Published systems

Complete machines published by their suppliers — each with a public spec page whose design-point performance is solved live from the actual model, not copied from a brochure. Open one in the builder to run it against your own climate, or request a quote right here.

Suppliers 26Systems 3346Components 10248
All categoriesCooling tower / heat rejection 3307VRF / multi-split 8Air handler 7Plant / central 5Fan coil / terminal 4Condensing unit 3Rooftop / packaged 3Split system 3Chiller 2Heat recovery / DOAS 2Evaporative air cooler 1Unit cooler / refrigeration 1
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All seriesAT 992ATWB 416PFi 359PCC 214Series 3000 189Series 1500 173Series V closed circuit 173Vertex VRC 157VCA 151Series V 122CXVB 118FXV 100PT2 46CXVT 40Series V EC 26FXT 20Nexus 12DVM S 1GMV5 1Set Free FSXN 1V4+ 1V6 1
Any capacity500 kW and up 3088100–500 kW 39125–100 kW 76up to 25 kW 25
Any certificationCTI STD-201 (validation C13A-99R28) 822CTI STD-201 (validation C13F-09R12) 416CTI STD-201 (validation C11F-92R20) 362CTI STD-201 (validation C11K-00R03) 153CTI STD-201 (validation C11J-98R12) 100CTI STD-201 (validation C11B-92R07) 90CTI STD-201 (validation C11L-07R05) 46CTI STD-201 (validation C11Q-18R02) 2
All marketsEU 3346
All tagsexample 3346
All suppliersHVAC Builder 3345Aeronim Systems (fictional) 1
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Showing 1705–1728 of 3346

EVAPCO AT 214-4Q48 cooling tower (2223 tons, 9.8 MW) — modelled

EVAPCO's 214-4Q48 — a AT cooling tower, 2223 nominal tons (9770 kW): rated to cool 6690 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 217.4 m³/s of air, the maker's own printed airflow, and drawn at those flows with an induced-draft fan on the leaving air, pulling through the fill. Open fill: the water meets the air directly — Braun's enthalpy-basis tower model. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving water exactly and predicts nothing else — one point per model is an input, not a validation. Modelled from the manufacturer's published data — not verified by EVAPCO. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C13A-99R28) ✓
Cooling tower / heat rejection · 7328–12213 kW · EU

EVAPCO AT 214-5K52 cooling tower (1964 tons, 8.6 MW) — modelled

EVAPCO's 214-5K52 — a AT cooling tower, 1964 nominal tons (8636 kW): rated to cool 5913 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 185.7 m³/s of air, the maker's own printed airflow, and drawn at those flows with an induced-draft fan on the leaving air, pulling through the fill. Open fill: the water meets the air directly — Braun's enthalpy-basis tower model. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving water exactly and predicts nothing else — one point per model is an input, not a validation. Modelled from the manufacturer's published data — not verified by EVAPCO. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C13A-99R28) ✓
Cooling tower / heat rejection · 6477–10795 kW · EU

EVAPCO AT 214-5L52 cooling tower (2112 tons, 9.3 MW) — modelled

EVAPCO's 214-5L52 — a AT cooling tower, 2112 nominal tons (9284 kW): rated to cool 6357 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 199.2 m³/s of air, the maker's own printed airflow, and drawn at those flows with an induced-draft fan on the leaving air, pulling through the fill. Open fill: the water meets the air directly — Braun's enthalpy-basis tower model. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving water exactly and predicts nothing else — one point per model is an input, not a validation. Modelled from the manufacturer's published data — not verified by EVAPCO. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C13A-99R28) ✓
Cooling tower / heat rejection · 6963–11605 kW · EU

EVAPCO AT 214-5M52 cooling tower (2238 tons, 9.8 MW) — modelled

EVAPCO's 214-5M52 — a AT cooling tower, 2238 nominal tons (9836 kW): rated to cool 6735 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 210.9 m³/s of air, the maker's own printed airflow, and drawn at those flows with an induced-draft fan on the leaving air, pulling through the fill. Open fill: the water meets the air directly — Braun's enthalpy-basis tower model. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving water exactly and predicts nothing else — one point per model is an input, not a validation. Modelled from the manufacturer's published data — not verified by EVAPCO. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C13A-99R28) ✓
Cooling tower / heat rejection · 7377–12295 kW · EU

