A sump pump is a pump used to remove water that has accumulated in a water-collecting sump basin, commonly found in the basements of homes and other buildings, and in other locations where water must be removed, such as construction sites. The water may enter via the perimeter drains of a basement waterproofing system funneling into the basin, or because of rain or natural ground water seepage if the basement is below the water table level. More generally, a "sump" is any local depression where water may accumulate. For example, many industrial cooling towers have a built-in sump where a pool of water is used to supply water spray nozzles higher in the tower. Sump pumps are used in industrial plants, construction sites, mines, power plants, military installations, transportation facilities, or anywhere that water can accumulate.
Description Sump pumps are used where basement flooding may otherwise happen, and to solve dampness where the water table is near or above the foundation of a structure. Sump pumps send water away from a location to any place where it is no longer problematic, such as a municipal storm drain, a dry well, or simply an open-air site downhill from the building (sometimes called "pumping to daylight"). Pumps may discharge to the sanitary sewer in older installations. Once considered acceptable, this practice may now violate the plumbing code or municipal bylaws, because it can overwhelm the municipal sewage treatment system. Municipalities urge building owners to disconnect and reroute sump pump discharge away from sanitary sewers. Fines may be imposed for noncompliance. Many homeowners have inherited their sump pump configurations and do not realize that their pump discharges into the sanitary sewer. Sump pump systems are also utilized in industrial and commercial applications to control water table-related problems in surface soil. An artesian aquifer or periodic high water table situation can cause the ground to become unstable due to water saturation. As long as the pump functions, the surface soil will remain stable. These sumps are typically ten feet in depth or more; lined with corrugated metal pipe that contains perforations or drain holes throughout. They may include electronic control systems with visual and audible alarms and are usually covered to prevent debris and animals from falling in.
Power Sump pumps may be plugged into an electrical power receptacle. In this case, it is safer to use a dedicated circuit, which is less likely to lose power from a blown fuse or tripped circuit breaker. In addition, the dedicated circuit may not require GFCI protection, as it is less vulnerable to false tripping due to electrical noise, especially during thunderstorms. The dedicated circuit receptacle may be specially labeled to warn against unplugging the pump, or the plug may be attached using a special retaining bracket to discourage unplugging. Instead, the pump may be hardwired to electrical power, so that it cannot be unplugged. Since a sump basin may overflow if not pumped, a backup system is important for cases when the main power is out for prolonged periods of time, as during a severe storm. Some sump pumps can be automatically powered from a battery backup system, or a separate battery-powered system may be installed, typically with its float switch set slightly higher than the float switch of the primary pump. Using a separate generator is another option. These do often require a manual setup. Alternatively, the municipal pressurized water supply powers some pumps, which can operate using a water turbine, or by using the Venturi effect. This design eliminates the need for electricity but consumes potable water, potentially making it more expensive to operate than electrical pumps and creating an additional water disposal problem. This design is used more for backup pumps rather than primary pumps. The main thing to check with the alternative backup electricity sources is whether they offer enough power. Sump pumps tend to require at least 230 volts although smaller models in the United States can sometimes run on 120 volts. Similarly, watt and amp needs of sump pumps can vary. Consumer models can vary from 700 running watts to 2300 watts and more. Gallons per watt-hour is a measure of efficiency in sump pumps. Additionally, sump pumps will typically require an extra burst of power known as additional starting watts to get running. This can be as much as 1.5 times and more than the running watt and amp needs. Industrial sump pumps may be powered by other means, such a steam or compressed air, especially for backup pumps or in locations where access for maintenance is difficult.
Physical configuration
There are generally two types of residential sump pumps: pedestal and submersible. In the case of the pedestal pump, the motor is not sealed and sits on a column to protect it from moisture. This type of installation is more conspicuous since the motor is usually positioned above the top of the basin. Within the column, the motor shaft is connected to the impeller, which rotates inside a scroll housing at the bottom of the basin. A switch mounted in the motor turns the motor on as the water level in the basin rises, and shuts it off when the basin is empty; this automatic level control permits operation of the pump without constant monitoring. In a submersible pump, the motor is sealed in a special housing, with the impeller mounted directly to the shaft. Automatic level control can be integrated within the pump, or as an auxiliary switch with little or no physical connection to the pump. Which type of sump pump to use is a matter of personal choice. Pedestal sump pumps were the only option through most of the 20th Century, with cast iron and bronze construction similar to large commercial pumps. But technological and design improvements made submersible pumps much more reliable, and the compact design allows the basin to be covered, eliminating a trip and fall hazard, and reducing the potential of radon intrusion in the home. Since the level control switch is the primary point of failure with any sump pump, submersible pumps with auxiliary, or "piggyback", designs allow for replacement of the switch with minimal effort. Today, submersible pumps are the most popular style, while residential pedestal pumps are low volume, economical designs with limited service life.
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