Air-to-Water Heat Pumps

4-Pipe Heat Pump: Operating Modes and Turndown Explained

EXINDA 4-pipe heat pump laboratory unit with operating modes and part-load control guide title on the left.

A 4-pipe heat pump can serve separate chilled-water and hot-water circuits, with simultaneous heating and cooling available on the applicable EXINDA configuration. The selection task is to match these operating modes and the minimum stable output to the building's actual loads.

EXINDA supports commercial air-to-water heat pump selection for North American HVAC consultants, contractors and distribution partners. This guide explains how to turn questions about operating modes and turndown into a clear equipment selection and commissioning brief.

Which 4-pipe heat pump operating modes are available?

The EXINDA configuration described here has separate cooling and heating water heat exchangers. Each has a dedicated function.

Mode Cooling water heat exchanger Heating water heat exchanger
Cooling only Produces chilled water No active hot-water production
Heating only No active chilled-water production Produces hot water
Simultaneous cooling and heating Produces chilled water Produces hot water

This design does not switch both water heat exchangers into cooling or both into heating. Match these three operating modes to the intended project before comparing capacities.

First distinguish water circuits from refrigerant circuits

A water circuit carries chilled or hot water to the building. A refrigerant circuit transfers energy within the heat pump. They are different parts of the system.

When a specification asks whether “both circuits can heat,” label which circuits it means. Use a hydraulic schematic for the chilled-water and hot-water connections, and the equipment documentation for refrigerant-circuit operation. This avoids selecting equipment on an ambiguous description.

Match simultaneous operation to overlapping loads

Start with the periods when the building needs cooling and heating together. For example, internal zones may need cooling while perimeter zones need heating. Record the two loads during the same period, rather than adding peaks that occur at different times.

Provide entering and leaving water temperatures, design flows and outdoor conditions. In simultaneous operation, evaluate the cooling and heating outputs as a paired operating point. Separate heating-only and cooling-only ratings do not automatically describe simultaneous performance.

Also define what should happen when one demand falls away. The equipment selection and control sequence should cover cooling-dominant, heating-dominant and overlapping demand, using the operating envelope of the selected configuration.

Understand module and circuit turndown

Turndown compares a stated maximum capacity with the minimum stable capacity on the same basis:

Turndown ratio = stated maximum capacity ÷ minimum stable capacity.

A complete module may combine compressor modulation with refrigerant-circuit staging. Its minimum output can therefore differ from the minimum output expressed as a percentage of an individual circuit's rating.

Equipment level What to request
Individual refrigerant circuit Minimum stable output and the capacity basis for that circuit
Complete module Minimum stable module output and the active-circuit arrangement
Multiple-module plant Minimum output with the intended module and circuit staging sequence

Review these figures in the required heating, cooling or simultaneous mode and at the relevant conditions. Do not use compressor speed alone as a substitute for delivered-capacity data.

Use minimum output to assess low-load operation

Compare the lowest sustained building load with the minimum stable output of the smallest intended active equipment combination. If output exceeds demand, review module staging, active water volume, zoning and temperature-control settings together.

Installing additional modules does not automatically improve low-load performance. The plant must be able to stage them appropriately, while maintaining the required water circulation and respecting minimum run and off times.

EXINDA can review the selected module's capacity information alongside the proposed sequence, helping the project team define a suitable operating arrangement.

Verify the selected sequence during commissioning

  1. Check cooling-only and heating-only operation against the documented sequence.
  2. Where conditions allow, establish simultaneous demand and record water temperatures and flows on both sides.
  3. Reduce demand and observe the intended capacity reduction and circuit or module staging.
  4. Observe demand transitions, water-temperature control, run times and any alarms.
  5. Record the final settings and results for the installation and service teams.

If site conditions do not permit a particular mode test, record that test as outstanding and arrange it when the required conditions are available.

Frequently asked questions

Does four-pipe mean both water heat exchangers can heat?

No. The configuration described here uses dedicated cooling and heating water heat exchangers. It provides cooling only, heating only or simultaneous cooling and heating.

Is circuit turndown the same as module turndown?

No. Each uses a different capacity basis. Request the minimum stable output at the circuit, module and plant levels relevant to the selection.

Does a large turndown ratio guarantee no cycling?

No. Compare minimum output with the actual load and review water volume, controls and staging together.

Request an EXINDA operating-mode and part-load review

Send the project location, heating and cooling loads, overlapping and minimum demand, water temperatures, electrical supply and proposed module arrangement to info@exindagroup.com. EXINDA can review the applicable configuration and identify the performance and control information needed for selection.

Explore the EXINDA commercial heat pump and chiller range.

En lire plus

EXINDA air-to-water heat pump beside a wooden building in a snowy setting
EXINDA heat pump short cycling guide with factory photograph of copper pipework and compressor components

Collaborez avec EXINDA

Fabricant mondial d’équipements CVC et fournisseur de solutions sur mesure

EXINDA est un fabricant mondial d’équipements CVC spécialisé dans les pompes à chaleur, les systèmes de ventilation et les solutions climatiques sur mesure pour les applications résidentielles et tertiaires.

Nous collaborons avec des distributeurs, des ingénieurs, des installateurs et des partenaires OEM dans le monde entier.

1. Distributeurs et revendeurs CVC
Nous accompagnons nos partenaires dans le monde entier avec des solutions fiables de pompes à chaleur et de ventilation.

2. Bureaux d’études et installateurs
Nous fournissons la documentation technique, une aide à la sélection des produits et un accompagnement des projets.

3. Partenaires OEM / ODM
Nous proposons des solutions CVC sur mesure, la fabrication en marque propre et un accompagnement du développement des produits.