Heat Controller HTS SERIES manual Water Quality Standards, Expansion Tank and Pump

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HEAT CONTROLLER, INC. WATER-SOURCE HEAT PUMPS

R e s i d e n t i a l S p l i t - 6 0 H z R 4 1 0 A

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Ground-Water Heat Pump Applications -Compressor Section Only

Open Loop - Ground Water Systems

(“Indoor” Compressor Section Only)

The “outdoor” version of the compressor section may not be used with open loop systems due to potential freezing of water piping. Typical open loop piping is shown in Figure

9.Shut off valves should be included for ease of servicing. Boiler drains or other valves should be “tee’d” into the lines to allow acid flushing of the heat exchanger. Shut off valves should be positioned to allow flow through the coax via the boiler drains without allowing flow into the piping system. P/T plugs should be used so that pressure drop and temperature can be measured. Piping materials should be limited to copper or PVC SCH80. Note: Due to the pressure and temperature extremes, PVC SCH40 is not recommended.

Water quantity should be plentiful and of good quality. Consult Table 4 for water quality guidelines. The unit can be ordered with either a copper or cupro-nickel water heat exchanger. Consult Table 4 for recommendations. Copper is recommended for closed loop systems and open loop ground water systems that are not high in mineral content or corrosiveness. In conditions anticipating heavy scale formation or in brackish water, a cupro-nickel heat exchanger is recommended. In ground water situations where scaling could be heavy or where biological growth such as iron bacteria will be present, an open loop system is not recommended. Heat exchanger coils may over time lose heat exchange capabilities due to build up of mineral deposits. Heat exchangers must only be serviced by a qualified technician, as acid and special pumping equipment is required. Desuperheater coils can likewise become scaled and possibly plugged. In areas with extremely hard water, the owner should be informed that the heat exchanger may require occasional acid flushing. In some cases, the desuperheater option should not be recommended due to hard water conditions and additional maintenance required.

Water Quality Standards

Table 4 should be consulted for water quality requirements. Scaling potential should be assessed using the pH/Calcium hardness method. If the pH <7.5 and the Calcium hardness is less than 100 ppm, scaling potential is low. If this method yields numbers out of range of those listed, the Ryznar Stability and Langelier Saturation indecies should be calculated. Use the appropriate scaling surface temperature for the application, 150°F [66°C] for direct use (well water/ open loop) and DHW (desuperheater); 90°F [32°F] for indirect use. A monitoring plan should be implemented in these probable scaling situations. Other water quality issues such as iron fouling, corrosion prevention and erosion and clogging should be referenced in Table 4.

Expansion Tank and Pump

Use a closed, bladder-type expansion tank to minimize mineral formation due to air exposure. The expansion tank should be sized to provide at least one minute continuous run time of the pump using its drawdown capacity rating to prevent pump short cycling. Discharge water from the unit is not contaminated in any manner and can be disposed of in various ways, depending on local building codes (e.g. recharge well, storm sewer, drain field, adjacent stream or pond, etc.). Most local codes forbid the use of sanitary sewer for disposal. Consult your local building and zoning department to assure compliance in your area.

The pump should be sized to handle the home’s domestic water load (typically 5-9 gpm [23-41 l/m]) plus the flow rate required for the heat pump. Pump sizing and expansion tank must be chosen as complimentary items. For example, an expansion tank that is too small can causing premature pump failure due to short cycling. Variable speed pumping applications should be considered for the inherent energy savings and smaller expansion tank requirements.

Motorized Modulating Water Control Valve

Note the placement of the water control valve in figure 9. Always maintain water pressure in the heat exchanger by placing the water control valve(s) on the discharge line to prevent mineral precipitation during the off-cycle. Pilot operated slow closing valves are recommended to reduce water hammer. If water hammer persists, a mini-expansion tank can be mounted on the piping to help absorb the excess hammer shock. This valve regulates the flow using entering and leaving water delta-T of the system. Entering and leaving water temperature is read on the communicating thermostat or configuration/diagnostic service tool. Further details on valve operation are described later in this manual.

