SustainE(Sustainable Energy)

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1 SustainE(Sustainable Energy) Air Source Heat Pump Water to water Heat Pump Total Energy Heat Pump/Chiller Integrated Heat Pump AHU Swimming Pool Heat Pump Remote Condenser / Radiator H e n n e x S u s t a i n a bl e E n e rg y L t d

2 Content 1. Benefits & Applications P.2 ~ P.3 2. Nomenclature & Features P.4 ~ P.5 3. Air to Water Heat Pump P.6 ~ P.7 4. Water to Water Heat Pump P.8 ~ P Total Energy Heat Pump P.12 ~ P Integrated Heat Pump AHU P Correction factors P Swimming pool Heat Pump P.18 ~ P Remote Condenser / Radiator P.24 ~ P Other Products P.26 ~ P.27 SustainE Heat Pumps - are packed with sophisticated technology, incredibly simple to be installed and operated. They are designed for connection to central heating system as well as individual operation. These heat pumps offer astonishing savings and big environmental benefits. Energy Saving - it generally save between 60% to 80% as compare to traditional hot water heating system. Our heat pumps reduce energy consumption and carbon emission, they are classified as renewable energy. Air-conditioning products - are at the cutting edge of low energy performance and enable owners to meet energy consumption and emissions targets long after they are built, an investment in the future. 2

3 Benefits and Applications Benefits of SustainE Heat Pumps No combustion and explosive gases. No risk of explosion or carbon monoxide. No gas connections or fuel tanks. No local pollution. Low maintenance cost. Provides all of your heating and hot water needs. Warranty assured with one year parts and labor. Applications Sports and Health care facilities. Hotels, Club house, SPA and Salon. Swimming pools (dehumidification and water heating). Hospitals and Schools. Large commercial projects. Residential houses and apartments. Food and manufacturing industry. Save up to 80% in energy costs against conventional systems. Large reduction on CO2 emissions. 15+ year's system lifetime. Hot water heating and space heating. Swimming pools dehumidification and heating. Always available whatever the weather, day or night. Hot water up to 65 C, prevent legionnaire disease (severe respiratory illness). Couple Heat Pump with traditional heating technology to complement the required outputs. How a heat pump works Air to water and Water to water Heat Pumps takes energy from the air/water and raise it to a higher temperature, using a process which is similar to a reverse refrigeration process. A Heat Pump absorbs the heat energy from (air or water) to another location (a hot water tank or pool). Its principle uses the refrigeration process to transfers low temperature energy (device called evaporator heat exchanger) to a refrigeration loop, the compressor compresses the gases (heat) to a high temperature and transfers this heat to the hot water and heating distribution system (device called condenser heat exchanger). The refrigerant circulates and an expansion valve lowers the pressure and the refrigerant becomes cold again. This process repeats continuously such that 1 unit of input energy plus absorbed 3 units of energy can product 4 units of heat energy. 3

4 Heat Pump Operation Selection Chart Operating Mode Heat Pump Type Heating Mode Heat Recovery Mode Cooling Mode High Cooling & Small Heating Mode Small Cooling & High Heating Mode Air to water O X X X X X Water to water O O O X X X Total energy O O O O O X Dehumidification & Heat Recovery Mode Swimming pool O O O O O O Heat Pump AHU O O O O O O Nomenclature H W 50 SL 25 x 2M No. of Compressor / Module Compressor (HP) SL Scroll Compressor SW Screw Compressor Total Horse Power (HP) A Air to water W Water to Water E Total Energy S Swimming Pool U Air Handling Unit Heat Pump 4

