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 1561–1584 of 3346

EVAPCO AT 212-2K36 cooling tower (991 tons, 4.4 MW) — modelled

EVAPCO's 212-2K36 — a AT cooling tower, 991 nominal tons (4355 kW): rated to cool 2982 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 113.8 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 data
Cooling tower / heat rejection · 3266–5444 kW · EU

EVAPCO AT 212-2K40 cooling tower (915 tons, 4.0 MW) — modelled

EVAPCO's 212-2K40 — a AT cooling tower, 915 nominal tons (4022 kW): rated to cool 2754 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 116.3 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 data
Cooling tower / heat rejection · 3017–5028 kW · EU

EVAPCO AT 212-2L24 cooling tower (779 tons, 3.4 MW) — modelled

EVAPCO's 212-2L24 — a AT cooling tower, 779 nominal tons (3426 kW): rated to cool 2346 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 90.4 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 · 2570–4283 kW · EU

EVAPCO AT 212-2L28 cooling tower (847 tons, 3.7 MW) — modelled

EVAPCO's 212-2L28 — a AT cooling tower, 847 nominal tons (3724 kW): rated to cool 2550 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 98.3 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 · 2793–4655 kW · EU

EVAPCO AT 212-2L36 cooling tower (1048 tons, 4.6 MW) — modelled

EVAPCO's 212-2L36 — a AT cooling tower, 1048 nominal tons (4605 kW): rated to cool 3153 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 122.3 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 data
Cooling tower / heat rejection · 3454–5756 kW · EU

EVAPCO AT 212-2L40 cooling tower (1010 tons, 4.4 MW) — modelled

EVAPCO's 212-2L40 — a AT cooling tower, 1010 nominal tons (4438 kW): rated to cool 3039 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 124.9 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 data
Cooling tower / heat rejection · 3329–5548 kW · EU

EVAPCO AT 212-2M24 cooling tower (825 tons, 3.6 MW) — modelled

EVAPCO's 212-2M24 — a AT cooling tower, 825 nominal tons (3628 kW): rated to cool 2484 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 95.8 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 · 2721–4535 kW · EU

EVAPCO AT 212-2M28 cooling tower (897 tons, 3.9 MW) — modelled

EVAPCO's 212-2M28 — a AT cooling tower, 897 nominal tons (3943 kW): rated to cool 2700 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 104.2 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 · 2957–4929 kW · EU

EVAPCO AT 212-2M36 cooling tower (1103 tons, 4.9 MW) — modelled

EVAPCO's 212-2M36 — a AT cooling tower, 1103 nominal tons (4850 kW): rated to cool 3321 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 129.6 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 data
Cooling tower / heat rejection · 3638–6063 kW · EU

EVAPCO AT 212-2M40 cooling tower (1084 tons, 4.8 MW) — modelled

EVAPCO's 212-2M40 — a AT cooling tower, 1084 nominal tons (4767 kW): rated to cool 3264 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 132.3 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 data
Cooling tower / heat rejection · 3575–5959 kW · EU

EVAPCO AT 212-2N36 cooling tower (1215 tons, 5.3 MW) — modelled

EVAPCO's 212-2N36 — a AT cooling tower, 1215 nominal tons (5341 kW): rated to cool 3657 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 142.0 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 data
Cooling tower / heat rejection · 4006–6676 kW · EU

EVAPCO AT 212-2N40 cooling tower (1246 tons, 5.5 MW) — modelled

EVAPCO's 212-2N40 — a AT cooling tower, 1246 nominal tons (5477 kW): rated to cool 3750 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 144.7 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 data
Cooling tower / heat rejection · 4108–6846 kW · EU

EVAPCO AT 212-2O40 cooling tower (1352 tons, 5.9 MW) — modelled

EVAPCO's 212-2O40 — a AT cooling tower, 1352 nominal tons (5946 kW): rated to cool 4071 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 155.3 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 data
Cooling tower / heat rejection · 4459–7432 kW · EU

EVAPCO AT 212-3F9 cooling tower (202 tons, 889 kW) — modelled

EVAPCO's 212-3F9 — a AT cooling tower, 202 nominal tons (889 kW): rated to cool 609 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 21.0 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 · 667–1112 kW · EU

EVAPCO AT 212-3G9 cooling tower (249 tons, 1.1 MW) — modelled

EVAPCO's 212-3G9 — a AT cooling tower, 249 nominal tons (1095 kW): rated to cool 750 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 24.7 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 · 822–1369 kW · EU

EVAPCO AT 212-3H9 cooling tower (276 tons, 1.2 MW) — modelled

EVAPCO's 212-3H9 — a AT cooling tower, 276 nominal tons (1214 kW): rated to cool 831 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 28.0 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 · 910–1517 kW · EU

EVAPCO AT 212-3I28 cooling tower (685 tons, 3.0 MW) — modelled

EVAPCO's 212-3I28 — a AT cooling tower, 685 nominal tons (3010 kW): rated to cool 2061 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 72.3 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 · 2258–3763 kW · EU

EVAPCO AT 212-3I9 cooling tower (301 tons, 1.3 MW) — modelled

EVAPCO's 212-3I9 — a AT cooling tower, 301 nominal tons (1323 kW): rated to cool 906 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 30.7 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 · 992–1654 kW · EU

EVAPCO AT 212-3J24 cooling tower (738 tons, 3.2 MW) — modelled

EVAPCO's 212-3J24 — a AT cooling tower, 738 nominal tons (3242 kW): rated to cool 2220 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 75.5 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 · 2432–4053 kW · EU

EVAPCO AT 212-3J28 cooling tower (807 tons, 3.5 MW) — modelled

EVAPCO's 212-3J28 — a AT cooling tower, 807 nominal tons (3549 kW): rated to cool 2430 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 82.1 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 · 2662–4436 kW · EU

EVAPCO AT 212-3J36 cooling tower (974 tons, 4.3 MW) — modelled

EVAPCO's 212-3J36 — a AT cooling tower, 974 nominal tons (4281 kW): rated to cool 2931 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 102.4 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 data
Cooling tower / heat rejection · 3210–5351 kW · EU

EVAPCO AT 212-3K24 cooling tower (804 tons, 3.5 MW) — modelled

EVAPCO's 212-3K24 — a AT cooling tower, 804 nominal tons (3536 kW): rated to cool 2421 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 82.6 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 · 2652–4420 kW · EU

EVAPCO AT 212-3K28 cooling tower (874 tons, 3.8 MW) — modelled

EVAPCO's 212-3K28 — a AT cooling tower, 874 nominal tons (3842 kW): rated to cool 2631 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 90.0 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 · 2882–4803 kW · EU

EVAPCO AT 212-3K36 cooling tower (1088 tons, 4.8 MW) — modelled

EVAPCO's 212-3K36 — a AT cooling tower, 1088 nominal tons (4784 kW): rated to cool 3276 USGPM of water from 95 to 85 °F at a 78 °F entering wet bulb on 112.0 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 data
Cooling tower / heat rejection · 3588–5981 kW · EU
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Publishing here

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