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March 5, 2026Geotechnics0 citationsOpen Access

Performance of Piezoball and Piezo-T Flow Penetrometers Compared with Conventional In Situ Tests in Brazilian Soft Soils

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JSJonatas SosnoskiGDGracieli DienstmannHNHelena Paula Nierwinski

Key Points

  • The aim is to evaluate the performance of two flow penetrometers in measuring soil properties compared to conventional tests.
  • Developed two flow penetrometers: piezoball and piezo-T.
  • Conducted tests in Brazilian clay deposits.
  • Compared test results against traditional in situ methods for soil strength and consolidation.
  • Piezoball showed good repeatability and accurate pore pressure measurements.
  • Piezo-T experienced instability in measurement readings.
  • Both devices provided consistent values for bearing capacity factors and remolded strength.

Abstract

Limitations of the cone penetration test, especially to accurately determine undrained shear strength (Su) in soft soil deposits with high in situ stresses, have motivated the development of alternative devices, such as the T-bar and ball penetration tests, commonly referred to as flow penetrometers. These devices can estimate, in a single test, both the undrained shear strength (Su) and the remolded strength (Sur). When equipped with pore pressure sensors, they also provide valuable information on soil stratigraphy and consolidation parameters, making them versatile tools for characterizing soft soils. This study presents the development of two flow penetrometers, piezoball and piezo-T, highlighting relevant aspects of their design and calibration, followed by experimental campaigns conducted in two Brazilian clay deposits (Tubarão/SC and Sarapuí/RJ). Field tests enabled a direct comparison between the flow penetrometers and conventional methods, both in terms of Su and Sur. The investigation also examined the coefficient of consolidation of the soft soils. The results demonstrate good repeatability and consistent values for the bearing capacity factors (Nb and Nt) and remolded behavior (Nb-rem and Nt-rem). Regarding the performance of the pore pressure transducers, the piezoball test demonstrated good performance in pore pressure measurements and derived coefficients of consolidation. In contrast, despite the proposed design modifications, the piezo-T exhibited instability in the readings. Although the findings are derived from specific sites, the discussion is framed in light of the ranges reported internationally, highlighting potential local implications and reinforcing the need to expand robust geotechnical databases to support future applications.

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Sosnoski et al. (2026) studied this question.

synapsesocial.com/papers/69a91e65d6127c7a504c26cchttps://doi.org/10.3390/geotechnics6010024
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