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JeoTes™ PHE PARTS



JeoTes™ PHE PARTS


MATERIAL OF PLATE
Stainless steel AISI304, 316 : Purified water, river water, edible oil and mineral oil, geothermal water
Titanium and palladium : Sea water, salty water and salt substances, geothermal water
Hastelloy Alloy : Concentrated sulfuric acid, hydrochloric acid and phosphoric acid
Nickel : High temperature and concentrated super alkali
Molybdenum,SMO254: Diluted sulfuric acid, diluted salt substance water solution, inorganic substance water solution, geothermal water and phosphoric acid Molybdenum, SMO254

MATERIAL OF GASKET
NBR :  Water, sea water, mineral oil and salty water   -15-125°C
HNBR : High temperature mineral oil and high temperature water      -15-140°C
EPDM : Hot water, steam, acid and alkali          -25-170°C
Fluorine Rubber : Acit and alkali                                       -5-180°C
Neoprene :  Acit and alkali                                       -5-130°C
Silicon Rubber : food, oil, fattiness, alkali           -65-250°C


MATERIAL OF FRAME 
Standard :  Epoxy-coated carbon steel
Special purpose  : All stainless steel or coated with stainless steel


MATERIAL OF CONNECTION 
Standart  :  Stainless steel threaded, flange
Special purpose :  Rubber lining, hastelloy alloy lining, titanium lining, other alloy lining


ACCESSORIES 
Insulation, interior filters, necked flange, thermometer, manometer, reverse washing system can also be provided on customer's request.

Advantages of JeoTes™ PHE

 
  • JeoTes™ Plate Heat Exchanger is more compact in structure compared to other heat exchanger.
  • It can perform heat exchange under differential temperature of 1 °C with a designed pressure as high as 40Bar, capacity of 4500m3/h and connection size of DN25-DN500.
  • JeoTes™ PHEs come in wide range of size and capacities. Different plate patterns are available for various duties and performance specifications. 
  • Jeotes™ PHEs provides convenience operating with the most suitable suppression depth.
  • All plates are formed by one-step molding technology so as to reduce the plate's physical stress, improve the plate's uniformity and prolong the plate's useful life. 
  • Scientific distribution design of the plate can avoid scaling, dead spots, minimize dirtiness of the plate surface and increase the coefficient of heat transmission
  • The plate positioning system and single side flow design provide convenience for connection and maintenance.
  • Jeotes ™ PHE’s can be made of different material, for example, stainless steel, titanium or other special alloy steel, are available to meet the requirements of various industries.
  • The plate is easy to be inspected and manually cleaned. It can be cleaned by back flushing under many circumstances. The daily cleaning is not time consuming and professionals are not required.
  • All plates use glue-free gasket so that there are less costs for operation and maintenance.
  • The heat exchanging can be designed in many types from two fluid media with single counter-current to three or more fluid media with multi current, through the changing of flow type or increasing the flow passages. Therefore more suitable solutions can be selected by designers to meet different technical requirements.
  • The best coefficient of heat transmis¬sion and pressure drop can be regulated and achieved by assembling the plates, thus the investment in equipment can be minimized.
  • It is economical. The initial investment and operational and maintenance costs are substantially reduced because of its high heat transmission coefficient, convenient installation and service.

Heating, Ventilating, Air Conditioning (HVAC) and Hot Water

Heat exchanger is the most suitable solution that is frequently used in heating, air conditioning, ventilating and domestic hot water applications. It has earned a well-known reputation for all similar applications which are set-up with high technology.

Room heating through the utilization of hot water is a common practice. There are a number of different methods for the transfer of heat energy from water to   create a comfortable room environment, while using radiator is also a familiar method. In this application, hot fluid (which is supplied from boiler or geothermal resource etc.) transfers heat by the help of a PHE to the other fluid which circulates in the radiator. 

Another substitute for the radiator is floor heating. This method uses a pipeline circulation system which is placed under floor. In gener­ally, floor heating is a supplementary way to radiator heating. The pipeline circulation in the floor heating system is normally connected to the circulation pipeline of the radiator.

Air-conditioning blows hot air into the room through the use of the fan coil. This type of heating is mostly used in public constructions. Combined heating methods, such as radiator systems integrated with that of floor heating systems, or radiator system integrated with ventilation heating facilities, are usually adopted.

The supply of domestic hot water is certainly included. This can be achieved through using solar energy, geothermal energy and conservation methods (waste heat recycle systems etc.) besides the available heating sources (boiler etc.)


                                  

JeoTes™ Cooling Application - Local Cooling

jeotes soğutma uygulamaları Local cooling means a cooling system inside a building and providing cooling for the single building. For example, hospital, shopping center, hotel, conference center and an office block.  The chiller plant and the storage facility are located inside each building, the cooling source usually being a chiller. The cold from the source water is transferred to the PHE in building's internal cooling system.
soğutma uygulamaları jeotes

In this application, the PHEs functions as pressure interceptors, transferring the cold between the separate zones and also protect air handling units and other equipment from excessive pressure. 

JeoTes™ Cooling Application - District Cooling

jeotes bölgesel soğutma District cooling means one central source is used for several buildings, instead of local systems for each building. It becomes more and more popular all over the world and creates both economic and environmental benefit, especially if it is combined with district heating in an optimized system.
 

The benefits for customers are little location, low-noise and lower-cost than investing in a chiller. With centrally produced comfort cooling there will be no noise or vibrations. Maintenance and running costs will be lower and a better level of equipment redundancy and round-the-clock expert management.