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| S2 fan convector as the source of sink |
| Order-№: 82126Price: |
in EUR |
All prices are plus delivery charges. Delivery charges-Info |
Net price:
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5.200,00 EUR
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| Gross price:
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6.188,00 EUR
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| Add to cart. |
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Decisive for the quality of the training given is that practical exercises are possible
and that measurements with real equipment can be performed. It is only by literally
"grasping" and "touching" that the technical processes will be understood, and hence
can be managed as well. That which cannot be directly observed and sensed, has to
be perceived by suitable experimental measurements.
Pedagogic requirements
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Maximum learning effi ciency from closely linking theory and the practical side
of the subject with hands-on learn-ing processes
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The contents of learning must be made "graspable" in both meanings of the word
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To avoid any waste of time in the learning organisation, all learning processes
have to provided at the place of learning in a qualifi ed and optimised manner,
and the system technology must be designed for practical ap-plications such that
these processes can be realised in a mutually complementing way
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This calls for "integrated specialist classrooms" where both theory and the practical
side of the area of technol-ogy concerned can be mediated
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The effi ciency in conveying the knowledge and fi ndings is part of the balanced
concept which includes written information and exercises organised using modern
media techniques, PC workplaces, experimental, laboratory and demonstration equipment
to practice on
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All learning processes are designed in the context of "complete action" with the
problem assignment (job, in-formation), conditional analysis (analysis of the
knowledge relevant to the organisation, planning), project realisation (execution,
realisation, test record) and transfer (docu-mentation, assuring the results,
testing
Further information
Both the source of energy and the energy sink with discharge of warm air can be
realised with the fan convector in these experiments.
Two convectors
are interconnected here to increase the performance.
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Adjustable fan power (4 power stages) in the air throughputfrom 450 – 1040
m³/h
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Adjustable heating power from 6.8 to 13.4 kW at 75/65/20°C
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Adjustable cooling performance from 3 to 5.4 kW at 7/12/27°C
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Continuous throttle action in thehydraulic circuit by turning valves onthe convector
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Series of experiments to optimise the energy between the heating power available
from the heating circuit and the energy conveyed from the convector to the air
in the room
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Integrated hot-medium meter
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Understand the technical system requirements for
heat-pump heater systems and solar-heat equipment
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Knowledge of the electrical, hydraulic and control
require-ments needed for operation, using a heat-pump heater system or
solar-heat equipment as an example
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Knowledge of the physical processes in the cold circuit
of a heat pump
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Systematic approach to commissioning a heat-pump heater
system or solar-heat equipment
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Capability to plan, set up and commission heat-pump and
solar-heat heater systems in a concerted manner
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Capability to prepare test records for heat-pump heater
systems and solar-heat equipment
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Skills in recording measurements and evaluating the
results from electrical and hydraulic processes using a heat-pump and
solar-heat systems as examples
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Understanding the processes to optimise the energy in
heater systems using heat pumps and solar heat
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Knowledge of the terms and operating resources used for
heat-pump and solar-heat systems
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Capability to judge the electrical and hydraulic values
measured in heat-pump heater systems and to plan any thereby re-lated
process changes
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Understanding of the technical controls and
optimisa-tion of the energy in the circulation pumps used in heater
systems
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Skills for optimising energy processes in heater
systems
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Set dimensions
(W/D/H in mm) approx. 1.100 x 800 x 1.980
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Weight approx. 80 kg
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Power supply 230 V
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