic pressure, temperature and level instrumentation solutions for all industrial applications.

Process Technology - Manufactured in an ISO 5 (class 100) cleanroom, these products include: UPDI water heaters, inline fluoropolymer and quartz chemical heaters, a large selection of fluoropolymer chemical bath systems, solvent heaters and nitrogen heaters. Semi S2/S3 and CE compliant; ETL/UL certified.

Robertshaw - Robertshaw offers RF capacitance level control technology for virtually any substance in any type of vessel. Solid state, digital designs offer on/off and continuous level measurement in all types of vessels. Using the power generated from the process, Robertshaw self-actuated regulators are simple, complete control units built to the highest quality specifications to assure satisfactory service for many years.

Please visit us at www.flowfactor.com