EVAPCO AT 214-5N52 cooling tower (2444 tons, 10.7 MW) — modelled

EVAPCO's 214-5N52 — a AT cooling tower, 2444 nominal tons (10743 kW): rated to cool 7356 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 230.6 m³/s of air, the maker's own printed airflow, and drawn at those flows with an induced-draft fan on the leaving air, pulling through the fill. Open fill: the water meets the air directly — Braun's enthalpy-basis tower model. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving water exactly and predicts nothing else — one point per model is an input, not a validation. Modelled from the manufacturer's published data — not verified by EVAPCO. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C13A-99R28) ✓
Cooling tower / heat rejection · 8057–13429 kW · EU

EVAPCO AT 214-5O52 cooling tower (2613 tons, 11.5 MW) — modelled

EVAPCO's 214-5O52 — a AT cooling tower, 2613 nominal tons (11488 kW): rated to cool 7866 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 247.2 m³/s of air, the maker's own printed airflow, and drawn at those flows with an induced-draft fan on the leaving air, pulling through the fill. Open fill: the water meets the air directly — Braun's enthalpy-basis tower model. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving water exactly and predicts nothing else — one point per model is an input, not a validation. Modelled from the manufacturer's published data — not verified by EVAPCO. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C13A-99R28) ✓
Cooling tower / heat rejection · 8616–14360 kW · EU

EVAPCO AT 215-2F9 cooling tower (216 tons, 951 kW) — modelled

EVAPCO's 215-2F9 — a AT cooling tower, 216 nominal tons (951 kW): rated to cool 651 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 25.1 m³/s of air, the maker's own printed airflow, and drawn at those flows with an induced-draft fan on the leaving air, pulling through the fill. Open fill: the water meets the air directly — Braun's enthalpy-basis tower model. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving water exactly and predicts nothing else — one point per model is an input, not a validation. Modelled from the manufacturer's published data — not verified by EVAPCO. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C13A-99R28) ✓
Cooling tower / heat rejection · 713–1188 kW · EU

EVAPCO AT 215-2G9 cooling tower (273 tons, 1.2 MW) — modelled

EVAPCO's 215-2G9 — a AT cooling tower, 273 nominal tons (1200 kW): rated to cool 822 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 29.5 m³/s of air, the maker's own printed airflow, and drawn at those flows with an induced-draft fan on the leaving air, pulling through the fill. Open fill: the water meets the air directly — Braun's enthalpy-basis tower model. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving water exactly and predicts nothing else — one point per model is an input, not a validation. Modelled from the manufacturer's published data — not verified by EVAPCO. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C13A-99R28) ✓
Cooling tower / heat rejection · 900–1501 kW · EU

EVAPCO AT 215-2H9 cooling tower (296 tons, 1.3 MW) — modelled

EVAPCO's 215-2H9 — a AT cooling tower, 296 nominal tons (1301 kW): rated to cool 891 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 33.7 m³/s of air, the maker's own printed airflow, and drawn at those flows with an induced-draft fan on the leaving air, pulling through the fill. Open fill: the water meets the air directly — Braun's enthalpy-basis tower model. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving water exactly and predicts nothing else — one point per model is an input, not a validation. Modelled from the manufacturer's published data — not verified by EVAPCO. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C13A-99R28) ✓
Cooling tower / heat rejection · 976–1627 kW · EU

EVAPCO AT 215-2I9 cooling tower (318 tons, 1.4 MW) — modelled

EVAPCO's 215-2I9 — a AT cooling tower, 318 nominal tons (1398 kW): rated to cool 957 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 37.0 m³/s of air, the maker's own printed airflow, and drawn at those flows with an induced-draft fan on the leaving air, pulling through the fill. Open fill: the water meets the air directly — Braun's enthalpy-basis tower model. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving water exactly and predicts nothing else — one point per model is an input, not a validation. Modelled from the manufacturer's published data — not verified by EVAPCO. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C13A-99R28) ✓
Cooling tower / heat rejection · 1048–1747 kW · EU

EVAPCO AT 215-3F9 cooling tower (246 tons, 1.1 MW) — modelled

EVAPCO's 215-3F9 — a AT cooling tower, 246 nominal tons (1082 kW): rated to cool 741 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 24.8 m³/s of air, the maker's own printed airflow, and drawn at those flows with an induced-draft fan on the leaving air, pulling through the fill. Open fill: the water meets the air directly — Braun's enthalpy-basis tower model. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving water exactly and predicts nothing else — one point per model is an input, not a validation. Modelled from the manufacturer's published data — not verified by EVAPCO. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C13A-99R28) ✓
Cooling tower / heat rejection · 812–1353 kW · EU

