Thursday, September 19, 2013

Watts Radiant SmartTrac - Radiant The Smart Way


SmartTrac, by Watts Radiant, is a non-structural, modular panel system, designed to simplify radiant heating and cooling installations in subfloor, wall and ceiling applications.

Easy to install, SmartTrac is a flecxible solution for any new construction or remodeling project.
  • Deliver quiet, even, comfortable heat
  • Configure for any space
  • Fast and easy installation
  • 80% lighter than thin slab
  • Works with any floor covering
  • Designed for 3/8" PEX/PERT tubing



Learn more about SmartTrac here.

Wednesday, September 11, 2013

Steam Vents - Vent Rite

Arguably the most important, but neglected, component of a steam system, the air vent, comes in many shapes and sizes. Vent Rite valves are divided into four categories:
  1. Radiator vents – Models #1 & #11 
  2. Convector and Riser vents – Models #31 & #33 
  3. Main vents – Models #35, #75 & #77 
  4. Unit Heater vents – Model #57 
Walking up a hill burns more calories than walking on the flat. Add a 10 lb backpack and the rate of calorie consumption increases considerably. The same principle applies to a one pipe steam system. Much like the human body, a steam system is constantly breathing in and out. The expansion and contraction of the steam is the mechanism by which air is constantly expelled and drawn back into the system. Restrict those airways too much and the rate of breathing slows down to the point where the patient starts to burn more energy to perform the same task.

When the system is idle i.e. no call for heat, the system piping and radiators are full of air. Under standard conditions on a call for heat, water will change to steam when the temperature reaches 212°F and that water will expand at the rate 1:1760 i.e. 1 cubic foot of water becomes 1760 cubic feet of steam and travels through the piping as fast as 60 MPH. Unless that air can escape, the steam will begin to slow down and this halt in its forward momentum will be seen as an increase of pressure in the boiler. As the pressure increases, the pressuretrol which is there to protect the system will shut down the burner.

As the system cools, the steam will condense and flow back to the boiler. Meanwhile, the radiators remain cold as the trapped air prevented the steam from travelling to them. Now imagine those same radiators with holes (vents). The fast expanding steam pushes the air forward and out through the openings in the radiators. Obviously, the larger the hole, the faster the air will escape and allow the steam to enter and give up its heat. However, all steam systems are different and none have radiators exactly the same distance from the boiler. This means that the radiators nearest to the boiler may heat faster, satisfying the thermostat and leaving some of the radiators under heated. What to do?

Assuming that the steam boiler, piping and associated controls are in proper working order, the first step is to look at the main vents. In most cases, there will be one large, often neglected, vent located at the end of the main before the piping returns to the boiler. While this vent should be located 12” to 16” back from the elbow and mounted 6” above the main, many systems have the vent mounted on a TEE at the elbow. This location will cause premature failure of the main vent due to the accumulation of dirt and the effects of water hammer. For this reason, it is advisable to repipe the system at this location to accommodate the vent as detailed above. At the very least, elevate the vent using a 6” nipple.

A Vent Rite #35 is an ideal vent for this location. With an operating pressure of 3 psi, the #35 will ensure effective venting of the main thus allowing the steam to travel evenly throughout the distribution piping and on to the radiators.

On a smaller system with moderately sized radiators, a Vent Rite #11, which is a fixed opening radiator vent, is an excellent choice. Where radiators heat unevenly because of distance or mass, it is advisable to use the Vent Rite #1 which incorporates a dial to adjust the rate at which the radiator vents. This will permit balancing of the system assuming that each radiator has a #1 vent to adjust.

In use for over 70 years, the Vent Rite #1 is the original adjustable radiator vent, designed to replace a standard radiator vent. Today’s #1 has a dial with numbers which can be adjusted to increase or decrease the rate at which air is expelled from the radiator. With settings from 1 to 8, the Vent Rite #1 allows you to balance the system, thus allowing the radiators to heat uniformly.

Balancing the system takes some time and patience but is well worth the effort. The following is a suggested procedure for doing just this.

  • Set all #1 vents to highest number - 8 which represents the largest opening.
  • Start the system and observe rate at which radiators heat.
  • The fastest heating radiators should be dialed back first e.g. to 7.
  • Allow system to cool and repeat. 

The ultimate objective is to have all of the radiators heat uniformly with the vents set to the highest number for each respective radiator. It is conceivable that one radiator might be set to 3 while another is at 8. But usually it will be the farthest radiators that have the highest settings. Keep in mind that the largest radiators may also need higher settings to allow all of the air to escape.



