The link between heat transfer intensity and hydraulic resistance of PHE channels is determined with the use of modified Reynolds analogy of heat and momentum transfer. The formula to estimate the share in total hydraulic resistance of pressure loss due to friction is proposed. The resulting model enables to calculate film heat transfer coefficients in PHE channels on a data of hydraulic resistance of the main heat transfer field. The calculations are compared with the available in literature experimental results on heat transfer in channels with cross corrugated walls. The good agreement confirms the assumptions made on deriving equation and existence in PHE channels of the analogy between heat and momentum transfer in proposed form
This study is focused on experimental investigation of selected type of brazed plate heat exchanger ...
The main objective of this work is to examine the heat transfer changes induced by the presence of h...
Available from British Library Document Supply Centre-DSC:DXN015169 / BLDSC - British Library Docume...
The link between heat transfer intensity and hydraulic resistance of PHE channels is determined with...
The modification of Von Karman analogy for turbulent flow in channels of Plate Heat Exchangers (PHEs...
The modification of Von Karman analogy for turbulent flow in channels of Plate Heat Exchangers (PHEs...
The analogy of heat and momentum transfer in turbulent flow modified for channels of Plate Heat Exch...
The analogy of heat and momentum transfer in turbulent flow modified for channels of Plate Heat Exch...
Plate heat exchangers (PHEs) play an important role in different technical fields, namely, in energe...
The paper concerns with analysis of the influence of corrugation form of PF1E plates on hydraulic re...
The paper concerns with analysis of the influence of corrugation form of PF1E plates on hydraulic re...
Plate Heat Exchangers (PHEs) are one of the most efficient types of contemporary heat exchangers wit...
The fouling removal mechanism for plate heat exchanger (PHE) heat transfer surface controlled by she...
This study is focused on experimental investigation of selected type of brazed plate heat exchanger ...
This study is focused on experimental investigation of selected type of brazed plate heat exchanger ...
This study is focused on experimental investigation of selected type of brazed plate heat exchanger ...
The main objective of this work is to examine the heat transfer changes induced by the presence of h...
Available from British Library Document Supply Centre-DSC:DXN015169 / BLDSC - British Library Docume...
The link between heat transfer intensity and hydraulic resistance of PHE channels is determined with...
The modification of Von Karman analogy for turbulent flow in channels of Plate Heat Exchangers (PHEs...
The modification of Von Karman analogy for turbulent flow in channels of Plate Heat Exchangers (PHEs...
The analogy of heat and momentum transfer in turbulent flow modified for channels of Plate Heat Exch...
The analogy of heat and momentum transfer in turbulent flow modified for channels of Plate Heat Exch...
Plate heat exchangers (PHEs) play an important role in different technical fields, namely, in energe...
The paper concerns with analysis of the influence of corrugation form of PF1E plates on hydraulic re...
The paper concerns with analysis of the influence of corrugation form of PF1E plates on hydraulic re...
Plate Heat Exchangers (PHEs) are one of the most efficient types of contemporary heat exchangers wit...
The fouling removal mechanism for plate heat exchanger (PHE) heat transfer surface controlled by she...
This study is focused on experimental investigation of selected type of brazed plate heat exchanger ...
This study is focused on experimental investigation of selected type of brazed plate heat exchanger ...
This study is focused on experimental investigation of selected type of brazed plate heat exchanger ...
The main objective of this work is to examine the heat transfer changes induced by the presence of h...
Available from British Library Document Supply Centre-DSC:DXN015169 / BLDSC - British Library Docume...