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
All manufacturersBaltimore Aircoil 1900EVAPCO 1408Midea 2Gree 1Hitachi 1Samsung 1
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
SortNewestName A–ZSupplier A–ZCapacity ↑Capacity ↓

Showing 721–744 of 3346

Baltimore Aircoil Series V closed circuit VFL-072-31O closed-circuit cooler (81 tons, 355 kW) — modelled

BAC's VFL-072-31O — a Series V closed circuit closed-circuit cooler, 81 nominal tons (355 kW): rated to cool 243 USGPM of process fluid from 95 to 85 °F at a 78 °F entering wet bulb on 22.5 m³/s of air, the maker's own printed airflow, and drawn at those flows with a forced-draft fan on the leaving air, where its nameplate cannot be counted twice against a certified point. The process fluid runs inside a coil under the spray — the evaporative wet-coil model, its two conductances split as the range's own coil volumes say. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving process fluid 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 Baltimore Aircoil. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C11K-00R03) ✓
Cooling tower / heat rejection · 266–444 kW · EU

Baltimore Aircoil Series V closed circuit VFL-072-31P closed-circuit cooler (92 tons, 403 kW) — modelled

BAC's VFL-072-31P — a Series V closed circuit closed-circuit cooler, 92 nominal tons (403 kW): rated to cool 276 USGPM of process fluid 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 a forced-draft fan on the leaving air, where its nameplate cannot be counted twice against a certified point. The process fluid runs inside a coil under the spray — the evaporative wet-coil model, its two conductances split as the range's own coil volumes say. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving process fluid 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 Baltimore Aircoil. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C11K-00R03) ✓
Cooling tower / heat rejection · 302–504 kW · EU

Baltimore Aircoil Series V closed circuit VFL-072-41N closed-circuit cooler (79 tons, 346 kW) — modelled

BAC's VFL-072-41N — a Series V closed circuit closed-circuit cooler, 79 nominal tons (346 kW): rated to cool 237 USGPM of process fluid from 95 to 85 °F at a 78 °F entering wet bulb on 20.9 m³/s of air, the maker's own printed airflow, and drawn at those flows with a forced-draft fan on the leaving air, where its nameplate cannot be counted twice against a certified point. The process fluid runs inside a coil under the spray — the evaporative wet-coil model, its two conductances split as the range's own coil volumes say. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving process fluid 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 Baltimore Aircoil. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C11K-00R03) ✓
Cooling tower / heat rejection · 260–433 kW · EU

Baltimore Aircoil Series V closed circuit VFL-072-41O closed-circuit cooler (86 tons, 377 kW) — modelled

BAC's VFL-072-41O — a Series V closed circuit closed-circuit cooler, 86 nominal tons (377 kW): rated to cool 258 USGPM of process fluid from 95 to 85 °F at a 78 °F entering wet bulb on 22.3 m³/s of air, the maker's own printed airflow, and drawn at those flows with a forced-draft fan on the leaving air, where its nameplate cannot be counted twice against a certified point. The process fluid runs inside a coil under the spray — the evaporative wet-coil model, its two conductances split as the range's own coil volumes say. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving process fluid 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 Baltimore Aircoil. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C11K-00R03) ✓
Cooling tower / heat rejection · 283–471 kW · EU

Baltimore Aircoil Series V closed circuit VFL-072-41P closed-circuit cooler (97 tons, 425 kW) — modelled

BAC's VFL-072-41P — a Series V closed circuit closed-circuit cooler, 97 nominal tons (425 kW): rated to cool 291 USGPM of process fluid from 95 to 85 °F at a 78 °F entering wet bulb on 24.5 m³/s of air, the maker's own printed airflow, and drawn at those flows with a forced-draft fan on the leaving air, where its nameplate cannot be counted twice against a certified point. The process fluid runs inside a coil under the spray — the evaporative wet-coil model, its two conductances split as the range's own coil volumes say. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving process fluid 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 Baltimore Aircoil. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C11K-00R03) ✓
Cooling tower / heat rejection · 319–531 kW · EU

Baltimore Aircoil Series V closed circuit VFL-096-41N closed-circuit cooler (86 tons, 377 kW) — modelled

