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P.M. Kennard

Publications and source records attributed to P.M. Kennard.

2 recordsLinked to original sources

Glacier volume estimation of Cascade Volcanoes: An analysis and comparison with other methods

During the 1980 eruption of Mount St. Helens, the occurrence of floods and mudflows made apparent a need to assess mudflow hazards on other Cascade volcanoes. A basic requirement for such analysis is information about the volume and distribution of snow and ice on these volcanoes. An analysis was made of the volume-estimation methods developed by previous authors and a volume estimation method was developed for use in the Cascade Range. A radio echo-sounder, carried in a backpack, was used to make point measurements of ice thickness on major glaciers of four Cascade volcanoes (Mount Rainier, Washington; Mount Hood and the Three Sisters, Oregon; and Mount Shasta, California). These data were used to generate ice-thickness maps and bedrock topographic maps for developing and testing volume-estimation methods. Subsequently, the methods were applied to the unmeasured glaciers on those mountains and, as a test of the geographical extent of applicability, to glaciers beyond the Cascades having measured volumes. Two empirical relationships were required in order to predict volumes for all the glaciers. Generally, for glaciers less than 2.6 km in length, volume was found to be estimated best by using glacier area, raised to a power. For longer glaciers, volume was found to be estimated best by using a power law relationship, including slope and shear stress. The necessary variables can be estimated from topographic maps and aerial photographs.

California, Oregon, Washington

Ice volumes on Cascade volcanoes: Mount Rainier, Mount Hood, Three Sisters, and Mount Shasta

During the eruptions of Mount St. Helens the occurrence of floods and mudflows made apparent the need for predictive water-hazard analysis of other Cascade volcanoes. A basic requirement for such analysis is information about the volumes and distributions of snow and ice on other volcanoes. A radar unit contained in a backpack was used to make point measurements of ice thickness on major glaciers of Mount Rainier, Washington; Mount Hood, Oregon; the Three Sisters, Oregon; and Mount Shasta, California. The measurements were corrected for slope and were used to develop subglacial contour maps from which glacier volumes were measured. These values were used to develop estimation methods for finding volumes of unmeasured glaciers. These methods require a knowledge of glacier slope, altitude and area, and an estimation of basal shear stress, with each derived using topographic maps updated by aerial photographs. The estimation methods were found to be accurate within + 20 percent on measured glaciers, and to be within + 25 percent when applied to unmeasured glaciers on the Cascade volcanoes. The estimation methods may be applicable to other temperate glaciers in similar climatic settings. Areas and volumes of snow and ice are as follows: Mount Rainier 991 million ft 2 , 156 billion ft 3 ; Mount Hood 145 million ft 2 , 12 billion ft 3 ; Three Sisters 89 million ft 2 , 6 billion ft 3 ; and Mount Shasta 74 million ft 2 , 5 billion ft 3 . The distribution of ice and firn patches within 58 glacierized basins on volcanoes are mapped and listed by altitude and by watershed to facilitate water hazard-analysis.

California, Oregon, Washington