跳至主要內容

QS Payroll of Structure (Revit)
建築結構(Revit)的工程款項支付

5D cost analysis is a common use of BIM in construction. It involves inputting item costs into the model to estimate building material expenses. Additionally, it tracks construction progress, aiding Quantity Surveyors (QS) in monitoring costs. In this blog, I'll share a method for monitoring construction foundation costs.
BIM的常見應用之一是進行5D成本分析,通過在模型中輸入不同項目的成本來估算建築物的材料費用。此外,它還跟蹤施工進度,幫助工程量測師(QS)監控成本。在這篇博客中,我將分享一種監控地基建設成本的方法。

Creating the Foundation Model:
創建基礎模型:
Before QS payroll, prepare a dynamic foundation model. Since designs and construction limits change, ensure it's adaptable.
在進行QS工資支付之前,應準備好一個靈活的地基模型。由於設計和施工限制經常變化,因此確保它具有適應性。

Creating a Schedule with Unique Marks:
創建帶有獨特標記的進度表:
Generate a schedule for foundation items with status markers like "Constructed" (completed), "Test" (testing), "Failure" (demolished or rejected), and "Not Constructed" (not done).
生成基礎項目的進度表,其中包含"已建成"(完成)、"測試"(完成測試)、"失敗"(拆除或被拒絕)和"未建成"(尚未完成)等狀態標記。

QS Inputs Construction Status:
QS輸入施工狀態:
QS updates the schedule based on site engineer info, indicating the status of each item.
QS根據現場工程師的信息更新進度表,指示每個物件的狀態。

BIM Stores Milestone Data:
BIM存儲里程碑數據:
The BIM model stores this data, enabling QS to visualize foundation item completeness and milestone achievement.
BIM模型存儲這些數據,使QS能夠可視化地基項目的完成情況和里程碑的達成。

Paying Sub-Contractors:
支付分包商:
When milestones are met, the contract sum is paid to foundation contractors.
當達到里程碑時,合同金額將支付給地基分包商。

Takeaway and Impressions:
結語和印象:
Using BIM for QS payroll enhances visualization and precision, reducing data transfer errors. However, manual status input and delays in data updates remain challenges, with front-line engineers playing a crucial role.
使用BIM進行QS工資支付提高了可視化和精確度,減少了數據傳輸錯誤。然而,手動輸入狀態和數據更新的延遲仍然是挑戰,前線工程師扮演著至關重要的角色。

留言

此網誌的熱門文章

Combined Builders Work Drawings Production (Revit)
合併建造工程圖(CBWD)製作(Revit)

Producing Combine Builders Work Drawings (CBWD) for opening construction is an intricate process that involves a harmonious collaboration of Architecture, Structure, and Building Services. CBWD encompasses various types of openings, such as wall openings (doors, windows, AC ducts, fire suppression pipes, etc.), slab openings (tower cranes, material hoists, AC risers, etc.), and beam openings (primarily for drain pipes). Throughout the CBWD workflow, each stakeholder plays a crucial role in ensuring that construction adheres to standards and client requirements. For example, architects specify door and window sizes, engineers assess the impact of openings on the main structure and provide calculations, and building services engineers reroute Mechanical, electrical, and plumbing ( MEP) systems to accommodate opening locations. 製作合併建造工程圖(CBWD)以進行開口建設是一個複雜的過程,需要建築、結構和建築服務的協同合作。CBWD包括各種類型的開口,如牆壁開口(門、窗戶、空調管道、消防供水管道等)、板條開口(塔吊、物料提升機、空調升降機等)和梁開口(主要用於排水管道)。在整個CBWD工作流程中,每個利益相關者都在確保建設符合標準和客戶要求方面發揮

What is Building Information Modelling (BIM)?
什麼是建築資訊模型 (BIM)?

In this blog, I will share my journey in the field of BIM (Building Information Modeling). I will review my evolving understanding and experiences with BIM technology since 2019, along with my learning and work experiences in the BIM field. From initially regarding BIM simply as a 3D modeling tool to applying BIM in projects to solve real-world problems, and then grasping the importance of BIM coordination and the challenges it entails. 在這篇博客中,我將分享我在 BIM (建築信息建模)領域的成長經歷。我將回顧從 2019 年以來,我對 BIM 技術的不同認知和理解,以及我在 BIM 領域的學習和工作經歷。從最初將 BIM 僅僅視為 3D 建模工具,到在項目中應用 BIM 來解決實際問題,再到了解 BIM 協調的重要性以及面臨的挑戰。 2019: Before 2019, my understanding of BIM was that it was a technology for creating 3D models using BIM software like Revit, ArchiCAD, and Tekla. 在 2019 年之前,我對 BIM 的理解是它是一種由 BIM 軟件如 Revit 、 ArchiCAD 和 Tekla 等創建的 3D 模型。 2020: As I began participating in a large-scale BIM project, I learned to adapt to the needs of managers and engineers. During this time, I realized that BIM was a technology aimed at re

Interior Design Preview(Enscape)
室内設計預覽 (Enscape)

Figure by Enscape Revit, typically known for its role in Architectural, Engineering, and Construction (AEC) projects, has a hidden talent – interior design! This week, I had the opportunity to assist a friend in crafting the interior design of their house using Revit for 3D modeling and the "Enscape 3D" add-in for rendering. In this blog post, I will guide you through the steps and methods we employed. Revit通常以其在建築、工程和施工(AEC)項目中的角色而聞名,但它還有一個隱藏的才華 - 室內設計!本週,我有機會協助一位朋友使用Revit進行3D建模,以及使用"Enscape 3D"附加組件進行渲染,來打造他們房子的室內設計。在這篇博客文章中,我將指導您通過我們所使用的步驟和方法。 Acquiring the Enscape Trial Version: 獲取Enscape試用版: Begin by visiting the Enscape website at Enscape™ - Real-Time Rendering and Virtual Reality and registering as a trial user. Install the Enscape add-in for Revit. 首先,訪問Enscape網站,網址為Enscape™ - 實時渲染和虛擬現實,並註冊為試用用戶。 安裝Revit的Enscape附加組件。 Creating a Precise House Model: 創建準確的房屋模型: Start with drafting a 2D layout plan that accurately reflects the measurements and building layout pl