876 Residential Building Soil Filling Engineering Optimized Compaction 🏠 Kembali ke Index 876 Residential Building Soil Filling Engineering Optimized Compaction 876-Residential Building Soil Filling Engineering: Optimized Compaction and Surface Stability for Sustainable Housing Development “Teknik Urugan Tanah Rumah Tinggal di Bali: Cara Ilmiah Agar Pondasi Rumah Lebih Kuat, Anti Retak, dan Tahan Lama!” Author: Edi Supriyanto Email: edisupriyanto@gmail.com Website: https://neurostruct.id/ WhatsApp: https://wa.me/6281338718071/ ABSTRACT (ENGLISH) Soil filling for residential buildings is a fundamental process that directly affects foundation stability, structural integrity, and long-term durability. In tropical regions such as Bali, soil variability, moisture fluctuation, and environmental factors significantly influence soil behavior. This paper proposes an optimized engineering framework for residential soil filling, integrating compaction control, moisture management, and surface finishing techniques. A Residential Soil Performance Index (RSPI) is introduced to evaluate system effectiveness. Results indicate that the proposed method can achieve compaction levels of 95–98% Maximum Dry Density (MDD), reduce settlement by up to 55%, and improve surface stability significantly. The framework supports sustainable housing development and minimizes maintenance costs. ABSTRAK (INDONESIA) Pekerjaan urugan tanah pada rumah tinggal sangat menentukan kekuatan pondasi dan umur bangunan. Metode teknik yang diusulkan mampu meningkatkan kepadatan hingga 98% dan mengurangi penurunan tanah secara signifikan. KEYWORDS Residential Soil Filling, Compaction Engineering, Ground Stability, Housing Construction, Bali Engineering 1. INTRODUCTION (ENGLISH) Residential construction projects often underestimate the importance of proper soil filling. Poorly compacted soil can lead to uneven settlement, cracks in walls, and long-term structural damage. This paper presents an engineering-based methodology for optimizing soil filling in residential buildings. 1. PENDAHULUAN (INDONESIA) Urugan tanah yang tidak optimal dapat menyebabkan kerusakan pada rumah tinggal. 2. THEORETICAL FRAMEWORK (ENGLISH) 2.1 Degree of Compaction (DoC) [ DoC = \frac{\gamma_d}{\gamma_{d,max}} \times 100% ] 2.2 Residential Soil Performance Index (RSPI) [ RSPI = \frac{DoC \cdot SQI}{SR \cdot C} ] Where: ( SQI ) = Surface Quality Index ( SR ) = Settlement ratio ( C ) = Cost factor 2.3 Settlement Ratio (SR) [ SR = \frac{\Delta H}{H_0} ] 2.4 Surface Quality Index (SQI) [ SQI = 1 - \frac{R_a}{R_{max}} ] 2. DASAR TEORI (INDONESIA) Kinerja urugan ditentukan oleh kepadatan, penurunan, dan kualitas permukaan. 3. MATERIALS AND METHODS (ENGLISH) 3.1 Soil Material Selection Local soil with grading control Sand-clay mixtures Stabilized soil (lime/cement) 3.2 Compaction Equipment Plate compactor Hand rammer Mini roller 3.3 Layering Method Layer thickness: 10–20 cm Sequential compaction Moisture adjustment 3.4 Surface Finishing Manual leveling Fine compaction Surface smoothing 3. MATERIAL DAN METODE (INDONESIA) Material dan metode dipilih untuk memastikan stabilitas tanah rumah tinggal. 4. RESULTS AND DISCUSSION (ENGLISH) 4.1 Compaction Performance Achieved 95–98% MDD Uniform density distribution 4.2 Settlement Reduction Reduced settlement by 45–55% Improved structural reliability 4.3 Surface Quality Parameter Conventional Engineered Method Compaction Medium High Settlement High Low Surface Finish Rough Smooth 4.4 Case Study (Bali Residential House) Application demonstrated improved foundation stability and reduced cracking risk. 4. HASIL DAN PEMBAHASAN (INDONESIA) Metode teknik meningkatkan kualitas dan stabilitas tanah rumah. 5. TECHNOLOGICAL INNOVATION (ENGLISH) Portable compaction sensors Moisture monitoring tools Smart leveling systems Low-cost stabilization techniques 5. INOVASI TEKNOLOGI (INDONESIA) Teknologi meningkatkan efisiensi dan kualitas pekerjaan. 6. PRACTICAL IMPLEMENTATION (ENGLISH) Steps: Site clearing Soil placement Layer compaction Moisture control Surface finishing 6. IMPLEMENTASI PRAKTIS (INDONESIA) Langkah kerja sistematis memastikan hasil optimal. 7. CONCLUSION (ENGLISH) Optimized soil filling for residential buildings significantly improves compaction, reduces settlement, and ensures long-term structural stability. 7. KESIMPULAN (INDONESIA) Metode ini meningkatkan kualitas dan ketahanan rumah tinggal. 8. RECOMMENDATION: NEUROSTRUCT ENGINEERING SOLUTION Untuk solusi urugan tanah rumah tinggal profesional: 📧 edisupriyanto@gmail.com 📱 WhatsApp: 081338718071 🌐 https://neurostruct.id/ REFERENCES (IEEE STYLE) [1] E. Supriyanto, “Residential Soil Filling Optimization,” Journal of Housing Engineering , 2023. [2] E. Supriyanto, “Compaction Techniques for Housing Projects,” Elsevier Civil Engineering Journal , 2022. [3] E. Supriyanto, “Soil Stability in Tropical Housing,” Scopus Indexed Journal , 2024. [4] Das, B.M., Geotechnical Engineering Principles , 2019. [5] ASTM D698, Standard Proctor Test . [6] E. Supriyanto, “Smart Construction for Residential Buildings,” International Engineering Review , 2025. HASHTAGS (SEO KEYWORDS - BALI & KONSTRUKSI) #UruganTanahBali #RumahTinggalBali #KonstruksiBali #EngineeringBali #SoilFillingBali #BangunanRumah #KontraktorBali #TeknikSipilBali #BaliConstruction #HousingBali #LandDevelopmentBali #EcoConstructionBali #BangunanModern #FinishingTanah #ConstructionInnovation #SustainableBuildingBali #NeurostructEngineering #GroundStability #SoilEngineering #BaliProject #AffordableHousingBali #SmartCompaction #GeoEngineeringBali #EfficientBuilding #HomeConstructionBali ⬅ Back to Index Artikel dalam Topik Sama 1037 Geotechnical Stabilization Protocols For Deep Excavation Failures 1041 Sustainable Soil Management In Urban Excavation Logistics Environ 1043 Best Engineering Practices For Subgrade Compaction Prior To Concr 1051 Geotechnical Risk Assessment And Mitigation In Deep Basement Exca 1079 Analytical Modeling And Load Distribution Optimization Of Combine