5 Features Double skin hot water heat exchanger (Selectable option) Double wall hot water heat exchanger is being used in application with particularly stringent safety requirements, e.g. food & pharmaceutical. In the event of a leak, water or refrigerant seeps out between the vented double walls to the atmosphere, thus gives visual alarm for attention. High efficiency compressors All units are equipped with high efficiency scroll or screw compressors, with R407C, R134a, R410a or R404a to cope with environmental regulations. Refrigerant circuits are designed to guarantee reliable system operation. Safety protection Safety devices are built into the refrigeration circuit to guard against abnormal unit operation. Compressor overload protection, high and low pressure cutout switches. Low water temperature sensor is located at the cooler to protect the heat exchanger from freezing. Each compressor is protected by individual branch fusing. Additional protection is provided by thermal overloads, high discharged gas temperature switch. Suction and discharge maintenance valves are provided for manifold gauge connections to facilitate servicing. Compressors are mounted on vibration isolators. Intelligent Control System Electronic controller and microprocessor provide maximum system performance. Field connection to BMS or CCMS system are available for integration to building systems. Modular design reduce installation space Small modular racking design allows for multiple unit installation, require less space in tight location. Cabinet is constructed of heavy gauge galvanized sheet metal and coated with corrosion resistive powder paint. Features Cost saving in operation. Longer life span of unit can be expected. Simple installation, (optional) built-in water pumps can be provided. High COP. Less emission of waste heat and CO2, reduce global warming. ISO 9001:2000 Quality control is the highest priority in our management objectives. We ensure good quality through implementation of ISO procedures. All units are tested to standard in every process of manufacturing. 5

6 Air to Water Heat Pump Air Source Heat Pumps absorb heats from the outside air and raise it to a higher temperature, using a process which is similar to a reverse refrigeration process. Air Source Heat Pumps can be used in many more applications including large commercial projects, swimming pools, sports utilities, hotels, club house, SPA, health care facilities, schools, apartments and food industry. Air Source Heat Pump run on electricity, it helps prevent global warming because no wasted heat discharged to outdoor as compare to gas or oil boilers. Air Source Heat Pumps can be add-on as supplementary source of heat to pre-heat water before enter to existing gas or oil boilers. They can also be used in commercial building to recover heat from exhaust air, or as a dehumidifier to remove moisture in indoor swimming pool, and transfer the recovered heat to incoming fresh air or hot water. Exhaust (ventilation) air is a common heat source for heat pumps in residential and commercial buildings. The Heat Pump recovers heat from the ventilation air, and provides water and/or space heating. For large buildings exhaust air heat pumps are often used in combination with air-to-air heat recovery. 6

7 Air to Water Heat Pump Performance Data Item Model Air to Water Heat Pump Model HA series Heating Capacity kw Total Input Power kw Running Ampere A Compressor Qty No No. of Steps 100% 50%, 100% 25%, 50%, 75%, Type & Starting method Power Supply Scroll Compressor Direct Drive 380V / 3 Phase / 50 Hz Refrigerant R407C (R134a is available as option) Hot water flow rate L/s H Dimension (mm) W L Weight kg Notes: 1. For refrigerant R407C, hot water inlet temperature 50 C, outlet temperature 55 C. 2. For refrigerant R134a, hot water inlet temperature 60 C, outlet temperature 65 C. Contact our representative for performance data. 3. Air to water heating capacity base on winter air temperature at 13 C. 4. Multiple module construction are available as option, please specify when ordering. 5. Contact our representative for detail technical performance. 6. The above data are subjected to changes without prior notice. 7

8 Water to Water Heat Pump Water to Water Heat Pumps (Water Source Heat Pump) Cooling and heating account for more than 60% of the energy used in building, make it the largest energy expense for most owners. A Water to Water Heat Pump provides both cooling and heating and offer the most benefit of delivering more useful energy than consume. The Water to Water Heat Pump contains a source-side water-to-refrigerant heat exchanger (evaporator), and a loadside refrigerant-to-water (condenser) heat exchanger. The source-side is typically connected to the central airconditioning system (chilled water) and the load-side connected to the hot water system. During the refrigerant cycle, heat is transferred from the source-side heat exchanger to the load-side heat exchanger. The source-side provides chilled water to central air-conditioning plant for cooling and simultaneously the load-side provides hot water to the domestic hot water system or pool water heating. Water to Water Heat Pump make use of the building cooling load as a heat source for hot water heating, it reclaim the heat instead of reject to outdoor, thus achieves added efficiency, energy saving and kind to the environment. Many industries need space cooling in their process, and often have a significant hot water demand in the temperature range from 40~65 degree C for washing, sanitation and cleaning purpose. Water to Water Heat Pump can be a part of an integrated system that provides both cooling and heating. Water to Water Heat Pump meets space cooling and hot water heating in building, typical applications include large hotels, sports utilities, club house, SPA, health care facilities, and food industry. 8

