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Air water heat exchanger: Type 670 Model a heating device in which air is passed across coils containing a hot liquid.
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The model was constituted of three coupled submodels: a magnetic model, a heat transfer model and an evaporation model.
A single channel model, a heat transfer model, a heat sink model and a liquid-fuel point kinetic model that takes into account the effect of circulation are employed.
Firstly, a coolant circuit mathematical model is developed, which includes a PEMFC thermal model, a water reservoir model, a water pump model, a bypass valve model, a heat exchanger model and a PEMFC electrochemical model.
A dynamic model for a heating, ventilation and air conditioning system comprising inlet and exhaust fans, with air recirculation, heating/cooling and filtration units is presented.
Thermogravimetric analysis (TGA)/differential thermal analysis (DTA) experiments were performed using an equipment STA 503 BÄHR model at a heating rate of 10 °C/min.
A theoretical model using a heat and mass transfer analogy and a simple model using Lee and Kim's [Lee, K.-Y., Kim, M.H., 2008a.
This paper presents a numerical model of a heat exchanger in which these effects are explicitly modeled.
Moreover, the object-oriented model of a heat exchanger is presented utilising the modelling language Modelica.
Fitting a complex distributed lag non-linear model may reduce the heat wave signal and over-estimate mortality on non-heat wave days, compared to a model including a heat wave term.
A study was conducted to model a residential heat pump water heater using these HFOs.
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