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NONELECTRIC CONDENSATE PUMPS Sizing & Selection Watson McDaniel reserves the right to change the designs and/or materials of its products without notice. 2002 Watson McDaniel Company Pressure Motive
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How to fill out non-electric condensate pumps sizing

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How to fill out non-electric condensate pumps sizing:

01
Determine the condensate load: Calculate the amount of condensate that needs to be discharged by the pump. This can be done by estimating the heat transfer or steam consumption in the system.
02
Determine the discharge head: Measure the vertical distance from the pump's discharge point to the highest point in the system where the condensate needs to be discharged. This will help in selecting a pump with sufficient head capacity.
03
Consider the condensate temperature: Take into account the temperature of the condensate as it can affect the sizing of the pump. Higher temperatures may require a pump with greater capacity or materials that can withstand the heat.
04
Account for pressure drops: Calculate the pressure losses in the system, including in the pipes, fittings, and any filters or separators. This will help determine the required pump capacity to overcome these losses.
05
Select the appropriate pump: Once the condensate load, discharge head, temperature, and pressure drops are determined, choose a non-electric condensate pump that meets these requirements. Consider factors such as pump capacity, material compatibility, and any specific certifications or standards required for your application.

Who needs non-electric condensate pumps sizing?

01
Industries using steam systems: Non-electric condensate pumps are commonly used in industries that rely on steam systems for heating, such as refineries, chemical plants, power plants, and paper mills.
02
HVAC systems: Non-electric condensate pumps are also used in HVAC systems for removing condensate from air conditioning units or evaporator coils.
03
Commercial buildings: Buildings with boiler systems or steam-based heating often require non-electric condensate pumps for efficient removal of condensate.
04
Food and beverage industry: Certain processes in the food and beverage industry, such as sterilization or cooking, generate condensate that needs to be efficiently removed using non-electric condensate pumps.
In summary, filling out non-electric condensate pumps sizing involves calculating the condensate load, determining the discharge head, considering temperature and pressure drops, and selecting the appropriate pump. Industries using steam systems, HVAC systems, commercial buildings, and the food and beverage industry often require non-electric condensate pump sizing.
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Non-electric condensate pumps sizing refers to the process of determining the appropriate size of condensate pumps that do not require electricity to operate.
Any individual or entity responsible for the installation and maintenance of non-electric condensate pumps may be required to file the sizing information.
Non-electric condensate pumps sizing can be filled out by providing specific details about the pumps, such as flow rate, pressure requirements, and installation location.
The purpose of non-electric condensate pumps sizing is to ensure that the pumps are correctly sized to efficiently remove condensate from heating and cooling systems.
Information that must be reported on non-electric condensate pumps sizing may include pump specifications, operating conditions, and any relevant performance data.
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