EVAPCO AT 215-3G9 cooling tower (303 tons, 1.3 MW) — modelled

EVAPCO's 215-3G9 — a AT cooling tower, 303 nominal tons (1332 kW): rated to cool 912 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 29.1 m³/s of air, the maker's own printed airflow, and drawn at those flows with an induced-draft fan on the leaving air, pulling through the fill. Open fill: the water meets the air directly — Braun's enthalpy-basis tower model. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving water exactly and predicts nothing else — one point per model is an input, not a validation. Modelled from the manufacturer's published data — not verified by EVAPCO. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C13A-99R28) ✓
Cooling tower / heat rejection · 999–1665 kW · EU

EVAPCO AT 215-3H9 cooling tower (330 tons, 1.5 MW) — modelled

EVAPCO's 215-3H9 — a AT cooling tower, 330 nominal tons (1450 kW): rated to cool 993 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 33.1 m³/s of air, the maker's own printed airflow, and drawn at those flows with an induced-draft fan on the leaving air, pulling through the fill. Open fill: the water meets the air directly — Braun's enthalpy-basis tower model. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving water exactly and predicts nothing else — one point per model is an input, not a validation. Modelled from the manufacturer's published data — not verified by EVAPCO. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C13A-99R28) ✓
Cooling tower / heat rejection · 1088–1813 kW · EU

EVAPCO AT 215-3I9 cooling tower (357 tons, 1.6 MW) — modelled

EVAPCO's 215-3I9 — a AT cooling tower, 357 nominal tons (1569 kW): rated to cool 1074 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 36.3 m³/s of air, the maker's own printed airflow, and drawn at those flows with an induced-draft fan on the leaving air, pulling through the fill. Open fill: the water meets the air directly — Braun's enthalpy-basis tower model. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving water exactly and predicts nothing else — one point per model is an input, not a validation. Modelled from the manufacturer's published data — not verified by EVAPCO. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C13A-99R28) ✓
Cooling tower / heat rejection · 1176–1961 kW · EU

EVAPCO AT 215-3J9 cooling tower (392 tons, 1.7 MW) — modelled

EVAPCO's 215-3J9 — a AT cooling tower, 392 nominal tons (1722 kW): rated to cool 1179 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 41.3 m³/s of air, the maker's own printed airflow, and drawn at those flows with an induced-draft fan on the leaving air, pulling through the fill. Open fill: the water meets the air directly — Braun's enthalpy-basis tower model. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving water exactly and predicts nothing else — one point per model is an input, not a validation. Modelled from the manufacturer's published data — not verified by EVAPCO. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C13A-99R28) ✓
Cooling tower / heat rejection · 1291–2152 kW · EU

EVAPCO AT 215-4F9 cooling tower (266 tons, 1.2 MW) — modelled

EVAPCO's 215-4F9 — a AT cooling tower, 266 nominal tons (1170 kW): rated to cool 801 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 24.4 m³/s of air, the maker's own printed airflow, and drawn at those flows with an induced-draft fan on the leaving air, pulling through the fill. Open fill: the water meets the air directly — Braun's enthalpy-basis tower model. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving water exactly and predicts nothing else — one point per model is an input, not a validation. Modelled from the manufacturer's published data — not verified by EVAPCO. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C13A-99R28) ✓
Cooling tower / heat rejection · 877–1462 kW · EU

EVAPCO AT 215-4G9 cooling tower (318 tons, 1.4 MW) — modelled

EVAPCO's 215-4G9 — a AT cooling tower, 318 nominal tons (1398 kW): rated to cool 957 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 28.6 m³/s of air, the maker's own printed airflow, and drawn at those flows with an induced-draft fan on the leaving air, pulling through the fill. Open fill: the water meets the air directly — Braun's enthalpy-basis tower model. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving water exactly and predicts nothing else — one point per model is an input, not a validation. Modelled from the manufacturer's published data — not verified by EVAPCO. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C13A-99R28) ✓
Cooling tower / heat rejection · 1048–1747 kW · EU

