Overview
SMITH CANAL PUMP STATION is a distribution pump station in Stockton, California, serving the San Joaquin County water infrastructure. It operates under state and local water supply regulations.
SMITH CANAL PUMP STATION is a distribution pump station located at 2144 Fontana Dr, Stockton, California, in San Joaquin County. As a key component of the local water distribution network, it supports the conveyance of water for municipal and agricultural needs in the region. The facility operates under California's stringent water supply and safety regulations, including Title 22 of the California Code of Regulations for drinking water standards and local mechanical/electrical safety codes. This pump station plays a vital role in maintaining water pressure and flow for Stockton's residential, commercial, and industrial users. Its operational status ensures continued service for fire protection and potable water supply, contributing to the resilience of the region's water infrastructure.
Environmental context
The pump station is situated in California's Central Valley, a region with significant agricultural water demand and periodic drought conditions. Its operation is critical for maintaining water distribution efficiency and reducing energy consumption through optimized pumping schedules. The facility's redundancy and age are key factors in its environmental impact, as older infrastructure may have higher energy use and leakage risks.
Frequently asked questions
SMITH CANAL PUMP STATION is located at 2144 Fontana Dr, Stockton, California, in San Joaquin County, United States.
It is a distribution pump station, part of the water infrastructure that moves water through the distribution network to end users.
Distribution pump stations in California must comply with Title 22 of the California Code of Regulations for water quality, as well as local building and electrical safety codes.
It helps maintain water pressure and flow for residential, commercial, and fire protection needs in Stockton and surrounding areas.
Common risk factors include aging infrastructure, lack of redundancy, power outages, and compliance with evolving water quality standards.
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