Investigation of Thermal Performance of Heat Pipe Heat Exchanger for Waste Heat Recovery
Nikhil Deshmukh
Abstract
Open-access reader
Nikhil Deshmukh
Abstract
Open-access reader
The waste heat recuperation by heat pipes are plainly acknowledged as a great method for sparing vitality and keeping the a worldwide temperature alteration.This paper contain the literature review of the application of heat pipe heat exchangers for the waste heat recovery that is really focused on the vitality sparing and the improvement of productivity of HPHE.The test examinations comprise of aerial warmth exchanger furnished with thirty warmth channels are accused of the refined water as the working liquid.The stream design comprised of a solitary pass on the evaporator and condenser areas.The warmth funnels were made of the stainless steel, estimated 900 mm long and was introduced in an amazed game plan.The targets of detailed trial examination were dissect the impact of gulf temperature 100 °C and air mass stream rates (0.0625-0.25 kg/s) on the warm execution of HPHE.The paper was analyzed to support future works.This review provides additional information of the design of HPHE with optimum condition for waste heat recovery.
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The waste heat recuperation by heat pipes are plainly acknowledged as a great method for sparing vitality and keeping the a worldwide temperature alteration.This paper contain the literature review of the application of heat pipe heat exchangers for the waste heat recovery that is really focused on the vitality sparing and the improvement of productivity of HPHE.The test examinations comprise of aerial warmth exchanger furnished with thirty warmth channels are accused of the refined water as the working liquid.The stream design comprised of a solitary pass on the evaporator and condenser areas.The warmth funnels were made of the stainless steel, estimated 900 mm long and was introduced in an amazed game plan.The targets of detailed trial examination were dissect the impact of gulf temperature 100 °C and air mass stream rates (0.0625-0.25 kg/s) on the warm execution of HPHE.The paper was analyzed to support future works.This review provides additional information of the design of HPHE with optimum condition for waste heat recovery.
Key concepts: Heat exchanger, Waste heat recovery unit, Waste management, Plate fin heat exchanger, Heat recovery ventilation, Nuclear engineering, Heat pipe, Environmental science