9 Water to Water Heat Pump Performance Data Item Model Water to Water Heat Pump Model HW series SL08 SL10 SL12 SL15 SL20 SL25 R134 R407 R134 R407 R134 R407 R134 R407 R134 R407 R134 R407 Heating Capacity kw Cooling Capacity kw Total Input Power kw Running Ampere A Compressor Qty No No. of Steps No Type & Starting method Power Supply Scroll Compressor Direct Drive 380V / 3 Phase / 50 Hz Refrigerant R134a (R407C is available as option) Hot water flow rate L/s Chilled water flow rate L/s H Dimension (mm) W L Weight kg Notes: 1. For refrigerant R407C, hot water inlet temperature 50 C, outlet temperature 55 C. 2. For refrigerant R134a, hot water inlet temperature 60 C, outlet temperature 65 C. 3. For both R407C and R134a, chilled water inlet temperature at 12 C, outlet temperature at 7 C. 4. Contact our representative for detail technical performance. 5. The above data are subjected to changes without prior notice. 9

10 Water to Water Heat Pump Performance Data Model No. of Modules Multiple Module Performance Data Model HW series (R134a) 1M 2M 3M 4M 5M 6M 7M 8M Heating Capacity (kw) SL08 Cooling Capacity (kw) Total Input Power (kw) Heating Capacity (kw) SL10 Cooling Capacity (kw) Total Input Power (kw) Heating Capacity (kw) SL12 Cooling Capacity (kw) Total Input Power (kw) Heating Capacity (kw) SL15 Cooling Capacity (kw) Total Input Power (kw) Heating Capacity (kw) SL20 Cooling Capacity (kw) Total Input Power (kw) Heating Capacity (kw) SL25 Cooling Capacity (kw) Total Input Power (kw) Notes: 1. For refrigerant R407C, hot water inlet temperature 50 C, outlet temperature 55 C. 2. For refrigerant R134a, hot water inlet temperature 60 C, outlet temperature 65 C. 3. For both R407C & R134a, chilled water inlet temperature at 12 C, outlet temperature at 7 C. 4. Multiple module performance data for R407C can be provided upon request. 5. Contact our representative for detail technical performance. 6. The above data are subjected to changes without prior notice. 10

11 Water to Water Heat Pump Performance Data Item Model Water to Water Heat Pump Model HW series SW75 SW81 SW93 SW113 SW110 SW150 SW162 SW186 SW226 Heating Capacity kw Cooling Capacity kw Total Input Power kw Running Ampere A Compressor Qty No No. of Steps No Type & Starting method Power Supply Refrigerant Screw Compressor 380V / 3 Phase / 50 Hz R134a (R407C is available as option) Hot water flow rate L/s Chilled water flow rate L/s H Dimension (mm) W L Weight kg Notes: 1. Hot water inlet temperature 50 C, outlet temperature 55 C. For refrigerant R407C. 2. Hot water inlet temperature 60 C, outlet temperature 65 C. For refrigerant R134a. 3. Chilled water inlet temperature at 12 C, outlet temperature at 7 C. 4. Contact our representative for detail technical performance. 5. The above data are subjected to changes without prior notice. 11

12 Total Energy Heat Pump Total Energy Heat Pump A Total Energy Heat Pump is a combination of Air Source Heat Pump and Water Source Heat Pump, it serve as a normal air cooled chiller unit and hot water heat pump as well. Total Energy Heat Pump is capable to produce chilled water and hot water to meet both the cooling and heating demand simultaneously for the air-conditioning system and hot water system. The Total Energy Heat Pump is designed to cool chilled water from 12.5 degree C to 7 degree C and to heat hot water up to 65 degree C simultaneously, it consist of compressors, air heat exchanger (condenser coil), two nos. of water-side heat exchangers for chilled water and hot water respectively, necessary numbers of electronic expansion valves and intelligent electronic refrigerant flow control and all necessary accessories. There are five operating modes to cater for the demand and priority on cooling and heating loads: Heating Mode - An air source heat pump to produce hot water when there is no cooling requirement. Heat recovery Mode - A water to water heat pump to provide chilled water as well as uncontrolled hot water simultaneously. Cooling Mode - An air-cooled package chiller when there is no heating requirement. High Cooling and Small Heating Mode - The energy absorbed from chilled water side is partially recovered by the heat exchanger and transfer to hot water side, the surplus heat energy is rejected to the outdoor via the condenser at the same time. Small Cooling and High Heating Mode - The energy absorbed from chilled water side is fully recovered by the heat exchanger and transfer to hot water side, and at the same time the air heat exchanger absorbs heat energy from outdoor air to provide extra heat energy to meet the total heat load. 12

