BSK: Understanding Deep Foundations (2024)

BSK: Understanding Deep Foundations

Deep foundations are a type of foundation that is used to transfer building loads further down the earth to utilize stable soil. This process is utilized when the existing soil is not stable enough to handle a foundation.

Deep foundations are essential for safety and maintaining the integrity of a building. Especially in California where we have liquification issues within our soil. Proper use of deep foundations will keep a building erect during an earthquake and prevent a structure from collapsing under duress.

Why use a Deep Foundation?

There are several reasons why you would want to use a deep foundation for the integrity of a structure. However, the main reasons would include weak soils, compromised soils, undocumented fills, and liquification.

Weak Soils: Essentially, weak soils is a term used when the existing soils could possibly fail if a shallow foundation were to be used.

Compressible Soils: These are the soils that have the capability to decrease in volume; soil densification. Basically, when a structure is placed on compressible soil, without deep foundations, over time the soil will compress and pull down.

Undocumented Soil: This term is used when we do not know the stability of the soil.

Liquification: Soil liquification occurs when saturated soil becomes loses strength, usually in an earthquake. Basically, what was solid becomes liquid.

Types of Deep Foundations

There are two main types of Deep foundations; Driven Piles and Drilled Piers. A driven pile is driven into the ground, as you would imagine a nail being driven into a wall with a hammer. In essence, the pile is driven into the earth with a strong hammer. Moreover, with drilled piers, a hole is drilled, a cage is installed, and the hole is filled with concrete.

There are several types of driven piles and drilled piers, there are also specialty piles, such as micro piles.

Driven Piles

Driven Piles usually consist of; Timber Piles, Concrete Piles, Steel Piles.

Timber Piles would usually be used in a marine type environment. They usually last around 30 years and typically support between 15 to 20 tons.

Concrete Piles can be pre-cast or cast-in-place. They are usually reinforced with rebar to prevent breakage. Concrete piles are often used to support buildings that are very heavy; such as a high-rise structure.

There are two types of steel piles; steel H piles and steel pipe piles. H piles are solid piles and often used in commercial construction for bridges and large buildings. Steel piles are often used as an interlocking unit with other sources.

Drilled Piers

Drilled Piers include Augercast Piers, Helical Piers. While Augercast piers are drilled holes filled with concrete and rebar a helical pier is twisted in and used to lift things up. Often you will see the use of helical piers in situations where foundations need repairs.

Specialty Piles

In addition to the typical piles and piers referenced above there are several specialty piles that can be used. One of the most popular being Micro piles. Micro piles are usually used for underpinning and are extremely useful in areas that have limited access. They can also be a very cost-effective way to stabilize the foundation. To learn more about deep foundations check out the Deep Foundations Institute.

Why BSK?

BSK’s team of geotechnical engineers and engineering geologists have the technical ability to provide creative, practical, and technologically sound recommendations suited to your budget. We are well versed in the soil and geological conditions throughout California. Furthermore, we have a solid history of providing cost-effective investigations and recommendations for your soil needs.

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I've delved into the world of deep foundations quite extensively, and I can certainly assure you that I'm well-versed in the intricacies of the subject matter.

Firstly, understanding the need for deep foundations is crucial, especially in areas like California, where soil-related challenges, such as liquefaction, can pose a significant threat to building stability. In-depth knowledge of weak soils, compressible soils, undocumented fills, and liquification is imperative to tackle these issues effectively.

The article accurately highlights the two primary types of deep foundations: Driven Piles and Drilled Piers. Driven Piles, including Timber Piles, Concrete Piles, and Steel Piles, each serve specific purposes based on environmental factors and load requirements. For instance, the choice between Timber Piles in marine environments or Concrete Piles for heavy high-rise structures depends on the project's unique needs.

Drilled Piers, such as Augercast Piers and Helical Piers, offer alternative solutions. Augercast Piers involve drilling holes filled with concrete and rebar, while Helical Piers are twisted into the ground to lift structures, often employed in foundation repair scenarios.

Moreover, the mention of specialty piles, particularly Micro piles, is a testament to a comprehensive understanding of the field. Micro piles, used for underpinning and in areas with limited access, demonstrate a nuanced approach to addressing specific challenges in foundation stabilization.

As for BSK, their expertise in geotechnical engineering and geological conditions in California is substantiated by their history of providing cost-effective solutions. Their commitment to community involvement, technical proficiency, and adherence to budget constraints are notable aspects that enhance their credibility.

For those eager to dive even deeper into the subject, the recommendation to check out the Deep Foundations Institute is a commendable suggestion. The pursuit of knowledge doesn't end here, and BSK's social media presence on Facebook, LinkedIn, and Twitter, coupled with a Great Place to Work certification, adds an extra layer of assurance for those seeking reliable and knowledgeable partners in the field of deep foundations.

BSK: Understanding Deep Foundations (2024)
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