EVAPCO AT 215-4H9 cooling tower (345 tons, 1.5 MW) — modelled

EVAPCO's 215-4H9 — a AT cooling tower, 345 nominal tons (1516 kW): rated to cool 1038 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 32.6 m³/s of air, the maker's own printed airflow, and drawn at those flows with an induced-draft fan on the leaving air, pulling through the fill. Open fill: the water meets the air directly — Braun's enthalpy-basis tower model. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving water exactly and predicts nothing else — one point per model is an input, not a validation. Modelled from the manufacturer's published data — not verified by EVAPCO. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C13A-99R28) ✓
Cooling tower / heat rejection · 1137–1895 kW · EU

EVAPCO AT 215-4I9 cooling tower (372 tons, 1.6 MW) — modelled

EVAPCO's 215-4I9 — a AT cooling tower, 372 nominal tons (1634 kW): rated to cool 1119 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 35.7 m³/s of air, the maker's own printed airflow, and drawn at those flows with an induced-draft fan on the leaving air, pulling through the fill. Open fill: the water meets the air directly — Braun's enthalpy-basis tower model. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving water exactly and predicts nothing else — one point per model is an input, not a validation. Modelled from the manufacturer's published data — not verified by EVAPCO. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C13A-99R28) ✓
Cooling tower / heat rejection · 1226–2043 kW · EU

EVAPCO AT 215-4J9 cooling tower (413 tons, 1.8 MW) — modelled

EVAPCO's 215-4J9 — a AT cooling tower, 413 nominal tons (1814 kW): rated to cool 1242 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 40.6 m³/s of air, the maker's own printed airflow, and drawn at those flows with an induced-draft fan on the leaving air, pulling through the fill. Open fill: the water meets the air directly — Braun's enthalpy-basis tower model. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving water exactly and predicts nothing else — one point per model is an input, not a validation. Modelled from the manufacturer's published data — not verified by EVAPCO. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C13A-99R28) ✓
Cooling tower / heat rejection · 1360–2267 kW · EU

EVAPCO AT 217-2G11 cooling tower (315 tons, 1.4 MW) — modelled

EVAPCO's 217-2G11 — a AT cooling tower, 315 nominal tons (1385 kW): rated to cool 948 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 38.1 m³/s of air, the maker's own printed airflow, and drawn at those flows with an induced-draft fan on the leaving air, pulling through the fill. Open fill: the water meets the air directly — Braun's enthalpy-basis tower model. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving water exactly and predicts nothing else — one point per model is an input, not a validation. Modelled from the manufacturer's published data — not verified by EVAPCO. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C13A-99R28) ✓
Cooling tower / heat rejection · 1038–1731 kW · EU

EVAPCO AT 217-2G9 cooling tower (269 tons, 1.2 MW) — modelled

EVAPCO's 217-2G9 — a AT cooling tower, 269 nominal tons (1183 kW): rated to cool 810 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 33.8 m³/s of air, the maker's own printed airflow, and drawn at those flows with an induced-draft fan on the leaving air, pulling through the fill. Open fill: the water meets the air directly — Braun's enthalpy-basis tower model. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving water exactly and predicts nothing else — one point per model is an input, not a validation. Modelled from the manufacturer's published data — not verified by EVAPCO. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C13A-99R28) ✓
Cooling tower / heat rejection · 887–1479 kW · EU

EVAPCO AT 217-2H11 cooling tower (378 tons, 1.7 MW) — modelled

EVAPCO's 217-2H11 — a AT cooling tower, 378 nominal tons (1661 kW): rated to cool 1137 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 43.3 m³/s of air, the maker's own printed airflow, and drawn at those flows with an induced-draft fan on the leaving air, pulling through the fill. Open fill: the water meets the air directly — Braun's enthalpy-basis tower model. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving water exactly and predicts nothing else — one point per model is an input, not a validation. Modelled from the manufacturer's published data — not verified by EVAPCO. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C13A-99R28) ✓
Cooling tower / heat rejection · 1245–2076 kW · EU

EVAPCO AT 217-2H12 cooling tower (393 tons, 1.7 MW) — modelled

EVAPCO's 217-2H12 — a AT cooling tower, 393 nominal tons (1726 kW): rated to cool 1182 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 47.0 m³/s of air, the maker's own printed airflow, and drawn at those flows with an induced-draft fan on the leaving air, pulling through the fill. Open fill: the water meets the air directly — Braun's enthalpy-basis tower model. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving water exactly and predicts nothing else — one point per model is an input, not a validation. Modelled from the manufacturer's published data — not verified by EVAPCO. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C13A-99R28) ✓
Cooling tower / heat rejection · 1295–2158 kW · EU
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