13 Total Energy Heat Pump Performance Data Item Model Total Energy Heat Pump Model HE series Heating Capacity (Air to Water) Cooling Capacity (Air to Water ) Heating Capacity (Water to Water) Cooling Capacity (Water to Water) kw kw kw kw Max. Input Power kw Max. Running Ampere A Compressor Qty No No. of Steps 100% 50%, 100% 25%, 50%, 75%, Type & Starting method Power Supply Refrigerant Scroll Compressor Direct Drive 380V / 3 Phase / 50 Hz R134a (R407C is available as option) Hot water flow L/s Chilled water flow L/s Heating water flow L/s H Dimension (mm) W L Weight kg Notes: 1. For refrigerant R407C, hot water inlet temperature 50 C, outlet temperature 55 C. Contact our representative for performance data. 2. For refrigerant R134a, hot water inlet temperature 60 C, outlet temperature 65 C. 3. Air to water cooling capacity based on summer air temperature at 33 C. 4. Air to water heating capacity based on winter air temperature at 13 C. 5. Water to water capacity based on chilled water inlet / outlet temperature at 12 C / 7 C (for both R407C & R134a). 6. Multiple modules construction are available as option, please specify when ordering. 7. Contact our representative for detail technical performance. 8. The above data are subjected to changes without prior notice. 13

14 Total Energy Heat Pump Performance Data Item Model Total Energy Heat Pump Model HE series Heating Capacity (Air to Water) Cooling Capacity (9) (Air to Water ) Heating Capacity (Water to Water) Cooling Capacity (10) (Water to Water) kw kw kw kw Max. Input Power kw Max. Running Ampere A Compressor Qty No No. of Steps 100% 50%, 100% 25%, 50%, 75%, Type & Starting method Power Supply Refrigerant Hot water flow (Water-water) Scroll Compressor Direct Drive 380V / 3 Phase / 50 Hz R407C L/s Chilled water flow L/s Heating water flow L/s H Dimension (mm) W L Weight kg Notes: 1. For refrigerant R407C, hot water inlet temperature 50 C, outlet temperature 55 C. Contact our representative for performance data. 2. For refrigerant R134a, hot water inlet temperature 60 C, outlet temperature 65 C. 3. Air to water cooling capacity based on summer air temperature at 33 C. 4. Air to water heating capacity based on winter air temperature at 13 C. 5. Water to water capacity based on chilled water inlet / outlet temperature at 12 C / 7 C (for both R407C & R134a). 6. Multiple modules construction are available as option, please specify when ordering. 7. Contact our representative for detail technical performance. 8. The above data are subjected to changes without prior notice. 9. For Air cooled chiller, i.e. cooling only no heating function, the model designation is HACH-xx. 10. For Water cooled chiller, i.e. cooling only no heating function, the model designation is HWCH-xx. 14

15 Total Energy Heat Pump Performance Data Item Model Total Energy Heat Pump Model HE series Heating Capacity (Air to Water) Cooling Capacity (9) (Air to Water ) Heating Capacity (Water to Water) Cooling Capacity (10) (Water to Water) kw kw kw kw Max. Input Power kw Max. Running Ampere A Compressor Qty No No. of Steps Type & Starting method Power Supply Refrigerant Hot water flow (Water-water) Scroll Compressor Direct Drive 380V / 3 Phase / 50 Hz R407C L/s Chilled water flow L/s Heating water flow L/s H Dimension (mm) W L Weight kg Notes: 1. For refrigerant R407C, hot water inlet temperature 50 C, outlet temperature 55 C. Contact our representative for performance data. 2. For refrigerant R134a, hot water inlet temperature 60 C, outlet temperature 65 C. 3. Air to water cooling capacity based on summer air temperature at 33 C. 4. Air to water heating capacity based on winter air temperature at 13 C. 5. Water to water capacity based on chilled water inlet / outlet temperature at 12 C / 7 C (for both R407C & R134a). 6. Multiple modules construction are available as option, please specify when ordering. 7. Contact our representative for detail technical performance. 8. The above data are subjected to changes without prior notice. 9. For Air cooled chiller, i.e. cooling only no heating function, the model designation is HACH-xx. 10. For Water cooled chiller, i.e. cooling only no heating function, the model designation is HWCH-xx. 15

