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System Air Temperature

Understand how to measure System Air Temperature. Learn which tools and meter specifications you need to capture valid temperature readings. Follow a clear, step-by-step procedure to take multiple spot measurements and record your data for analysis and use in calculations.

Measurement Overview

What:Hourly measurements of the air temperatures.

Why:To characterize air handling unit performance and measure supply/discharge air, return air, exhaust air, and mixed air temperatures.

Duration:Best practice is to collect the data for a minimum of six weeks at one-hour intervals for each season.

When:Measurements should be taken when the system of interest is operating under normal conditions.

Type of Measurement:Direct

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This technique uses data loggers to take long-term measurements of air temperature (F) at one-hour intervals. This technique can be used to characterize air handling unit (AHU) performance; and measure supply/discharge air, return air, exhaust air, and mixed air temperatures. Each air stream requires a different logger for data collection. This data is used to estimate the thermal loads of the system during the heating and cooling seasons. For a more detailed description of how to characterize an AHU, refer to the Air Handling Plant.

Measurements should be taken at one-hour average intervals; not instantaneously. When taking one-hour measurements, the logger detects the temperature several times over every hour and stores the average value. Sometimes temperature can fluctuate over a one-hour period, but the instantaneous temperature value will not indicate that change.

The duration of the long-term measurement should be a minimum of six weeks. Measurements should be taken when the system is operating under normal conditions. Although AHUs typically operate year-round, the heating and cooling seasons affect their schedules. To calculate the annual energy consumption of a unit, six weeks of measurements should be taken for each season. To calculate only the heating or cooling season energy consumption, six weeks of measurements for that season should be taken.

info Types of Measurements
  • Direct: Specifies a quantity of the exact item being measured.
  • Proxy: Provides an indication of the system operation but does not directly measure the quantity in question.

Measurement Tools

The measurement tool needed for this procedure is a temperature logger (or a combined temperature and humidity data logger).

The data loggers should be installed in the ductwork with the air stream The temperature data measured by the logger should be collected as hourly average values; not instantaneously. Operating under this method, the logger detects temperature fluctuations across the hour and stores the average value of those fluctuations rather than the measured temperature value at an instantaneous point in time (which does not account for those changes).

NYC agency personnel can borrow measurement data loggers, meters, or sensors from our tool library, by selecting tools based on the required measurement duration. See recommended tools found in our library:

HOBO Temp/RH Logger Onset MX1101
HOBO Temp/RH Logger Onset MX1101
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Measures and records temperature and relative humidity. Using bluetooth technology you can transmit your data wirelessly to your mobile device.

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info Logger Setup
Please note that loggers will require setup with a computer or phone using the manufacturer’s proprietary software prior to installation and measurement logging and that older loggers will require the use of a cable to connect to a computer. Refer to the measurement equipment’s user manual for a detailed description of setup requirements.

Measurement Steps

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Prepare Tools

Use the manufacturer’s software to set up and launch the logger(s). Refer to the equipment’s user manual for detailed instructions on how to set up the logger.

  • Logging interval: 1-hour
  • Date and time to start logging
  • Date and time to stop logging
  • Values to measure: Temperature (F), Relative Humidity (%) if necessary
  • Sampling interval: 1-second
How to configure the MX1101 logger on HOBOConnect (7 min).
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Install Tools

  1. Confirm that the outside air dampers are open and that there is outside air intake in the duct (if installing the logger directly in an AHU).
  2. To measure temperature of the air streams inside of an AHU, place the loggers inside of the ductwork.
  3. Confirm that the logger is recording, and that the sensor is accurately identifying the outside air temperature. If the logger has a screen, check the temperature value displayed there. If the logger does not have a screen, use the software to connect to the logger and check the temperature it detects.
info Tip
Air handling units come in all sizes, and there is no single method for properly installing all temperature loggers. Installing at the mixing plenum/chamber is the most challenging because you are trying to measure the mixed air temperature, which is the combination of return air and outside air.
info Tip
Mixed air temperature is the most difficult data to collect because some mixed air chambers make it difficult to install a data logger to accurately capture mixed air. The measurement uncertainty introduced is unknown. Experiment with different logger placements within the air chamber to minimize measurement uncertainty.
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Do not place the loggers near heating and/or cooling coils. Do not move the logger after it has been installed.
How to install the MX2301 MX1101 UX100 temperature loggers (5 min).
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Verify Data Acquisition

Wait 24-48 hours to verify data collection. Return to the location of the measured equipment and use a laptop or a phone with the manufacturer’s proprietary software installed to do the following:

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Do not remove the logger or sensors. If you remove the logger, you may need to start over with the setup and installation process.
  1. If necessary, connect the logger to a laptop or phone via USB cable. Otherwise, use the software to connect with the data logger via Bluetooth.
  2. Analyze the data with a plot graph. This can be done with the proprietary software or Microsoft Excel after exporting the dataset as a .csv file.
  3. Determine whether the measured results align with the expected operation of the system or component based on observed equipment schedules.
How to check data of bluetooth loggers using HOBOConnect (6 min).
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Retrieve Tools and Data

After verifying that the logger is collecting data, do the following:

  1. Allow the logger to collect data for the remainder of the measurement period.
  2. After the measurement period has concluded, remove the logger from the panel.
  3. If necessary, connect the logger to a laptop or phone via USB cable. Otherwise, use the software to connect with the data logger via Bluetooth.
  4. Use the proprietary software to stop the logger and end data collection.
  5. Download all data from the logger and save the file in the .csv file format for analysis.
How to extract data from the logger and convert to csv on HOBOConnect (4 min).
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Select Calculator(s)

These calculators will output estimated annual energy consumption or heat transfer for relevant components using measured data. Download the calculator for your specific component’s measurement strategy and add your measurement data.

Heat Exchangers

For estimating air-to-air heat exchanger heat transfer.

Air-to-Air Heat Transfer (Rotary Wheel Heat Exchanger) Calculator

Estimate the annual sensible and latent heat transfer during the heating and cooling season of an energy recovery ventilator with a rotary wheel heat exchanger.

Download Calculator download

Troubleshooting

This section provides some troubleshooting tips for the most common issues with tool installation.

Verify that the logger is calibrated. Re-calibrate the tool if necessary.
Adjust the placement of the logger, ensuring that the logger is installed correctly and that there is no interference from heating and cooling coils.