BAC's VFL-096-41N — a Series V closed circuit closed-circuit cooler, 86 nominal tons (377 kW): rated to cool 258 USGPM of process fluid from 95 to 85 °F at a 78 °F entering wet bulb on 24.0 m³/s of air, the maker's own printed airflow, and drawn at those flows with a forced-draft fan on the leaving air, where its nameplate cannot be counted twice against a certified point. The process fluid runs inside a coil under the spray — the evaporative wet-coil model, its two conductances split as the range's own coil volumes say. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving process fluid 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 Baltimore Aircoil. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C11K-00R03) ✓
Cooling tower / heat rejection · 283–471 kW · EU

Baltimore Aircoil Series V closed circuit VFL-096-41O closed-circuit cooler (94 tons, 412 kW) — modelled

BAC's VFL-096-41O — a Series V closed circuit closed-circuit cooler, 94 nominal tons (412 kW): rated to cool 282 USGPM of process fluid from 95 to 85 °F at a 78 °F entering wet bulb on 25.5 m³/s of air, the maker's own printed airflow, and drawn at those flows with a forced-draft fan on the leaving air, where its nameplate cannot be counted twice against a certified point. The process fluid runs inside a coil under the spray — the evaporative wet-coil model, its two conductances split as the range's own coil volumes say. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving process fluid 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 Baltimore Aircoil. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C11K-00R03) ✓
Cooling tower / heat rejection · 309–515 kW · EU

Baltimore Aircoil Series V closed circuit VFL-096-41P closed-circuit cooler (108 tons, 473 kW) — modelled

BAC's VFL-096-41P — a Series V closed circuit closed-circuit cooler, 108 nominal tons (473 kW): rated to cool 324 USGPM of process fluid from 95 to 85 °F at a 78 °F entering wet bulb on 28.1 m³/s of air, the maker's own printed airflow, and drawn at those flows with a forced-draft fan on the leaving air, where its nameplate cannot be counted twice against a certified point. The process fluid runs inside a coil under the spray — the evaporative wet-coil model, its two conductances split as the range's own coil volumes say. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving process fluid 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 Baltimore Aircoil. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C11K-00R03) ✓
Cooling tower / heat rejection · 355–591 kW · EU

Baltimore Aircoil FXV-0806A-12D-K closed-circuit cooler (39 tons, 171 kW) — modelled

BAC's FXV-0806A-12D-K — a FXV closed-circuit cooler, 39 nominal tons (171 kW): rated to cool 117 USGPM of process fluid from 95 to 85 °F at a 78 °F entering wet bulb on 15.6 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. The process fluid runs inside a coil under the spray — the evaporative wet-coil model, its two conductances split as the range's own coil volumes say. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving process fluid 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 Baltimore Aircoil. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C11J-98R12) ✓
Cooling tower / heat rejection · 128–214 kW · EU

Baltimore Aircoil FXV-0806B-32D-L closed-circuit cooler (87 tons, 381 kW) — modelled

BAC's FXV-0806B-32D-L — a FXV closed-circuit cooler, 87 nominal tons (381 kW): rated to cool 261 USGPM of process fluid from 95 to 85 °F at a 78 °F entering wet bulb on 19.1 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. The process fluid runs inside a coil under the spray — the evaporative wet-coil model, its two conductances split as the range's own coil volumes say. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving process fluid 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 Baltimore Aircoil. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C11J-98R12) ✓
Cooling tower / heat rejection · 286–476 kW · EU

Baltimore Aircoil FXV-0809B-24D-M closed-circuit cooler (119 tons, 521 kW) — modelled

BAC's FXV-0809B-24D-M — a FXV closed-circuit cooler, 119 nominal tons (521 kW): rated to cool 357 USGPM of process fluid from 95 to 85 °F at a 78 °F entering wet bulb on 27.0 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. The process fluid runs inside a coil under the spray — the evaporative wet-coil model, its two conductances split as the range's own coil volumes say. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving process fluid 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 Baltimore Aircoil. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C11J-98R12) ✓
Cooling tower / heat rejection · 391–652 kW · EU

Baltimore Aircoil FXV-0806A-16D-K closed-circuit cooler (47 tons, 206 kW) — modelled

