sales@damslab.com
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Air conditioning enthalpy difference laboratory DMS
Air conditioning enthalpy difference laboratory DMS

Air conditioning enthalpy difference laboratory DMS

Description:

The air enthalpy difference laboratory uses the air enthalpy difference method to measure the cooling capacity, heating capacity, low-temperature non steady state heating capacity, power consumption of air conditioners C.O.P.、 Circulating air volume and seasonal energy consumption efficiency, etc. Can be used as a detection device, design and development tool, and refrigeration professional for air conditioners. The laboratory conditions for air conditioning enthalpy difference comply with the Chinese national standard GB/T 7725-2004 and the international standard ISO 5151-2010

Telephone

+8675526585726

Email

sales@damslab.com

DESCRIPTION

Air conditioning enthalpy difference laboratory

Overview

The air conditioning enthalpy difference laboratory system is carefully selected and composed of world-class equipment, reaching an international superior level

1. The refrigeration system is designed by international experts (using German grain wheels for refrigeration), with low energy consumption and stable and fast operating conditions

2. The temperature sensor is made of world-class products, using Qianye PT100

Yokogawa, Japan for pressure sensors

Regulating instrument for Yokogawa 550, Japan

3. The algorithm adopts the world's advanced algorithms, which are more scientific and advanced than Japan's Daisuke

4. Large screen TFT full-color LCD display,

ELO infrared touch screen control in the United States

5. The storage body is made of British ISOAU polyurethane storage board, which does not condense and has strong thermal insulation performance

6 fully automatic fuzzy working condition control, automatic stability judgment

7. Professional after-sales service, 24-hour service hotline

Please refer to the laboratory floor plan on the next page for detailed information

(If there are any differences between the written and the drawings, the floor plan shall prevail)

Air conditioning enthalpy difference laboratory

Air conditioner enthalpy difference roomBasic requirements

1. Overview

The enthalpy difference laboratory for air conditioning uses the enthalpy difference method as the basic testing method for the cooling and heating capacity of air conditioning mechanisms. Provided a relatively complete and high-precision testing method for laboratories and factories, requiring thermocouples, computer automatic acquisition, display, and reliable operation Advanced manufacturing technology

2. Main equipment and engineering:

(1) Laboratory room structure (2) Compression condensing unit (3) Air reprocessing equipment

(4) Humidifier heater (5) Air volume testing device (6) Control cabinet

(7) Measurement instruments (8) Refrigeration system piping engineering (9) Water distribution system

(10) Electrical wiring (11) Cooling and water supply and drainage system (12) Computer system

3. Other equipment and engineering

(1) Condensed water removal (2) Laboratory lighting

(3) Standard machine (provided by Party A for calibrating this laboratory)

4. Air conditioning enthalpy difference laboratory according to standards:

(1) The system and experimental method are based on GB/T7725-96 "Room Air Conditioner" and GB/T17758-1999 "Unit Air Conditioner"

(2) Construction rules are based on relevant national standards for HVAC and plumbing engineering construction

5. Test items:

(1) Cooling capacity

(2) Cooling power consumption

(3) High temperature cooling capacity

(4) Heat pump heating capacity

(5) Heat pump consumes power

(6) Electric heating power consumption

(7) Low temperature, ultra-low temperature cooling capacity

(8) * Large operation refrigeration

(9) * Small operation refrigeration

(10) Large scale operation heating

(11) Heat pump * small operation heating

(12) Freezing experiment (air circulation, dripping water)

(13) Condensation experiment

(14) Discharge of condensate water

(15) Automatic defrosting

(16) Energy efficiency ratio

(17) Performance parameters

6. Technical conditions:

(1) Using standard machine calibration, the deviation is less than 2% compared to the national testing center under rated operating conditions.

(2) The repeatability deviation of the cooling capacity measured continuously for 5 times during one-time installation is less than 2%.

(3) The deviation of air volume measurement for 7 consecutive times during one-time installation is less than 2%.

(4) The system is of automatic control measurement type

(5) The system has overheat and water level protection, and the heating and humidification are interlocked with the operation of the fan

(6) The system has a fault display function

(7) In addition to normal testing experiments, the system has added thermocouple temperature measurement, 1-point compressor frequency measurement, and 2-point refrigerant pressure testing

(8) Compartment temperature control range: indoor side 10 ℃ -35 ℃, outdoor side -8 ℃ -55 ℃, control accuracy 0.2 ℃, measurement accuracy 0.1 ℃, temperature field control: within the range of 2300mm above the ground, the vertical temperature gradient within the range of -8 ℃ -55 ℃ is ≤ 0.5 ℃/m, and the rest is ≤ 1 ℃/m (divided into three layers, with distances of: lower layer 300mm from the ground; middle layer 1000mm from the ground; upper layer 650mm from the ceiling). Use an air sampler to sample the temperature of the tested machine

7. Venue requirements:

(1) Floor area: 10MX10M factory building net height>3.8M

(2) Power supply: 3-phase 5-wire 380V 50HZ 150KVA

(3) Water supply: 2T/H to the construction site

(4) Laboratory ground load: 0.5T/mm

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