FOUNDATION RECOMMENDATIONS TO PROVIDE BEARING CAPACITY FOR ADDITIONAL FLOORS IN THE EAST JAKARTA PPKPPL BUILDING

Penulis

  • Kerlima Hutagaol University Mpu Tantular
  • Ancient Betman Dasuha University Mpu Tantular
  • Hendra Ali Gunawan University Mpu Tantular
  • Muriya Muriya University Mpu Tantular

DOI:

https://doi.org/10.46576/ijsseh.v7i1.8270

Kata Kunci:

structural analysis, foundations, building evaluation, additional floors, structural reinforcement.

Abstrak

This study aims to provide recommendations regarding foundations capable of supporting additional floors in the PPKPPL building in East Jakarta. The focus of this study is to assess the feasibility of the existing structure, especially the foundation elements, in line with the planned floor addition. A survey was conducted through visual and technical observations to determine the current condition of the structural elements. Data obtained from the survey were then analyzed using structural calculation methods to determine the foundation's capacity to accommodate gravity and earthquake loads in accordance with applicable standards. The analysis results indicate that the existing foundation's bearing capacity is insufficient to support the planned loads after the floor addition. If there is a mismatch between the foundation capacity and the new loads, recommendations for foundation repair or reinforcement will be provided so that the building can meet safety and comfort standards. It is hoped that this study can provide a basis for making technical decisions regarding additional floors and appropriate foundation reinforcement.

Referensi

SNI 8460:2017. (2017). Geotechnical Design Requirements.

SNI 8561:2017. (2017). Brinell Hardness Testing on Steel.

ASTM A956. (2017). Leeb Hardness Test for Metal Materials.

ASTM E 140-97. (1997). Hardness Conversion Table for Metals.

ASTM C597:2012. (2012). Standard Test Method for Pulse Velocity Through Concrete.

BS 1881 Part 203:1986. (1986). Testing of Concrete: Methods for the Determination of Concrete Strength.

ASTM G80S-89. (1989). Standard Guide for Impact Testing of Concrete.

BS 1881 Part 202:1986. (1986). Testing Concrete: Methods for Testing Concrete for Strength.

ACI, 2002. Standard Deviation Criteria for Concrete.

ASTM C805:2012. (2012). Standard Test Method for Rebound Hammer Testing of Concrete.

Ghaly, MA,et al. (2025). Testing the density of concrete quality with the UPV test.

Diterbitkan

2026-03-07

Terbitan

Bagian

Articles Vol. 7 No. 1 2026