Airflow: CCL ~ 500m³ / h
Model: TFWC A1 Series
I, nova aeris Purificacionis + Energy Recuperatio + calefactio et refrigerationem
II, Airflow: 250-500 M³ / h
III, enthalpy Exchange Core
IV, Filter: G4 Prima screen + Hepa12 screen
V, latus porta sustentacionem
VI, PTC calefactio
VII, bypass munus
Hoc calor recuperatio ratio potest coniungi ad calorem sentinam aquam ratio. Aquae in collector pipore coniungere in ERV potest preheated de ostium ictu aerem, amplio temperatus de nova caeli intrantes locus et amplio consolationem in umbraticis elit.
DC motricium: altius industria efficientiam et ecology per potens motoribus
Washable Exchange Core:Membra membrana quod potest lavare in enthalpy commutationem core et habet longum vitae 3-10 annis
Energy Recuperatio VENTILATIO Technology: Calor Recuperatio Efficens potest pervenire plus quam LXX%
Smarter Imperium: App + intelligentes Controller
Privata residentiae
Central calefactio District
Commercatorius
Hotel
G4 + H12 Filter) * II plus lautus recens aerem
Countercurrent Cross Enthalpy Exchange Core, altior calor Exchange Efficens
Exemplar | Rated airflow (M³ / h) | Rated ESP (PA) | Temp.eff. (%) | Strepitus (DB (a)) | Purificacionis Efficens | Volt. (V / HZ) | Power initus (W) | Heating / Refrigerant calorie (W)
| NW (KG) | Magnitudine (mm) | Imperium forma | Iungo magnitudine |
TFWC-XXV (A1-1d2) | CCL | C (CC) | 75-80 | 35 | XCIX% | 210-240 / L | C (CCC * II) | D ~ MD | 58 | MCC * DCCLXXX * CCLX | Intelligentes imperium / app | φ150 |
TFWC-XXXV (A1-1d2) | CCCL | C (CC) | 75-80 | 37 | 210-240 / L | CXXX (CCC * II) | D ~ MD | 58 | MCC * DCCLXXX * CCLX | φ150 | ||
Tfwc-D (A1-1d2) | D | C | 75-80 | 40 | 210-240 / L | CCXX (CCC * II) | D ~ MD | 58 | MCC * DCCLXXX * CCLX | φ200 |
Aquae Coil Erv installation Schematic
I: æstus sentinam aer valetudo externum unit
II: Solum calefactio
III, aqua tristique
IV: ERV controller
V: æstus sentinam ERV
Institutionem location non solum ad reference. Praestare institutionem secundum consilium diagram
Quid de aqua angulo ERV calefactio effectum?
Sit scriptor vultus ad a paro of experimentalem notitia
Preheating Orff onus calculation (inquire vexillum Yinchuan in Sina atmosphaerica pressura value: 88390pa) | |||||||
Ventus celeritate | Coil elementum temperatus (℃) / Relativum humiditas (%) | Inlet enthalpy de coil (KJ / kg) | Coil elementum temperatus (℃) / Relativum humiditas (%) | Inlet enthalpy de coil (KJ / kg) | Airflow (M³ / h) | Density Aeris (KG / M³) | Preheating onus (W) |
Altum | 1.93 / 43.01 | 7.2 | 20.40 / 13.78 | 26.5 | CCC | 1.117 | MDCCXCVII |
Medius | 1.93 / 43.01 | 7.2 | 21.77 / 13.34 | 28.3 | CCL | 1.117 | MDCXXXVII |
Humilis | 1.93 / 43.01 | 7.2 | 23.17 / 10.76 | 28.9 | CC | 1.117 | MCCCXLVII |
I, test situm sley aqua aspera temperatus: 32.3 ℃, Outlet Temperature: 22.1 ℃;
II. Secundum enthalpy differentia et exitus et exitum caeli et coil, calor onus de coil calculata.
III. Inquire vexillum Yinchuan atmosphaerica pressura value: 88390pa
Cum Municipales calida aqua calefactio est non minus quam XXX ℃, in capacitatem trium pipacy novus fan (cum preheating coil) ad altum / medium / medium est:
Casio 1797W, Medium celeritate 1637W, Minimum celeritas 1347W
Occurrit prehedeating requisita recens aerem.