16 Integrated Heat Pump - Air Handling Unit Roof Cover of outdoor application (option) Optional Heating coil(water) DX cooling coil Hot Water Out Hot Water In Floor-mount type Refrigerant pipe(field Install) Ceiling-mount type Hot water In/out Chilled water In/out Optimization of cool air and hot water SustainE Heat Pump Air Handle Unit recovers heat from air conditioning system application. Air side application can be indoor air-conditioning Air Handling Unit or fresh air intake pre-treat Primary Air Handling Unit. Floor mount type and ceiling mount type are available for selection. Please contact our representative for more detail. Item Model Heat Pump Air Handling Unit Model HU Series Cooling Capacity kw Heating Capacity kw Total Input Power kw Air Flow L/s Notes : 1. External static pressure requirement to be specified by client. 2. Please contact our representative for detail technical data sheet. 16

17 Correction factor at other operating conditions Water to water Heat Pump correction factors Chilled water inlet tem- Hot water outlet tem- 10 C 11 C 12 C 13 C 14 C 15 C Cooling Heating Cooling Heating Cooling Heating Cooling Heating Cooling Heating Cooling Heating Heat pump with R134a refrigerant 40 C C C C C C Heat pump with R407C refrigerant 40 C C C C Air to water Heat Pump correction factors Type of Hot water outlet temperature 40 C 45 C 50 C 55 C 60 C 65 C R134a R407C Cooling / heating capacity at other conditions = Nominal capacity x Correction factor 17

18 Swimming Pool Heat Pump FEATURES Refrigeration design Dual refrigerant circuit design allows staging to minimize energy consumption and optimize energy recovery. The system combines of air coiling coils, reheat coils, water (pool) condensers or remote condensers. Circuit A recovers the energy to the air or water, it balance the heat lost due to evaporation on water surface. Circuit B allows the system to recover energy, or absorb heat from ambient and deliver it to the space in the winter but reject the heat for cooling in the summer. The dual circuit design provides simultaneous recovery of heat to water and air, its independent refrigerant circuit provide versatile capability to control indoor air quality accurately. DX Cooling / Reheat Coils All cooling and reheat air coils have a specifically designed epoxy coat or E-coat to protect Aluminum and copper surfaces. As unprotected coils corrodes, heat transfer capacity diminished and cooling capacity reduced, extend maintenance time is required to repair the system. Coils are protected from corrosion without affecting heat transfer, is ideal for application in environments with a high chloramines compounds, hazardous commercial areas and industrial sites. Condensers (refrigerant to water heat exchangers) All condensers are chemically cleanable. Condensers are coaxial tube-in-tube or shell and tube type for maximum heat transfer efficiency and performance. Inner water tubes are either Cupro-nickel or Titanium (selectable option) with large internal diameters for reduced water-side pressure drops. Double skin inner tube are available as option. Outer tubes or shell are steel, painted for corrosion protection. Filters All units come with standard 25mm thick efficiency washable filters. Optional filters are available. Filters are removable from the sides of the frames through filter access panels. Cooling or Heating Water Coils (Optional) When chilled water or hot water is available, water coils can be factory-installed upstream of the supply fan. The coil has a factoryinstalled and wired three-way flow control valve and is controlled by the unit s control system. Casing and Framework Heavy-duty structural support with Aluminum alloy framework. All metal frame and panels use a special corrosion resisting galvanize steel with a powder coat finish on exterior, a tough coating that resists rusting. The frameworks are designed for ease of disassembly and re-assembly. All panels are insulated with 50mm thick high density PU insulation for thermal and acoustic performance. All components are located for ease of inspection and service. Major components are out of the unit s air stream to allow maintenance while the unit is in operation. Service access is through the removal of access panels located on the unit. All refrigerant components are accessible from the front of the unit for service and maintenance. The unit can be installed either indoors or outdoors. Units intended for outdoor installation are factory equipped with additional cover, heavy duty weather sealing. 18

