Sharp JX-9400 Technical Information Seite 54

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Planning tool
There are many types of air handling units, and, from our experience, each new
measurement poses new problems. It is hence impossible to provide a detailed
measurement protocol valid for all types. Therefore, a computer program was
developed that performs the following tasks:
.
Requests input data:
characterization of the air handling unit (type, location, design airflow
rates, heat exchanger, position of fans with respect to heat exchanger,
etc.);
tracer gas( es) used, injection location(s) and design concentration(s);
characterization of building (approximate volu me, number of occupants,
overpressurized or not, etc.);
airflows that obviously cannot exist.
.
Evaluates the risk of poor tracer gas mixing from the distance between
injection and sampling locations and from the devices (fans, bends, filters,
dampers) placed in between.
.
Prepares a printed measurement protocol containing injection and sampling
locations, injection rates of tracer gases and a system of equation in
accordance with ‘Simplest way’ (above).
.
Requests measured tracer gas concentrations and actual injection flow rates
or reads the m in a file.
.
Solves the system of equations and prepares a measurement report.
This piece of software is available on www.e4tech.com, in ‘Software and
Publications’.
Example of application
Sulphur hexafluoride was injected as tracer 1 and nitrous oxide as tracer 2 in
an air handling unit without planned recirculation, but equipped with a
rotating heat exchanger. Resulting concentrations are shown in Figure 2.10,
and measurement results in Figure 2.9.
1000
3700
9400
11,000
440
8000
6700
Relief Exhaust
Supply
Outside
Figure 2.9 Measured airflow rates in a leaky air handling unit
Note: Design airflow rates were 13,000 m/h for both supply and return, and zero for
recirculation.
Source: Awbi, 2007.
Airflow Rates in Air Handling Units 33
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