BAC's FXV-0806A-16D-K — a FXV closed-circuit cooler, 47 nominal tons (206 kW): rated to cool 141 USGPM of process fluid from 95 to 85 °F at a 78 °F entering wet bulb on 15.3 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. The process fluid runs inside a coil under the spray — the evaporative wet-coil model, its two conductances split as the range's own coil volumes say. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving process fluid 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 Baltimore Aircoil. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C11J-98R12) ✓
Cooling tower / heat rejection · 154–257 kW · EU

Baltimore Aircoil FXV-0806B-36D-L closed-circuit cooler (90 tons, 394 kW) — modelled

BAC's FXV-0806B-36D-L — a FXV closed-circuit cooler, 90 nominal tons (394 kW): rated to cool 270 USGPM of process fluid from 95 to 85 °F at a 78 °F entering wet bulb on 18.8 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. The process fluid runs inside a coil under the spray — the evaporative wet-coil model, its two conductances split as the range's own coil volumes say. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving process fluid 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 Baltimore Aircoil. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C11J-98R12) ✓
Cooling tower / heat rejection · 296–493 kW · EU

Baltimore Aircoil FXV-0806A-20D-K closed-circuit cooler (53 tons, 232 kW) — modelled

BAC's FXV-0806A-20D-K — a FXV closed-circuit cooler, 53 nominal tons (232 kW): rated to cool 159 USGPM of process fluid from 95 to 85 °F at a 78 °F entering wet bulb on 15.0 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. The process fluid runs inside a coil under the spray — the evaporative wet-coil model, its two conductances split as the range's own coil volumes say. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving process fluid 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 Baltimore Aircoil. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C11J-98R12) ✓
Cooling tower / heat rejection · 174–290 kW · EU

Baltimore Aircoil FXV-0809B-28D-M closed-circuit cooler (135 tons, 591 kW) — modelled

BAC's FXV-0809B-28D-M — a FXV closed-circuit cooler, 135 nominal tons (591 kW): rated to cool 405 USGPM of process fluid from 95 to 85 °F at a 78 °F entering wet bulb on 26.7 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. The process fluid runs inside a coil under the spray — the evaporative wet-coil model, its two conductances split as the range's own coil volumes say. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving process fluid 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 Baltimore Aircoil. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C11J-98R12) ✓
Cooling tower / heat rejection · 444–739 kW · EU

Baltimore Aircoil FXV-0809A-12D-L closed-circuit cooler (72 tons, 315 kW) — modelled

BAC's FXV-0809A-12D-L — a FXV closed-circuit cooler, 72 nominal tons (315 kW): rated to cool 216 USGPM of process fluid from 95 to 85 °F at a 78 °F entering wet bulb on 23.0 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. The process fluid runs inside a coil under the spray — the evaporative wet-coil model, its two conductances split as the range's own coil volumes say. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving process fluid 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 Baltimore Aircoil. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C11J-98R12) ✓
Cooling tower / heat rejection · 237–394 kW · EU

Baltimore Aircoil FXV-0806A-24D-K closed-circuit cooler (63 tons, 276 kW) — modelled

BAC's FXV-0806A-24D-K — a FXV closed-circuit cooler, 63 nominal tons (276 kW): rated to cool 189 USGPM of process fluid from 95 to 85 °F at a 78 °F entering wet bulb on 14.9 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. The process fluid runs inside a coil under the spray — the evaporative wet-coil model, its two conductances split as the range's own coil volumes say. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving process fluid 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 Baltimore Aircoil. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C11J-98R12) ✓
Cooling tower / heat rejection · 207–345 kW · EU

Baltimore Aircoil FXV-0809B-32D-M closed-circuit cooler (140 tons, 613 kW) — modelled

BAC's FXV-0809B-32D-M — a FXV closed-circuit cooler, 140 nominal tons (613 kW): rated to cool 420 USGPM of process fluid from 95 to 85 °F at a 78 °F entering wet bulb on 26.6 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. The process fluid runs inside a coil under the spray — the evaporative wet-coil model, its two conductances split as the range's own coil volumes say. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving process fluid 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 Baltimore Aircoil. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C11J-98R12) ✓
Cooling tower / heat rejection · 460–767 kW · EU

