The maximum allowable temperature difference inside a nickel-hydrogen battery to avoid water relocation was calculated by using a graphical method together with a vapor pressure vs. temperature correlation equation for water vapor over potassium hydroxide solution. An equation was developed for this maximum allowable temperature difference for vessel-wall temperatures from 0 to 30°C and potassium hydroxide concentrations from 20 to 32%. A heat-generation equation for the nickel-hydrogen battery was used to investigate the effect of the location of heat generation on the maximum temperature in the cell and the temperature distribution in the cell
The impedance of sealed nickel/cadmium cells around a cell e.m.f. of 0.0 V was measured at five diff...
Results of electrical space qualification tests of nickel-hydrogen battery type HR 23S are presented...
An electrochemical Ni-H2 battery model has been expanded to include thermal effects. A thermal energ...
The maximum allowable temperature difference inside a nickel-hydrogen battery to avoid water relocat...
Typescript (photocopy).The maximum temperature difference allowed inside a nickel-hydrogen battery t...
A two-dimensional, axisymmetric, and time-dependent thermal model was developed to study the tempera...
The nickel-hydrogen secondary battery has many desirable features which make it attractive for satel...
A two-dimensional and time-dependent thermal model of a multicell common pressure vessel (CPV) nicke...
The thermoneutral potential of a nickel cadmium or nickel hydrogen cell is the potential at which th...
[[abstract]]©2000 Electrochem - This work employs a two-dimensional transient thermal model to analy...
A series of tests was performed to characterize battery performance relating to certain operating pa...
As part of an overall effort to advance the technology of nickel-hydrogen batteries for low Earth or...
Thermodynamic parameters for Nickel-Cadmium (NiCad) and Nickel-Hydrogen (NiH2) batteries are calcula...
[[abstract]]c2006 Elsevier - A two-dimensional thermal model was presented to predict the temperatur...
The hydrogen evolution and oxidation kinetics in NiMH batteries have been investigated under tempera...
The impedance of sealed nickel/cadmium cells around a cell e.m.f. of 0.0 V was measured at five diff...
Results of electrical space qualification tests of nickel-hydrogen battery type HR 23S are presented...
An electrochemical Ni-H2 battery model has been expanded to include thermal effects. A thermal energ...
The maximum allowable temperature difference inside a nickel-hydrogen battery to avoid water relocat...
Typescript (photocopy).The maximum temperature difference allowed inside a nickel-hydrogen battery t...
A two-dimensional, axisymmetric, and time-dependent thermal model was developed to study the tempera...
The nickel-hydrogen secondary battery has many desirable features which make it attractive for satel...
A two-dimensional and time-dependent thermal model of a multicell common pressure vessel (CPV) nicke...
The thermoneutral potential of a nickel cadmium or nickel hydrogen cell is the potential at which th...
[[abstract]]©2000 Electrochem - This work employs a two-dimensional transient thermal model to analy...
A series of tests was performed to characterize battery performance relating to certain operating pa...
As part of an overall effort to advance the technology of nickel-hydrogen batteries for low Earth or...
Thermodynamic parameters for Nickel-Cadmium (NiCad) and Nickel-Hydrogen (NiH2) batteries are calcula...
[[abstract]]c2006 Elsevier - A two-dimensional thermal model was presented to predict the temperatur...
The hydrogen evolution and oxidation kinetics in NiMH batteries have been investigated under tempera...
The impedance of sealed nickel/cadmium cells around a cell e.m.f. of 0.0 V was measured at five diff...
Results of electrical space qualification tests of nickel-hydrogen battery type HR 23S are presented...
An electrochemical Ni-H2 battery model has been expanded to include thermal effects. A thermal energ...