Edwards Coils Unclaimed
13 listing(s) in HVAC Builder's catalog from Edwards Coils' published data, selectable in the builder and solved with the catalog's own figures. This page is listed by HVAC Builder from published data; Edwards Coils has not claimed it.
- Pipe-in-pipe exchangers — 13
Are you Edwards Coils?
Claim this page from the app's Company page: register as a supplier (company name and contact email), open the Profile sub-tab and claim the brand. We confirm each claim by hand before it takes effect; from then the page and its listings are yours — attributed to your company, quote requests for designs that use them reach whoever you name with the design attached, and any listing is yours to edit or withdraw. No charge, no commission. Open the Company page
Listings
Showing 1–13 of 13
Edwards Coils BEC-5-F coaxial heat-pump evaporator (58.5 MBH, 70 → 62 °F water at 45 °F suction, R-22)
Coaxial evaporator — 17.1 kW from water 21.1 to 16.7 °C, evaporating at 7.2 °C, 0.92 kg/s.
Edwards Coils HEC-1 1/2-F / SEC-1 1/2-F coaxial heat-pump evaporator (23.4 MBH, 70 → 62 °F water at 45 °F suction, R-22)
Coaxial evaporator — 6.9 kW from water 21.1 to 16.7 °C, evaporating at 7.2 °C, 0.37 kg/s.
Edwards Coils HEC-1/2-F / SEC-1/2-F coaxial heat-pump evaporator (6.2 MBH, 70 → 62 °F water at 45 °F suction, R-22)
Coaxial evaporator — 1.8 kW from water 21.1 to 16.7 °C, evaporating at 7.2 °C, 0.10 kg/s.
Edwards Coils HEC-1-F / SEC-1-F coaxial heat-pump evaporator (12.0 MBH, 70 → 62 °F water at 45 °F suction, R-22)
Coaxial evaporator — 3.5 kW from water 21.1 to 16.7 °C, evaporating at 7.2 °C, 0.19 kg/s.
Edwards Coils HEC-2-F / SEC-2-F coaxial heat-pump evaporator (29.0 MBH, 70 → 62 °F water at 45 °F suction, R-22)
Coaxial evaporator — 8.5 kW from water 21.1 to 16.7 °C, evaporating at 7.2 °C, 0.46 kg/s.
Edwards Coils HEC-3/4-F / SEC-3/4-F coaxial heat-pump evaporator (8.8 MBH, 70 → 62 °F water at 45 °F suction, R-22)
Coaxial evaporator — 2.6 kW from water 21.1 to 16.7 °C, evaporating at 7.2 °C, 0.14 kg/s.
Edwards Coils SEC-10-F coaxial heat-pump evaporator (136.8 MBH, 70 → 62 °F water at 45 °F suction, R-22)
Coaxial evaporator — 40.1 kW from water 21.1 to 16.7 °C, evaporating at 7.2 °C, 2.15 kg/s.
Edwards Coils SEC-2 1/2-F coaxial heat-pump evaporator (34.2 MBH, 70 → 62 °F water at 45 °F suction, R-22)
Coaxial evaporator — 10.0 kW from water 21.1 to 16.7 °C, evaporating at 7.2 °C, 0.54 kg/s.
Edwards Coils SEC-3-F coaxial heat-pump evaporator (38.0 MBH, 70 → 62 °F water at 45 °F suction, R-22)
Coaxial evaporator — 11.1 kW from water 21.1 to 16.7 °C, evaporating at 7.2 °C, 0.60 kg/s.
Edwards Coils SEC-4-F coaxial heat-pump evaporator (50.0 MBH, 70 → 62 °F water at 45 °F suction, R-22)
Coaxial evaporator — 14.7 kW from water 21.1 to 16.7 °C, evaporating at 7.2 °C, 0.79 kg/s.
Edwards Coils SEC-5-F coaxial heat-pump evaporator (68.4 MBH, 70 → 62 °F water at 45 °F suction, R-22)
Coaxial evaporator — 20.0 kW from water 21.1 to 16.7 °C, evaporating at 7.2 °C, 1.08 kg/s.
Edwards Coils SEC-6-F coaxial heat-pump evaporator (76.0 MBH, 70 → 62 °F water at 45 °F suction, R-22)
Coaxial evaporator — 22.3 kW from water 21.1 to 16.7 °C, evaporating at 7.2 °C, 1.20 kg/s.
Edwards Coils SEC-8-F coaxial heat-pump evaporator (100.0 MBH, 70 → 62 °F water at 45 °F suction, R-22)
Coaxial evaporator — 29.3 kW from water 21.1 to 16.7 °C, evaporating at 7.2 °C, 1.58 kg/s.
How the model reads against Edwards Coils' data
| Coaxial exchanger model, one conductance from one rated point, against a smaller maker's heat-pump chart | 102 over 13 sizes | every rating reproduced exactly; the other approaches read −3.0 to +3.1 % of the printed duty (mean +0.7 %, RMS 1.9 %), the suction within 0.6 °F. The miss has one shape on every size, because every row of the chart is one curve times a size factor: the chart's own conductance is 4–5 % above the rating's at a 6 °F approach, 3 % below it at 10–11 °F and back at 20 °F — not the steady rise with flow a water film alone would give — and a fixed conductance is held to it approach by approach |
From the validation page; every row is held by a test.
Listed from published data with the source named on every entry; a listing's figures are the manufacturer's, the model that runs them is ours. Solver results never depend on who has claimed what.