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VRV and VRF are both air conditioning systems that use refrigerant to cool or heat a space, but VRV is a trademarked term by Daikin while VRF is a generic term used by other manufacturers.
VRV is a trademarked term by Daikin while VRF is a generic term used by other manufacturers
VRV systems have a larger capacity and can connect more indoor units than VRF systems
VRF systems are more flexible and can handle varying loads...
VRV stands for Variable Refrigerant Volume and VRF stands for Variable Refrigerant Flow.
VRV and VRF are both HVAC systems that use refrigerant to cool or heat a space.
They are both energy-efficient and allow for individual temperature control in different zones.
VRV is a trademarked term by Daikin, while VRF is a more generic term used by other manufacturers.
Both systems use a variable speed compressor to adjust the ref...
AHU stands for Air Handling Unit.
AHU is a device used to regulate and circulate air as part of a heating, ventilation, and air conditioning (HVAC) system.
It is responsible for conditioning the air by cooling, heating, humidifying, dehumidifying, filtering, and distributing it throughout a building.
AHUs are commonly found in commercial and industrial buildings, as well as in residential settings.
Examples of AHUs include...
There are several types of AHU, including single-zone, multi-zone, rooftop, and makeup air units.
Single-zone AHUs are used in small spaces with consistent heating and cooling needs.
Multi-zone AHUs are used in larger spaces with varying heating and cooling needs.
Rooftop AHUs are installed on the roof of a building and are commonly used in commercial buildings.
Makeup air units are used to replace air that is exhausted fr
Heat is a form of energy that is transferred from one body to another as a result of a difference in temperature.
Heat is a form of energy
It is transferred from one body to another
It occurs due to a difference in temperature
Heat can be measured in units such as joules or calories
Examples of heat sources include the sun, fire, and electrical appliances
Refrigeration pipe size is determined by the required cooling capacity, distance, and pressure drop.
Calculate the required cooling capacity
Determine the distance between the evaporator and condenser
Consider the pressure drop in the system
Refer to manufacturer's tables or use pipe sizing software
Choose the appropriate pipe size based on the calculated values
TR can be found by calculating the cooling load of a space and dividing it by 12,000.
Calculate the cooling load of the space in BTUs per hour
Divide the cooling load by 12,000 to get the TR
Consider factors such as the size of the space, number of occupants, and equipment heat gain
TR = Cooling Load (BTU/hr) / 12,000
1 TR is equal to 400 CFM approximately.
TR stands for 'ton of refrigeration'
CFM stands for 'cubic feet per minute'
The conversion factor is approximately 400 CFM per 1 TR
This conversion is used in HVAC systems to determine the required airflow for cooling or heating
1TR is equal to 12,000 BTU per hour.
TR stands for 'ton of refrigeration'
BTU stands for 'British Thermal Unit'
1TR is equivalent to removing 12,000 BTUs of heat per hour
This conversion is commonly used in the HVAC industry
Thumb rule is a general guideline or principle that is based on experience and common sense.
Thumb rules are used in HVAC to estimate the size of equipment or ductwork based on the square footage of the space being cooled or heated.
For example, a common thumb rule for air conditioning is to have 1 ton of cooling capacity for every 400-500 square feet of space.
Thumb rules are not always accurate and should be used with c...
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I applied via Campus Placement and was interviewed before Jan 2020. There were 4 interview rounds.
I applied via Campus Placement and was interviewed before May 2020. There were 4 interview rounds.
I applied via Campus Placement and was interviewed before Feb 2020. There were 4 interview rounds.
I applied via Campus Placement and was interviewed before Jul 2020. There were 4 interview rounds.
The project involved designing and implementing a new network infrastructure for a large corporation.
Conducted a thorough analysis of the existing network infrastructure
Designed a new network architecture that met the company's needs
Implemented the new network infrastructure with minimal disruption to business operations
Tested and optimized the new network to ensure optimal performance
Provided ongoing support and maint
I applied via Walk-in and was interviewed before Feb 2020. There were 4 interview rounds.
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