Hillslope Form and Process
Cambridge University Press
Published on 8. June 1972
Book
Hardback
483 pages
978-0-521-08234-1 (ISBN)
Article exhausted; check for reprint
Description
Hillslopes occupy most the landscape. Studies of process mechanisms and rates have become sufficiently numerous to allow a systematic study of slopes. Only by making a synthesis of quantitative process studies and relating them to the development of slope forms can the shape of the landscape be understood and the separate effects of lithology and climate assessed. In the introductory part of this book, the choice of appropriate system and scale is discussed, and models for uplift and erosion evaluated. Attention is thus focused on the dynamic equilibrium of the slope profile and its erosional development over time. Part I then examines the forces encouraging hillslope movement and the resistances opposing movement. Part 2 considers processes of rock instability, soil instability, wash, solution and soil creep. Each is discussed in terms of its mechanism and rate of operation, and the slope provides it produces. Part 3 outlines how this systematic approach may be applied to areas of different climate and the extent to which there is an assemblage of processes characteristic of each area. In part 4, the process evidence and models are combined into theoretical sequences of slope profile development, and the effect of contour curvature in modifying these profiles on spurts and in hollows is examined.
More details
Series
Language
English
Place of publication
Cambridge
United Kingdom
Target group
College/higher education
Illustrations
Worked examples or Exercises
Weight
872 gr
ISBN-13
978-0-521-08234-1 (9780521082341)
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Other editions
New editions

M. A. Carson | M. J. Kirkby
Hillslope Form and Process
Book
06/2009
Cambridge University Press
€68.40
Shipment within 15-20 days
Additional editions

M. A. Carson | M. J. Kirkby
Hillslope Form and Process
Book
06/2009
Cambridge University Press
€68.40
Shipment within 15-20 days
Content
Preface; Introduction; 1. Geomorphic systems and models; 2. Starting points: systems of reference; Part I. Force and Resistance: 3. Force: sources of energy for debris transport; 4. Resistance; Part II. Process: The Interaction of Force and Resistance: 5. Process: introduction; 6. Instability processes in rock masses; 7. Instability in soil masses; 8. Surface water erosion; 9. Sub-surface water erosion; 10. Soil creep; part III. Form: comparison of Real Forms with Process-Response Models: 11. Humid temperate areas; 12. The periglacial landscape; 13. Semi-arid and arid landscapes; 14. Tropical landforms; Part IV. Synthesis: 15. Slope profiles; 16. Slopes in drainage basins; Appendices.