19 Swimming Pool Heat Pump Refrigerant components are accessible from the front of the unit for service Ventilation Fans Ventilation fans contain either one or two forward curved medium-pressure class fan assemblies depending on the model size. The fans are double inlet double width, welded assemblies statically and dynamically balanced. The fan is isolated from the main module by the use of springs which provide excellent vibration isolation and quiet operation. The modules are bolted together with bolts and locking nuts. Each fan is powered by its own motor and drive assembly. Motors are mounted on individual motor platforms for stable operation and belt tension adjustment. Remote Air-Cooled Condenser (Optional) It can be equipped with a properly sized high efficiency air-cooled condenser rejects excess heat to the outdoors when in cooling operation. There is also optional remote water condenser available, the sensible and latent heat recovered in the air-conditioning is rejected to the water condenser if pool water temperature requirement is satisfied. Indoor Pool Dehumidification A well-designed and installed dehumidification system controls both temperature and humidity levels. A typical residential or commercial indoor pool conditions is: The water temperature is set at 24 C to 30 C. The air temperature is set at two degrees above the pool water temperature. The relative humidity is maintained between 50% and 60%. Humidity control, ventilation, air distribution, pool water chemistry and evaporation rates are major considerations in satisfying comfort requirements. High humidity can increase levels of bacteria, viruses, fungi and other factors that reduce air quality. It is also destructive to building components. 19

20 Swimming Pool Heat Pump 20

21 Swimming Pool Heat Pump Modes of Operations SustainE Natatoriums indoor swimming pool dehumidifier systems are flexible in their design operations. This concept allows each system to be customized for specific dehumidification applications. Each mode of operation is described below. Dehumidification and Reheat Auxiliary chilled / hot water coil control This is the basic option which removes moisture from the air at the evaporator coil and reheats it before returning to the space as dehumidified air. Dehumidification, Reheat & Water heating (pool) Instead of rejecting the heat to the reheat coil, the three-way valve on one refrigerant circuit divert hot gas to the water condensing coil to reject heat to the pool water. Either circuit can become the primary heat sink allowing the circuit s latent and sensible heat to be directed to a water source or returned to the air. Air-conditioning & Remote condenser This is very similar to the dehumidification & reheat, instead of sending recovered energy to a reheat coil, the energy is rejected to an outdoor condenser. Dehumidification, Air-conditioning & Remote condenser The unit controller will send a 0-10V (or other variable control voltage) to a modulating control valve. The function of the coils shall be clearly specified by the client. The unit controller will modulate the water coil valves as the specified by client. The control valve is supplied and installed by others. Ventilation Every indoor swimming pool requires the introduction of outdoor ventilation air during occupied times. The unit offers (optional) variable speed drive fans to integrate ventilation air into the dehumidification package. The dehumidifier blower will act as the ventilation fan and supply air blower. The unit controller can reduce fan speed to save energy when the occupancy level of the swimming pool is low. The ventilation system simplifies air balancing while maintaining the correct proportions of return air, supply air, exhaust air and outdoor air. This is the combination of all heat sink options. It is used when only a partial water heat sink is available but full capacity dehumidification is required continuously, regardless of season. Air Source Heat Pump in cold weather (selectable option) Even though recovered energy is sent to the space during the dehumidification process, the heat loss of the space can be greater in cold weather. Auxiliary heating may be required. One of the refrigerant circuits can be operated as an Air Source Heat Pump to provide efficiency heat energy to complete indoor climate control in one package. More than 60% saving in operation cost during cold season can be obtained as compared to auxiliary electrical heating elements. Minimum Maintenance Space. Reliable operation. Energy efficiency. Quiet operation. Access Door 21

