This study investigates the use of an Air-Water Heat Exchanger (AWHX) and Thermal Energy Storage (TES) system for condensate energy recovery across different air-conditioning capacities.
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This study investigates the use of an Air-Water Heat Exchanger (AWHX) and Thermal Energy Storage (TES) system for condensate energy recovery across different air-conditioning capacities. Theoretical analysis (energy and exergy) and pilot experiments were conducted to design an effective condensate energy recovery system.
The condensate energy recovery system incorporated both sensible (AWHX) and latent storage (TES) components. In the TES system, coconut oil used as PCM was filled in copper spherical tube to store the cold energy from AC condensate. Fig. 4 (a) presents a schematic representation of the process flow within the AWHX and TES setup.
Implementing condensate recovery systems in existing cold storage plants offers numerous potential benefits. By effectively utilizing condensate water for pre-cooling food products and humidification, significant energy savings are achieved while also preventing the disposal of condensate water into drainage systems.
STEAM AND CONDENSATESYSTEM LEAKAGE COSTSSteam and condensate leaks are unacceptable—and even abnormal—in today’ industrial steam and condensate systems. These leaks cost industrial plants millions of dollars in lost energy while increasing emissions, creating safety hazards, and low ring the reliability of plant operations. Therefore,
The ability to recover energy from condensate is influenced by the thermal characteristics of condensate generation in an HVAC system. The potential of energy recovery from condensate relies on thermal parameters such as temperature and flow rate of AC condensate , .
The energy quality of condensate can be maintained by integrating thermal energy storage (TES) systems, and the associated challenges are extensively reviewed. Moreover, the selection and applicability of phase change materials for the above scenario are discussed in detail. Fig. 4.
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