Baltimore Aircoil FXV-0809A-16D-L closed-circuit cooler (83 tons, 364 kW) — modelled

BAC's FXV-0809A-16D-L — a FXV closed-circuit cooler, 83 nominal tons (364 kW): rated to cool 249 USGPM of process fluid from 95 to 85 °F at a 78 °F entering wet bulb on 22.5 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. The process fluid runs inside a coil under the spray — the evaporative wet-coil model, its two conductances split as the range's own coil volumes say. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving process fluid 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 Baltimore Aircoil. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C11J-98R12) ✓
Cooling tower / heat rejection · 273–455 kW · EU

Baltimore Aircoil FXV-0806B-12D-L closed-circuit cooler (47 tons, 206 kW) — modelled

BAC's FXV-0806B-12D-L — a FXV closed-circuit cooler, 47 nominal tons (206 kW): rated to cool 141 USGPM of process fluid from 95 to 85 °F at a 78 °F entering wet bulb on 19.8 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. The process fluid runs inside a coil under the spray — the evaporative wet-coil model, its two conductances split as the range's own coil volumes say. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving process fluid 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 Baltimore Aircoil. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C11J-98R12) ✓
Cooling tower / heat rejection · 154–257 kW · EU

Baltimore Aircoil FXV-0809B-36D-M closed-circuit cooler (145 tons, 635 kW) — modelled

BAC's FXV-0809B-36D-M — a FXV closed-circuit cooler, 145 nominal tons (635 kW): rated to cool 435 USGPM of process fluid from 95 to 85 °F at a 78 °F entering wet bulb on 26.6 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. The process fluid runs inside a coil under the spray — the evaporative wet-coil model, its two conductances split as the range's own coil volumes say. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving process fluid 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 Baltimore Aircoil. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C11J-98R12) ✓
Cooling tower / heat rejection · 476–794 kW · EU

Baltimore Aircoil FXV-0809A-20D-L closed-circuit cooler (91 tons, 399 kW) — modelled

BAC's FXV-0809A-20D-L — a FXV closed-circuit cooler, 91 nominal tons (399 kW): rated to cool 273 USGPM of process fluid from 95 to 85 °F at a 78 °F entering wet bulb on 22.1 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. The process fluid runs inside a coil under the spray — the evaporative wet-coil model, its two conductances split as the range's own coil volumes say. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving process fluid 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 Baltimore Aircoil. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C11J-98R12) ✓
Cooling tower / heat rejection · 299–498 kW · EU

Baltimore Aircoil FXV-0806B-16D-L closed-circuit cooler (57 tons, 250 kW) — modelled

BAC's FXV-0806B-16D-L — a FXV closed-circuit cooler, 57 nominal tons (250 kW): rated to cool 171 USGPM of process fluid from 95 to 85 °F at a 78 °F entering wet bulb on 19.6 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. The process fluid runs inside a coil under the spray — the evaporative wet-coil model, its two conductances split as the range's own coil volumes say. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving process fluid 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 Baltimore Aircoil. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C11J-98R12) ✓
Cooling tower / heat rejection · 187–312 kW · EU

Baltimore Aircoil FXV-0809B-24T-M closed-circuit cooler (119 tons, 521 kW) — modelled

BAC's FXV-0809B-24T-M — a FXV closed-circuit cooler, 119 nominal tons (521 kW): rated to cool 357 USGPM of process fluid from 95 to 85 °F at a 78 °F entering wet bulb on 26.9 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. The process fluid runs inside a coil under the spray — the evaporative wet-coil model, its two conductances split as the range's own coil volumes say. The model derives the machine's NTU from that one certified point, so it reproduces the rated leaving process fluid 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 Baltimore Aircoil. Published as an example; the figures below are solved from this model.

Examplemodelled from published dataCTI STD-201 (validation C11J-98R12) ✓
Cooling tower / heat rejection · 391–652 kW · EU
‹ Previous1…2930313233…140Next ›

Publishing here

Suppliers publish from the builder's supplier portal — free to register, free to publish. How it works for system suppliers