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Heat Controller, Inc. Water-Source Heating and Cooling Systems

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Contents GeoLogix HTS Series Split System Two Stage, 2-5 Tons Table of Contents Model Nomenclature for Indoor Split Series Safety SafetyGeneral Information Equipment Selection GeneralIndoor Coil Selection HTS GeoLogix WDG/MWG Indoor Section Matches for Ahri RatingsAir Handler Selection Example Selecting Air HandlerInstallation Removing Existing Condensing Unit Where ApplicableAir Handler and Coil Installation Indoor Compressor Section LocationHTS Installation Piping InstallationGround-Loop Heat Pump Applications Flushing the Earth LoopAntifreeze Approximate Fluid Volume U.S. gal. L per 100’ of Pipe Antifreeze Percentages by Volume100% USP food grade Propylene Glycol EthanolWater Quality Standards Expansion Tank and PumpMotorized Modulating Water Control Valve Ground-Water Heat Pump Applications 026-049 Sizes 064Closed OpenWater Quality Standards Water Quality StandardsRefrigeration Installation Line Set InstallationInstalling the Indoor Coil and Lineset Add-On Heat Pump ApplicationsEvacuation and Charging the Unit WDG Evacuation Of The Lineset And Coil Charging The SystemTotal Charge Method Checking Superheat and Subcooling Determining Superheat Determining Sub-CoolingTypical HWG Installation Indoor Compressor Section Hot Water GeneratorInstallation Water Tank PreparationHWG Water Piping Water Tank RefillInitial Start-Up HWG Water Piping Sizes and LengthElectrical Line Voltage GeoMax 2 HTS Electrical DataLow Water Temperature Cutout Selection Accessory ConnectionsElectrical Low Voltage Terminal StripElectrical Thermostat Wiring Thermostat InstallationThermostat Connections DXM2 Controls Unit OperationDXM2 Layout and Connections Indoor Split HTS024-060 Wiring Diagram 208-230-/60/1 DXM2 Unit Commissioning And Operating Conditions Operating LimitsBuilding Operating Limits Commissioning ConditionsUnit Start-up Procedure Unit Start-Up and Operating ConditionsUnit and System Checkout Unit Start-Up Procedure Manual OperationUnit Operating Conditions GPMTon Preventive Maintenance Basic Troubleshooting Information Sensor Nominal resistance at various temperaturesAdvanced Troubleshooting and Configuration Information System ConfigurationService Mode DXM2 Process Flow Chart StartFunctional Troubleshooting Fault Htg Clg Possible Cause SolutionIFC Fault Code Performance Troubleshooting Symptom Htg Clg Possible Cause SolutionTroubleshooting Form \SHS i d e n t i a l S p l i t 6 0 H z R 4 1 0 a Wellworth Ave., Jackson, Michigan 49203 Ph -0787-2100 Fax

HTS SERIES specifications

The Heat Controller HTS Series is a cutting-edge solution for climate control, designed to offer superior performance and unmatched comfort. This advanced heating and cooling system stands out in today's market due to its innovative technologies and user-friendly features.

One of the main features of the HTS Series is its energy efficiency. Equipped with the latest inverter technology, it adjusts the compressor speed to maintain the desired temperature while consuming less energy. This not only reduces operational costs but also minimizes the carbon footprint, making it an environmentally friendly choice.

Another standout characteristic of the HTS Series is its precise temperature control. The system utilizes advanced sensors to monitor indoor conditions in real-time, ensuring that you experience consistent comfort throughout your space. The ability to quickly react to changes in temperature helps maintain an optimal environment, regardless of external weather fluctuations.

The HTS Series also boasts a robust air filtration system. With multiple filter layers, including HEPA filters, it effectively captures dust, allergens, and other airborne pollutants. This feature makes the HTS Series an excellent choice for families with allergies or respiratory concerns, promoting a healthier indoor atmosphere.

Furthermore, the heat pump technology incorporated in the HTS Series allows for both heating and cooling capabilities. In cooler months, it efficiently extracts heat from the outside air to warm your living spaces, while during the summer, it reverses the process to provide refreshing cool air. This dual functionality enhances versatility, making it suitable for various climates.

User convenience is paramount in the HTS Series design. It comes with a smart thermostat that enables remote operation via a mobile app, providing users with flexible control over their environment. Additionally, the intuitive interface and programmable settings allow for seamless customization, adapting to your daily schedule and preferences.

Durability and quiet operation are also key attributes of the HTS Series. Built with high-quality materials and components, it ensures long-lasting performance, while its sound-dampening technologies provide whisper-quiet operation, enhancing the comfort of your home or office space.

In summary, the Heat Controller HTS Series represents the pinnacle of home heating and cooling technology. With its energy efficiency, precise temperature control, superior air filtration, dual functionality, and user-friendly features, it stands as a leading choice for those seeking reliable and effective climate solutions. This series not only enhances comfort but also supports a sustainable lifestyle for the future.