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Engineering Service

Building and Bridge Jacking Engineering

建筑与桥梁顶升工程

Jacking services for buildings, bridges, and infrastructure requiring controlled elevation adjustment or support replacement.

面向建筑、桥梁和基础设施结构的受控顶升服务,适用于高程调整或支座更换等需求。

Supplied by Shanghai Evolution Building Shift Engineering Co., Ltd.

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Overview

Service overview

We provide building and bridge jacking engineering services for projects that require controlled elevation adjustment, support replacement, structural modification, or construction-stage lifting. The service focuses on synchronous or alternating lifting control, temporary support, structural monitoring, and construction safety.

我们为需要受控高程调整、支座更换、结构改造或施工阶段顶升的建筑与桥梁工程提供顶升服务。服务重点包括同步或交替顶升控制、临时支撑、结构监测和施工安全控制。

Scope

Service scope

Key components that may be provided for relevant engineering scenarios.

  • Controlled lifting process
  • Synchronous or alternating jacking methods
  • Hydraulic control systems
  • Temporary support and safety control
  • Monitoring-supported construction execution
  • 受控顶升过程
  • 同步或交替顶升工艺
  • 液压控制系统
  • 临时支撑与安全控制
  • 配合监测的施工实施

Scenarios

Applicable project scenarios

Typical project conditions where this offering may be relevant.

  • Building jacking
  • Bridge jacking
  • Support replacement
  • Elevation adjustment
  • Structural modification works
  • Infrastructure maintenance and renewal
  • 建筑物顶升
  • 桥梁顶升
  • 支座更换
  • 高程调整
  • 结构改造工程
  • 基础设施维护与更新

Technical Information

Technical parameters

Technical approach

  • The jacking scheme is developed according to structural condition, support arrangement, target elevation, and construction-stage constraints.
  • Hydraulic jacking, temporary support, staged lifting, and monitoring are coordinated to control structural response during elevation adjustment.
  • Jacking sequence, load transfer, and support replacement measures should be confirmed through project-specific assessment and design.

Key control items

  • Structural safety before, during, and after jacking.
  • Jacking synchronization, elevation control, and deviation correction.
  • Temporary support stability and load transfer path.
  • Monitoring of settlement, deformation, and support conditions.

技术参数

技术实施要点

  • 顶升方案应结合结构状态、支撑条件、目标高程和施工阶段约束进行确定。
  • 通过液压顶升、临时支撑、分阶段顶升和施工监测协同控制结构响应。
  • 顶升顺序、荷载转换和支座更换措施应结合具体项目评估和设计确定。

重点控制内容

  • 顶升前、顶升中和顶升后的结构安全。
  • 顶升同步性、高程控制与偏差纠正。
  • 临时支撑稳定性和荷载传递路径。
  • 沉降、变形和支撑状态监测。