Acceptance Volume of Expansion and Compression Tanks – Part 3

Norm HallMonday Morning Minutes, Tanks, Hydronic System Design, Expansion and Compression Tanks, Expansion/Compression Tanks

In part 2 of the R L Deppmann Monday Morning Minutes we determined the initial and final temperatures of the hydronic system in order to calculate the expansion tank selection. When we heat the water in a hydronic system, the water expands. This expansion is expressed as Ew in the formula: Ew – Ep = The expansion of the water minus the expansion of the pipe.

Expansion and Compression Tanks Formulas – Part 2

Norm HallExpansion/Compression Tanks, Monday Morning Minutes, Tanks, Hydronic System Design, Expansion and Compression Tanks

Last week the Monday Morning Minute introduced the expansion and compression tank formula. We described the numerator as the tank acceptance. The formula is (Ef – Ep) X Vs where Vs is the system volume and (Ef – Ep) is the expansion of the fluid minus the expansion of pipe. Let’s review some of the required data.

Expansion and Compression Tanks Series – Part 1

Josh LooperMonday Morning Minutes, Tanks, Hydronic System Design, History, Expansion and Compression Tanks, Expansion/Compression Tanks

We could entitle the next dozen weeks as: TANKS-A-LOT. (Sorry). Over the next few months, the Monday Morning Minutes blog will examine expansion and compression tank sizing. We will also tackle some more advanced issues in the selection and troubleshooting of closed system expansion tanks. Tanks are often selected using software programs such as the Bell and Gossett ESP-Plus™ selection program.

Griswold Chemical Pot Feeders

Norm HallMonday Morning Minutes, Hydronic System Design, Air and Dirt Control, Chemical Feed, Chemical Feed

“An old friend with several new twists” Chemical feeders or “Pot-feeders” have adorned mechanical equipment rooms for decades. R.L. Deppmann appreciates the specification and purchase of the Griswold 2 and 5 gallon feeders. Today, I’ll present a couple of the benefits both owners and installing contractors may enjoy when using the Griswold Feeders.

Plumbing Topic: Domestic Water Recirculation Systems Part 8

Norm HallMonday Morning Minutes, Plumbing System Design, Domestic Water Recirculation, Mixing Valves

“Dual Temperature Systems and Mixing Valves” “Performance Conditions of a Mixing Valve” Last week the R L Deppmann Monday Morning Minute article examined the addition of a mixing valve. Today we will examine the re-circulation system with dual temperature requirements and answer questions about the term “Performance Conditions” mentioned in the Lawler literature.

Plumbing Topic: Domestic Water Recirculation Systems Part 7

Norm HallPlumbing System Design, Domestic Water Recirculation, Mixing Valves, Monday Morning Minutes

“Addition of a Mixing Valve” During the last 6 weeks, the R. L. Deppmann Monday Morning Minutes concentrated on re-circulation systems where the supply temperature to the system was the same as the outlet temperature of the water heater. Today we will examine the addition of a Lawler master mixing valve in the system.

Plumbing Topic: Domestic Water Recirculation Systems Part 6

Norm HallMonday Morning Minutes, Plumbing System Design, Domestic Water Recirculation, Balancing, High Rise Systems

High Rise Considerations The last article, part 5, showed an example of a high rise system with pressure reducing valves (PRVS) and the importance of the correct setting of the balance valves. The example we used showed balance valves with as much as 18 PSIG across them at a low flow. When a design starts to incorporate

Plumbing Topic: Domestic Water Recirculation Systems Part 4

Norm HallMonday Morning Minutes, Pumps, Plumbing System Design, Domestic Water Recirculation, Balancing

The last three articles outlined pump selection in domestic water recirculation systems. In general, these systems have low flow and low head pumps. What happens in a high rise with pressure reducing valves (PRV) in the hot water supply? The pressure reducing valve introduces a fixed pressure drop which must be added to the calculations.