マインドマップギャラリー 基礎ピット検査
1級建設技術者による基礎ピット検査に関する知識や条件を紹介したマインドマップ。 自然基礎溝検査、 基礎処理事業溝調査等
2024-02-04 16:42:28 に編集されましたThis template, created with EdrawMind, provides a structured workflow for weekly coordination meetings focused on MEP (Mechanical, Electrical, Plumbing) pipeline layout. It follows a four-stage cycle: starting with Issue Identification (Clash Detection) to detect pipeline conflicts, moving to Meeting Agenda preparation to define discussion topics, then On-site Discussion to review and resolve issues on the construction site, and finally Resolution & Update to document solutions and track progress. This template can be reused to standardize MEP coordination processes, ensuring clear communication, efficient problem-solving, and smooth construction progress.
This template, created with EdrawMind, outlines a quarterly checklist for preparing materials for green building certification. It is divided into four sequential quarters: Q1 focuses on Basic Material Preparation, including collecting project approval documents and compiling self-assessment reports; Q2 covers Technical Data Improvement, such as organizing energy consumption calculation books and preparing green construction proof materials; Q3 involves On-site Inspection Preparation, including organizing construction process materials and verifying certification standards; and Q4 is for Formal Application, which includes completing online reporting and cooperating with expert on-site reviews. This template can be reused to systematically prepare for green building certification, ensuring all requirements are met and the process is efficient.
This template, created with EdrawMind, provides a comprehensive framework for daily monitoring of deep foundation pit construction. It covers six key monitoring areas: Retaining Wall Top Displacement, Settlement of Surrounding Buildings, Groundwater Level, Pit Bottom Heave, Support Axial Force, and Data Summary & Analysis. Each section specifies monitoring points, frequency, and warning values to ensure safety. The template can be reused to standardize monitoring practices, track structural stability, and trigger immediate alarms if warning thresholds are exceeded, thus mitigating risks during foundation pit construction.
This template, created with EdrawMind, provides a structured workflow for weekly coordination meetings focused on MEP (Mechanical, Electrical, Plumbing) pipeline layout. It follows a four-stage cycle: starting with Issue Identification (Clash Detection) to detect pipeline conflicts, moving to Meeting Agenda preparation to define discussion topics, then On-site Discussion to review and resolve issues on the construction site, and finally Resolution & Update to document solutions and track progress. This template can be reused to standardize MEP coordination processes, ensuring clear communication, efficient problem-solving, and smooth construction progress.
This template, created with EdrawMind, outlines a quarterly checklist for preparing materials for green building certification. It is divided into four sequential quarters: Q1 focuses on Basic Material Preparation, including collecting project approval documents and compiling self-assessment reports; Q2 covers Technical Data Improvement, such as organizing energy consumption calculation books and preparing green construction proof materials; Q3 involves On-site Inspection Preparation, including organizing construction process materials and verifying certification standards; and Q4 is for Formal Application, which includes completing online reporting and cooperating with expert on-site reviews. This template can be reused to systematically prepare for green building certification, ensuring all requirements are met and the process is efficient.
This template, created with EdrawMind, provides a comprehensive framework for daily monitoring of deep foundation pit construction. It covers six key monitoring areas: Retaining Wall Top Displacement, Settlement of Surrounding Buildings, Groundwater Level, Pit Bottom Heave, Support Axial Force, and Data Summary & Analysis. Each section specifies monitoring points, frequency, and warning values to ensure safety. The template can be reused to standardize monitoring practices, track structural stability, and trigger immediate alarms if warning thresholds are exceeded, thus mitigating risks during foundation pit construction.
基礎ピット検査
情報と条件
5者からの技術者が現場に到着
基礎設計文書
地盤調査報告書
軽量パワーコーン録音
基礎処理または深基礎工事品質検査報告書
基礎は荒らされていない荒らされていない土壌でなければならず、保護層が所定の位置に残されている場合、その厚さは100mmを超えてはなりません。
自然基礎溝検査
コンテンツ
基礎ピットの位置、平面寸法、ピット底高さを確認します。
ピットの底や側面の岩石、土壌、地下水の状態を確認します。
洞窟、古井戸、古墳、地下溝、地下構造物、防空壕などの状況を確認します。
ピット底の土壌の乱れとその範囲と範囲を確認します。
ピットの底が凍結、亀裂、水の浸食、浸水などにより損傷していないか確認してください。
光パワーの透過が必要ない場合
耐圧水頭が基礎ピットの地盤面より高い場合、サウンディングにより水や土砂が流出する可能性があります。
基礎ピットの支持層は砂利または小石層であり、基礎の下の厚さは1mを超えています。
基本支持層は、厚さ1.5m以上の均一で緻密な砂層です。
基礎処理事業溝点検
基礎を埋め戻して締め固める
ファンデーションの均一性と緻密性
強化複合基礎
杭頭、杭位置、杭間の地盤状態、施工品質検査報告書
特殊土壌基礎
崩壊性、地震液状化、土壌保湿、膨張土壌保湿
杭基礎工学溝検査
タンクの検査方法
観察
タンク壁および底の土壌状態
基礎溝の傾斜は安定していますか?
基礎溝には古い家の基礎、洞窟、古代の井戸、埋設パイプライン、民間防空施設はありますか?
光パワーの浸透力
内容を確認する
基礎支持層の強度と均一性
浅く埋設された軟質下地層または浅く埋設された突出硬質層
基礎の支持力に影響を与える、浅く埋もれた古代の井戸、墓、空洞など