Learn more on our website.

Tuesday, September 3, 2013

Watts Radiant: ProMelt

With winter comes beautiful snowfalls that bring stunning scenery and fun activities. Unfortunately, a snowfall can also bring slippery walk paths, snow covered driveways, and damaged surfaces caused by snow-shoveling. ProMelt™ electric snow melting provides you with the perfect solution to these problems. Easily install ProMelt under a variety surfaces and enjoy the beauty of winter, without the hassles.

What Is Electric Snow Melting? Electric snow melting involves installing a heating element beneath outside surfaces. When activated, the surface is heated and the snow or ice is melted. It's that simple.

ProMelt Mats 
Simplicity sets ProMelt Mats apart from other snow melting products. We've spaced the wires for you, so installation is faster and worry-free.

Installation 

  • Mats are easy to customize to fit surfaces of any shape and size
  • Easily cut mats to move around corners and turns

Technical

  • Single point connection
  • Comes in 120V, 208V, 244V, and 277V

Wire Construction

  • Polyurethane outer jacket
  • Foil Shield
  • Braided copper ground plane
  • High-temperature ETFE element covering
  • Low-oxygen copper alloy

ProMelt Cable
Versatility makes ProMelt Cable the fantastic choice for your snow melting project. Any size, any shape.

Installation

  • Easy to install and can fit surfaces of all shapes and sizes
  • Space the cable depending on you warming needs

Technical

  • Single point connection
  • Comes in 120V, 208V, 244V, and 277V

Wire Construction

  • Polyurethane outer jacket
  • Foil Shield
  • Braided copper ground plane
  • High-temperature ETFE element covering
  • Low-oxygen copper alloy

Thursday, August 22, 2013

Taco 6+1 Promo


Taco 6+1 Promotion
8/15/13 - 10/30/13

From August 15 - October 30, 2013, receive a FREE Taco 4900 Air Separator or a Taco Low Water Cutoff with any combination of (6) Taco 3-Speed circulators and/or Taco Zone Sentry Zone Valves. There are no forms to fill out. And there's no waiting to receive your free product. You get it right on the spot! Just visit your local wholesaler to get the deal. It's that simple!




The Taco 0015 3-Speed circulator are specifically designed to provide dial-in precision to meet the exacting requirements of any hydronic heating system. Learn more here.





The Taco Zone Sentry leads the industry in energy efficiency, flow capacity, shutoff pressure rating, diagnostic capability and the number of valves (12) that can be used on a standard 40VA transformer. Learn more here.





Learn more about the Taco 6+1 Promo here.

Wednesday, August 14, 2013

High Performance Hydro Air

From this month's Oil & Energy magazine

Hydro-air systems have been around for a long time…even hydro steam. I remember the first time I saw a radiator mounted inside of a plenum and I thought “what the heck is this?” Back in the day when fresh air was deemed a necessity (unlike today in our tight energy efficient homes - ha!), duct work would draw air from the outside and heat it with these duct mounted radiators before delivering it to the living space. Not very efficient but fuel was a lot less costly back then and the owners of these homes weren’t shy of a few pennies. Times have changed however. Today when we say hydro-air we think of air handlers with internal coils for heating and/or cooling.

For the most part, hydro-air is a product of the electric conversion market when electricity prices started to rise. Replacing that old electric furnace and installing a boiler with an air handler allowed versatility when it came to zoning and potable hot water. Indeed, the ability to run additional emitters off the boiler often led to systems with multiple heat delivery schemes such as warm air, convection and radiant. Entire sections of the home could be heated by a different medium e.g. warm air upstairs; radiant downstairs; baseboard in the basement. And all of this with air conditioning and endless hot water as well. The more recent decades have seen an increased demand for air conditioning and, for homes heated with water, hydro-air is a very convenient solution.

One of the major differences between air handlers and direct fired furnaces is the quality of the air delivered to the home. The heat exchangers in fuel fired furnaces are subjected to extremely high surface temperatures which tend to dry out the delivered air. Whereas, with an air handler, the heat exchanger never sees temperatures above 180°F resulting in a much more comfortable living environment.

The implementation of ECM technology in HVAC motors has had a significant impact on the efficiency of the equipment. We first began to see ECM motors in air handlers and condensing furnaces which resulted not just in increased motor efficiency but also enhanced the performance of the blower by compensating somewhat for inadequate duct design. ECM motors make a lot of sense for air handling equipment because of the larger size motors needed to move large volumes of air.

