# Análisis 5: Enfriamiento con deshumidificación

{% hint style="info" %}
1.8 m³/s de aire húmedo a 28 °C (db) y 20.5 °C (wb) y 101.325 kPa entra en una batería de enfriamiento y deshumidificación, la salida de la misma se produce a 12.5 °C (db) y una humedad específica de 8.44 g/kg de aire seco. Determinar:

* Factor de by-pass
* Temperatura de rocío del aparato
* Capacidad de refrigeración
* Agua de condensación
* Irreversibilidad
* Eficiencia exergética
* Diagrama energético
* Diagrama exergético
  {% endhint %}

![](https://thermosuite.com/manual2/5/media/image2.png)

![](https://thermosuite.com/manual2/5/media/image3.png)

![](https://thermosuite.com/manual2/5/media/image4.png)

![](https://thermosuite.com/manual2/5/media/image5.png)

![](https://thermosuite.com/manual2/5/media/image6.png)

![](https://thermosuite.com/manual2/5/media/image7.png)

![](https://thermosuite.com/manual2/5/media/image8.png)

![](https://thermosuite.com/manual2/5/media/image9.png)

Balance energético:

![](https://thermosuite.com/manual2/5/media/image10.png)

Balance exergético:

![](https://thermosuite.com/manual2/5/media/image11.png)


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