22 Swimming Pool Heat Pump Performance Data Item Model Swimming Pool Heat Pump HS series Air Cooling Capacity kw Air Heating Capacity kw Water Heating Capacity kw Dehumidification Kg/h Total Input Power kw Running Ampere A Capacity Steps Nos. 50%, 100% 25%, 50%, 75%, 100% Compressor Qty Nos Type & Starting Method Refrigerant Supply Air Fan Scroll Compressor with Direct Drive R407C (R134a is available in option) Centrifugal Double Inlet Supply Air Flow M³/h E.S.P. Pa Supply Fan Motor kw Return Air Fan Centrifugal Double Inlet Return Air Flow M³/h E.S.P. Pa Return Fan Motor kw Desuperheater type Shell & Tube, plate or co-axial {Cupro-nickel or Titanium (optional)} Hot Water Flow L/s Power Supply 380V / 3 Phase / 50 Hz Note: 1. Air entering temperature at evaporator coil is 28 C 60% RH; outdoor air temperature at 35 C. 2. Please specify hot water heat exchanger (De-superheater) material when ordering. 3. Performance data for R134a to be provided on request. 4. Other models are available, please contact our representative for information. 5. Remote condensers are available as option, please specify when ordering. 22

23 Swimming Pool Heat Pump Humidity and moisture of indoor pools Effective control of indoor pool humidity help prevent bacteria, viruses, fungi and protect building components. The amount of water evaporated from an indoor swimming pool depends on: 1. The surface area of the swimming pool. 2. The water temperature of the swimming pool. 3. The indoor air temperature and relative humidity. 4. The air velocity over water surface. Calculation of dehumidification requirement based on water evaporation rate from ASHRAE APPLICATION HAND- BOOK. (The following sections are relevant extraction from ASHRAE handbook - Nataoriums) Internal latent loads are generally from people and evaporation. Evaporation loads in pools are significant relative to other load elements and may vary widely depending on pool features, areas of water and wet deck, water temperature, and activity level in the pool. The rate of evaporation can be estimated from empirical Equation (1). This equation is valid for pools at normal activity levels, allowing for splashing and a limited area of wetted deck. Where Wp = (A/Y)(Pw Pa)( V) (1) Wp = evaporation of water, kg/s A = area of swimming pool surface, m² Y = latent heat required to change water to water at surface water temperature, kj/kg Pw = saturation vapor pressure taken at surface water temperature, kpa Pa = saturation pressure at room air dew point, kpa V = air velocity over water surface, m/s (The units for constant are W/(m².Pa); the units for the constant are (W.s)/(m.Pa)) Equation (1) may be modified by multiplying it by an activity factor (Fa) to alter the estimate of evaporation rate based on the level of activity supported. For Y value of about 2400 kj/kg and V values ranging from 0.05 to 0.15 m/s. Equation (1) can be reduced to Wp = A(Pw Pa)(Fa) (2) Type of Pool Typical Activity Factor (Fa) Baseline (pool unoccupied) 0.5 Residential pool 0.5 Condominium 0.65 Therapy 0.65 Hotel 0.8 Public, schools 1.0 Whirlpools, spas 1.0 Wavepools, water slides 1.5 (min.) 23

24 Remote Condenser Performance data Model HACU -15S HACU -20D HACU -25D HACU -30D HACU -40F HACU -50F HACU -60F HACU -80F Heat Rejection kw Electrical Refrigerant 380V / 3 / 50 Hz R407C (R134a available as option) Ventilator Fan Type Propeller Input KW x2 0.88x2 1.05x2 0.88x4 0.88x4 1.05x4 0.88x8 W mm Dimension D mm H mm Weight kg Note : 1. Please contact our representative for detail technical data sheet. 24

25 Remote Radiator Model HAC-150 HAC-200 HAC-240 HAC-280 HAC-320 Heat Rejection kw Ventilator Electrical Fluid type 380V / 3 / 50 Hz Water Fan Type Propeller / Axial (Static Pressure 50~300Pa) Input KW 4.0x3 5.5x3 5.5x3 5.5x4 5.5x4 W mm Dimension D mm H mm Weight kg

26 Other Products Air to Air Heat Pumps DX Air-Conditioning Air Handling Units 26

27 Other Products Remote Condenser and Radiator Air cooled Chiller 27

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