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Understanding the Effect of Soil Types in Bearing Capacity for Shallow Square Footings

  • 2025
  • OriginalPaper
  • Chapter
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Abstract

This chapter delves into the critical factors affecting the bearing capacity of shallow square footings, with a focus on the diverse soil types found in the Kathmandu Valley. It highlights the importance of understanding soil properties such as friction angle, cohesiveness, and unit weight in determining the ultimate bearing capacity (UBC) of foundations. The research analyzes 40 distinct soil conditions, revealing significant variations in bearing capacity across different soil types and footing dimensions. Key findings include the identification of strong soils like GW and SW, which offer stable support even at shallow depths, and weaker soils like CH and MH, which require deeper foundations or stabilization techniques to ensure safety. The study also explores the impact of footing size and depth on bearing capacity, providing valuable data for engineers designing structures in areas with poor soil profiles. Additionally, it discusses the historical and geotechnical challenges of the Kathmandu Valley, emphasizing the need for thorough geotechnical investigations to avoid hazardous outcomes. The chapter concludes with practical recommendations for foundation design and soil stabilization, offering a comprehensive guide for enhancing the safety and stability of structures built on varying soil types.

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Title
Understanding the Effect of Soil Types in Bearing Capacity for Shallow Square Footings
Authors
Ujjwal Niraula
Shreya Shrestha
Upendra Shrestha
Meera Neupane
Suresh Raj Joshi
Copyright Year
2025
Publisher
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-96-8532-5_5
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