And more recently we have seen the introduction of ECM motors into the wet side of the equation. All of the leading pump manufacturers boast ECM circulators - which begs the question of how best to use this technology in a hydro air application.

Circulator motors are notoriously small (1/25 HP is typical) so electrical savings are minimal. On the other hand, blower motors will be anywhere from 1/3HP to ¾ HP so the electrical savings are significant when switching to an ECM.

In the case of a circulator, the true benefit of an ECM motor is the ability to affordably control the water flow and thus control the BTU supply to the air handler. But only if that circulator has the ability to track temperature modulation versus pressure drop. In other words – Delta-T versus Delta P. With a conventional hydro-air system we have a fixed BTU output from the boiler and a single speed circulator. The air delivery is most often controlled by either an aquastat which brings on the blower when hot water is sensed in the coil or a timer delay function. This arrangement becomes even more complex if outdoor reset is factored into the equation; with modulating supply temperatures and fixed blower speeds, the temperature of delivered air at the registers can vary significantly. The efficiency of the condensing boiler may also be impacted as the boiler control is often programmed to maintain a minimum of 130°F.

Now, imagine if we could program a fixed air delivery temperature at the registers…say 120°F? But this can be done, you say, by controlling the blower with pulse width modulation. How about a less costly but more efficient method? By locating a sensor in the output airstream of the air handler and programming the pump to maintain a desired delivery temperature, the pump will speed up or slow down as it sees fit. If the sensor detects an increase in output air temp, the pump will slow down and deliver less flow and fewer BTU’s to the coil. When the sensor detects a decrease in temperature due to lower return air temperature, the pump will speed up and deliver more flow and more BTU’s to the coil. The result will be a more even temperature at the registers. In effect, the pump is responding to real time conditions which can be affected by events such as doors opening and the introduction of heat from secondary sources such as stoves etc.

One pump that has this capability is the Bumblebee or HEC2 from Taco. This ECM circulator can be programmed to maintain either ΔT or a fixed set point. This pump, which has its own sensor inputs, is factory programmed to maintain a 20°F delta between the supply and the return. It takes just a few seconds to reprogram the circulator for a fixed supply temperature and by placing the supply sensor in the air stream, the pump will speed up or slow down based on conditions. No more fluctuating air temperatures at the registers.

Air handlers come in all shapes and sizes. But the heart of the appliance is the motor. While still available, the PSC motor is fast giving way to the ECM. This electrically commutated motor offers significant advantages over the split-phase motor in terms of efficiency and performance. The same logic applies to the wet side of the equation and when properly applied, both the cost of operation and overall comfort can be greatly enhanced.

Learn more about hydro air here.

Wednesday, August 7, 2013

2013 Training Schedule

Our new training schedule for the remainder of 2013 is now available! Join our trainers, Bruce Marshall and Kevin Shea, for a new semester of classes starting in September.

Emerson Swan Training's: Held at 300 Pond St. Randolph, MA 02368


HTP Training's
: Held at 120 Braley Rd. East Freetown, MA 02717


SPECIAL OFFER: Register for any Emerson Swan Training from now until 8/23/13 and receive 25% off! This is a limited time offer so you must act soon! The discounted price will be reflected at checkout. REGISTER NOW!

Friday, August 2, 2013

Exceptional Functionality With A Wide Reach: The Dornbracht PIVOT Faucet


This year, at LivingKitchen in Cologne, Dornbracht showcased the first faucet for the entire kitchen island: PIVOT. The single-lever mixer has a hot and cold water valve and is available in polished chrome and platinum matte finishes.

Exceptional functionality with a wide reach: PIVOT. 
The extreme projection of PIVOT's 21.6 inch pivoting range allows for a 360° radius and maximum flexibility and convenience. The practical twist grip on the spout ensures simple, ergonomic handling. Designed with the entire kitchen island in mind, PIVOT makes kitchen tasks effortless.

PIVOT's delicate, reduced form complements the classic design of the TARA ULTRA series. The notchless lever rounds off the classic design and establishes PIVOT as an alternative to hose and pull-out sprays.

As stylish as they are functional, Dornbracht's miscellaneous items for the kitchen make working easier. Included are soap dispensers and AIR SWITCH for operating the garbage disposal. The minimalist design is consistent with PIVOT and just like the single-lever mixer, they are ready for delivery in polished chrome and platinum matte.


www.dornbracht.com/en-US/Products/Kitchen/Pivot.aspx