CN

Case

Green Innovation · Scientific and Technological Development · Industrial Responsibility · Joint Construction of Civilized Ecology

The Tongchuan Xiaoqu Waterworks Renovation and Upgrading Project
  • Introduction
  • Process
  • Solve Problems
  • Project Highlights

Introduction

The Tongchuan Xiaoqu Waterworks Renovation and Upgrading Project is a key livelihood project that ensures urban-rural water supply safety in the region and promotes the integration of water services. Upon completion, the water plant has achieved a daily treatment capacity of 3,000 cubic meters, fully undertaking the responsibility of guaranteeing production and domestic water supply for the Xiaoqu town area, 15 administrative villages, 38 natural village groups, as well as the town government, enterprises, and public institutions—serving a total population of 29,500 and 95,000 head of livestock and poultry. Through deep integration of the Internet of Things (IoT), big data, and automated control technologies, the project has realized full-chain intelligent control from "source" to "tap." It has provided solid water supply infrastructure support for rural revitalization and successfully established a new paradigm for urban-rural water supply.


Process

Solve Problems

1. Solving the Problems of "Fragmentation, Disorder, and Weakness" in Rural Water Supply Management

This project has addressed the issues of uneven water supply services and inadequate supervision commonly found in traditional township water plants due to outdated technical means. Through the "Five Unifications" service model, it has broken down the dual-structure divide between urban and rural water supply.

2. Solving the Problems of Unstable Water Quality and Secondary Contamination in Traditional Processes

Targeting the pain points of aging carbon steel equipment that is prone to corrosion and rust buildup, the project has effectively ensured that 29,500 rural residents have access to safe and reliable drinking water through stainless steel material upgrades and intelligent regulation and control.


Project Highlights

1. Application of High-Standard Materials
In key water-contact processes (the collection weirs), a stainless steel anti-floating design has been pioneeringly adopted. This fundamentally eliminates the secondary contamination problem caused by the susceptibility of traditional carbon steel materials to rust and corrosion.

2. Precise Chemical Dosing and Green Low-Carbon Operation
The intelligent dosing system not only enhances water quality stability but also achieves a substantial breakthrough with an annual chemical consumption reduction of 20%.

3. "Unmanned" Operation Model
Through the deep integration of highly automated valve clusters with the intelligent management and control platform, the water plant has preliminarily achieved the conditions for minimal-attendance or even unattended operation.