For the preceding example, if the expansion tank has a factory precharge of 40 psig and it is not increased to the line pressure of 80 psig, then the required total capacity of the expansion tank increases from 5.4 gallons to 9.4 gallons.

Size expansion tankcalculator

The specific volume of saturated water at various temperatures can be found in tables of thermodynamic properties, or there is a handy table in the ASPE Data Book Volume 2, Table 6-5 Thermal Properties of Water. Here is a good number to remember. Water heated from 40-F to 140-F will expand 1.7%.  For example, let’s assume we have a 120-gallon water heater and the water is heated from 40-F to 140-F.

How to calculateexpansion tank sizefor chilled water system

The sizing method described above is for thermal expansion tanks installed in a hot water system. If you are sizing tanks for a booster pump system, the procedure is different.

Your plumber will need to apply for a plumbing application to connect to our sewerage assets when installing a food and oil interceptor. Apply here.

Expansion tanksizing formula

If the precharge pressure does not equal the line pressure, equation (2) cannot be used. The appropriate equation for a precharge pressure that does not equal the line pressure is equation 3 below.

To design a thermal expansion tank for a maximum allowable pressure less than 150 psi, a precharge air pressure different from 40 psi, and a temperature differential greater than 40-F, we can’t consult the manufacturer’s tables. Also, on large systems the storage tank sizes are often larger than the values given in the tables. So what do we do? We must calculate the proper expansion tank size using engineering equations. Here is a simplified method for sizing expansion tanks. A more detailed method is presented in the ASPE Design Handbook, Volume 4.

Commercial trade waste contains food, fat, oil and grease which can solidify in sewers. If not managed appropriately, this can cause sewer blockages which may lead to sewer spills within your property or downstream in the sewer network.

Remember, if you fail to pump out your grease trap at the required frequency, you will be subject to our non-compliance process.

After you receive your trade waste consent, check with your council on the proposed location for a food and oil interceptors prior to arranging its installation. There is an accredited food and oil interceptor installers list, along with standard drawings and mandatory installation directions for plumbers to adhere to for trade waste pre-treatment devices.

Whatsize expansion tankfor 50 gallon

Size expansion tankfor water heater

Referring to sizing tables in an expansion tank manufacturer’s catalog is the easiest method, although not the best method, for sizing thermal expansion tanks. Sizing tables provided by the manufacturers, give the tank model number and size based on the water heater’s volume and the system supply pressure. These tables, however, are based on three important assumptions that designers need to be aware of.

Commercial (and sometimes industrial) customers will normally need a food and oil interceptor (FOI) installed to pre-treat this waste before it enters the sewer system. A food and oil interceptor is a tank or pit that intercepts food, fat, oil and grease before the waste enters the sewer. Sometimes they're called a grease trap.

First, for most manufacturers, the tables are based on a maximum allowable line pressure of 150 psi. This is the maximum allowable working pressure of most water heaters and thermal expansion tanks. It is also the setting of the water heater relief valve. In other words, the thermal expansion tank, if selected by the tables, could accommodate the thermal expansion up to a system pressure of 150 psi, which is the relieving point for the water heater relief valve. Remember that the purpose of the thermal expansion tank is to avoid the relief valve from relieving. Sizing the thermal expansion tank for a maximum allowable pressure of 135 psi, which is 10% below the relief valve set point, is a better alternative.

Given a calculated total tank capacity of 5.44 gallons and an acceptance capacity of 2 gallons, consult the manufacturer’s data  and select a tank that meets your specific application.

How tosize expansion tankfor chilled water system

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If the expansion tank has a 150 psi allowable working pressure, I use 149.7 psia (135 + 14.7 = 149.7) for P, which is 10% below the set point of the relief valve. Using our example above, let’s assume that the actual line pressure and precharge pressure is 80 psi.

Expansion tanksizing Chart

Expansion tanksizing rule of thumb

Regular pump-outs of food and oil interceptors are required as the fat, oil and settled food particles and solids accumulate over time. It is your responsibility to ensure that the food and oil interceptor is pumped out at the intervals stated in your commercial trade waste consent. Typically, we require them to be pumped out every four months.

Some manufacturer's now also have sizing calculators based on these engineering equations on their websites.  Click here for an example.

(Note that the pressures are absolute pressures (psia). Add 14.7 to gauge pressure to convert to absolute pressure. Also, note that this equation assumes that the air precharge pressure is equal to the line pressure. This equation should not be used if the precharge pressure does not equal the line pressure.)

Third, most manufacturers’ sizing tables are based on a 40-F temperature rise of the stored water. Think about this for a moment. The water heater is typically sized based on a 100-F temperature differential. For instance, often we assume cold water enters the water heater at 40-F and is heated and stored at 140-F. If we design the water heater to raise the water temperature 100-F, a conservative approach is to size the thermal expansion tank to accommodate the amount of water expansion resulting from the same 100-F temperature increase. This is, of course, a worst case scenario (complete emptying of the tank and filling with 40-F cold water). Designing the expansion tank based on only a 40-F temperature rise is less than conservative.

Second, the manufacturer’s tables are based on a tank precharge pressure of 40 psi. Precharge is the air pressure on the air side of the tank bladder. This setting, by the way, is not founded upon an engineering principle but is the Department of Transportation’s  limitation for transporting tanks. To reduce the size of the thermal expansion tank, the precharge air pressure should be set equal to the line pressure of the system, not the 40 psi tank precharge pressure that is set from the factory. (Note: if expansion tanks are sized by an engineer based on a precharge air pressure equal to line pressure, the plumbing drawings and specifications should instruct the contractor to charge the expansion tank with air pressure equal to the line pressure.) Since the manufacturer’s sizing table is based on a tank precharge pressure of 40 psi, they do not accurately size an expansion tank when the precharge pressure is equal to the line pressure,.

This is the amount of water that the thermal expansion tank would have to accept to prevent pressure spikes in the system. I know that this is a simplified approach. I have ignored the expansion of the heater tank and the hot water piping. It is my experience that the impact of these factors are small and have little effect on the ultimate tank selection. Keep in mind that when we complete the calculations, we select expansion tanks that come in rather large size increments. That’s why including factors that do not significantly impact the total amount of thermal expansion needed, can safely be omitted from the calculations. The equations provided in the ASPE Design Handbook include expansion of pipe material if you want to be more precise. By the way, I also don’t bother correcting for altitude. We typically don’t need that much accuracy. Also, since we are assuming a 100-degree water temperature differential in the calculations, we have some built-in conservatism.

The final step is to determine the total tank capacity. The equation for total tank capacity is derived from Boyle’s law. When the precharge pressure will equal the line pressure, use equation (2) below.

Together with the Victorian Waste Management Association (VWMA), we have implemented a system called ‘Wastelog’ to monitor food and oil interceptor pump-outs. It enables Environment Protection Authority (EPA) licenced waste contractors to register all food and oil interceptor pump-outs within our area of operation. Participating Wastelog transporters can automatically schedule and register your grease interceptor pump-outs. Have a look at our list of registered food and oil interceptor waste transporters below. This service simplifies the process and removes the need for customers to arrange a transporter every time a pump-out is required. Contractors can access the Wastelog system online.

To select a thermal expansion tank, the total tank capacity and the acceptance volume must be determined. The total tank capacity is the volume of the tank. The acceptance volume is the amount of water that the tank will accept with air pressure on the air-side of the diaphragm. First determine the expansion volume of the water in your system. This is volume of water the expansion tank will have to accommodate, which is also called the “acceptance volume.” The volume of expanded water is depends upon the specific volume of water at the entering and heated temperatures and the volume of stored water.