exponential curve-fit Search Results


90
ASHRAE Inc exponential curve fit
Dust loading curves fitted with different models: ( a ) various membranes and velocities at a constant loading rate of 4 g/h with <t>exponential</t> fit (the minor x -axis in red is for P60, at 40 cm/s), ( b ) the same fitted with 4th order polynomial (the minor x -axis in red is for P60, at 40 cm/s), ( c ) P80 membrane at 20 cm/s at different loading rates with exponential fit, ( d ) the same fitted with 4th order polynomial.
Exponential Curve Fit, supplied by ASHRAE Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/exponential+curve-fit/pmc08306576-101-13-22?v=ASHRAE+Inc
Average 90 stars, based on 1 article reviews
exponential curve fit - by Bioz Stars, 2026-08
90/100 stars
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90
OriginLab corp curve fit of exponential decay on time-lapse data
Dust loading curves fitted with different models: ( a ) various membranes and velocities at a constant loading rate of 4 g/h with <t>exponential</t> fit (the minor x -axis in red is for P60, at 40 cm/s), ( b ) the same fitted with 4th order polynomial (the minor x -axis in red is for P60, at 40 cm/s), ( c ) P80 membrane at 20 cm/s at different loading rates with exponential fit, ( d ) the same fitted with 4th order polynomial.
Curve Fit Of Exponential Decay On Time Lapse Data, supplied by OriginLab corp, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/exponential+curve-fit/pmc04867890-124-4-23?v=OriginLab+corp
Average 90 stars, based on 1 article reviews
curve fit of exponential decay on time-lapse data - by Bioz Stars, 2026-08
90/100 stars
  Buy from Supplier

Image Search Results


Dust loading curves fitted with different models: ( a ) various membranes and velocities at a constant loading rate of 4 g/h with exponential fit (the minor x -axis in red is for P60, at 40 cm/s), ( b ) the same fitted with 4th order polynomial (the minor x -axis in red is for P60, at 40 cm/s), ( c ) P80 membrane at 20 cm/s at different loading rates with exponential fit, ( d ) the same fitted with 4th order polynomial.

Journal: Membranes

Article Title: An Assessment on Average Pressure Drop and Dust-Holding Capacity of Hollow-Fiber Membranes in Air Filtration

doi: 10.3390/membranes11070467

Figure Lengend Snippet: Dust loading curves fitted with different models: ( a ) various membranes and velocities at a constant loading rate of 4 g/h with exponential fit (the minor x -axis in red is for P60, at 40 cm/s), ( b ) the same fitted with 4th order polynomial (the minor x -axis in red is for P60, at 40 cm/s), ( c ) P80 membrane at 20 cm/s at different loading rates with exponential fit, ( d ) the same fitted with 4th order polynomial.

Article Snippet: The data obtained for this membrane was thus possible to approximate using the exponential curve fit, which is generally done in the ASHRAE dust-holding capacity test [ ] and which was previously used in several studies [ , ].

Techniques: Membrane

Dust-holding capacity per cake pressure drop of different membranes at different permeate velocities at a constant loading rate of 4 g/h ( a ) and P80 membrane at 20 cm/s at different loading rates ( b ), DHC measured ( DHC meas ), DHC from exponential fit ( DHC exp ) and DHC from polynomial fit ( DHC pol ) are at the major axis, DHC theoretical ( DHC theor ) is at the minor axis.

Journal: Membranes

Article Title: An Assessment on Average Pressure Drop and Dust-Holding Capacity of Hollow-Fiber Membranes in Air Filtration

doi: 10.3390/membranes11070467

Figure Lengend Snippet: Dust-holding capacity per cake pressure drop of different membranes at different permeate velocities at a constant loading rate of 4 g/h ( a ) and P80 membrane at 20 cm/s at different loading rates ( b ), DHC measured ( DHC meas ), DHC from exponential fit ( DHC exp ) and DHC from polynomial fit ( DHC pol ) are at the major axis, DHC theoretical ( DHC theor ) is at the minor axis.

Article Snippet: The data obtained for this membrane was thus possible to approximate using the exponential curve fit, which is generally done in the ASHRAE dust-holding capacity test [ ] and which was previously used in several studies [ , ].

Techniques: Membrane