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Health and Safety


In order to progress you must adhere to the following requirements.


Health and Safety Risk Assessment


Download and complete the Health and Safety Risk Assessment form. This must be signed and approved by an authorised person before you can begin the experimental procedure.












HTMLText_A9A8F1AD_E1A4_E03D_41E0_FA151DC2595F.html =
Instructions


This scientific experiment will guide you to perform an experimental energy balance over a lab scale double pipe heat exchanger.


The approach will help you gain new knowledge or prove existing knowledge by observing, reflecting and explaining the outcome.


Refer to the icons below to access specific content elements and navigate between activities. As you work through the sequence of activities, they will be marked as done.
HTMLText_F30E7E33_E87B_C823_41AE_CFAD4C61CF92.html =
Instructions


This scientific experiment will guide you to perform an experimental energy balance over a lab scale double pipe heat exchanger.


The approach will help you gain new knowledge or prove existing knowledge by observing, reflecting and explaining the outcome.


Refer to the icons below to access specific content elements and navigate between activities. As you work through the sequence of activities, they will be marked as done.
HTMLText_FFADBFE7_DFBB_E02D_41A3_89A75DB7A04E.html =
Credits


Discipline of Chemical Engineering (WASM-MECE)
Faculty of Science and Engineering
Curtin University


Lihong Liu
Lecturer (Sessional Academic)


Arash Arami-Niya
Lecturer


Roshanak Doroushi
Laboratory Technician


Victor Olet
Sessional Academic


Learning Engagement Team
Faculty of Science and Engineering
Curtin University


Diana Taylor
Lead Learning Engagement Developer


Madelon Heperi
Senior Learning Media Developer


Tommy Woodward
Multimedia Designer





HTMLText_A8468BC4_968A_0520_41D0_128E606AA263.html =
Health and Safety


Personal Protective Equipment (PPE)


It is a requirement to wear correct PPE to access the laboratory. This includes a lab coat, closed shoes, long trousers/ skirts and safety glasses. Please be aware of the following hazards when operating the rig: (a) Electrical power (240 V) (b) Hot surfaces and fluid.


Do you agree to adhere to these requirements?



HTMLText_A088D794_978A_0D20_41C9_32DEE73DEC13.html =
Welcome to Virtual Laboratory


Free and forced convection heat exchanger


Welcome to the Chemical Engineering Heat Transfer Laboratory at Curtin University. We pay our respects to the Aboriginal and Torres Strait Islander members of our community by acknowledging the traditional owners of the land on which the laboratory at Bentley Campus, is located, the Wadjuk people of the Nyungar Nation.


This virtual laboratory guides you through an experiment using the double pipe heat exchanger.


• Adhere to health and safety requirements
• Explain the purpose of the experiment and base theory
• Identify the main components of the equipment
• Recognise advantages and disadvantages of the equipment
• Recall equipment configuration and experimental procedure
• Interpret the data spreadsheet


Choose your language: English or Chinese.


HTMLText_FFC9D9AF_DFE4_E03D_41E5_6C90395B2D21.html =
What is a free and forced convection heat exchanger?


The unit consists of a bench mounted vertical air duct positioned on the top of a centrifugal fan. The air duct incorporates an aperture positioned at the rear wall of the duct, into which three different types of heat-transfer surfaces can be inserted: flat plate, cylindrical pins and finned surface. It is designed to study the temperature profiles and heat flux over these surfaces.


• Central heating
• Air conditioning
HTMLText_FFC9D9AF_DFE4_E03D_41E5_6C90395B2D21_mobile.html =
What is a free and forced convection heat exchanger?


The unit consists of a bench mounted vertical air duct positioned on the top of a centrifugal fan. The air duct incorporates an aperture positioned at the rear wall of the duct, into which three different types of heat-transfer surfaces can be inserted: flat plate, cylindrical pins and finned surface. It is designed to study the temperature profiles and heat flux over these surfaces.


• Central heating
• Air conditioning
HTMLText_AAA3C964_E1AD_6023_41E3_E7674CF96ABD.html =
Credits


Discipline of Chemical Engineering (WASM-MECE)
Faculty of Science and Engineering
Curtin University


Lihong Liu
Lecturer (Sessional Academic)


Arash Arami-Niya
Lecturer


Roshanak Doroushi
Laboratory Technician


Victor Olet
Sessional Academic


Learning Engagement Team
Faculty of Science and Engineering
Curtin University


Diana Taylor
Lead Learning Engagement Developer


Madelon Heperi
Senior Learning Media Developer


Tommy Woodward
Multimedia Designer





HTMLText_A8468BC4_968A_0520_41D0_128E606AA263_mobile.html =
Health and Safety


Personal Protective Equipment (PPE)


It is a requirement to wear correct PPE to access the laboratory. This includes a lab coat, closed shoes, long trousers/ skirts and safety glasses. Please be aware of the following hazards when operating the rig: (a) Electrical power (240 V) (b) Hot surfaces and fluid.


Do you agree to adhere to these requirements?



HTMLText_D74B6D41_968E_7D20_41D6_3FD4DD394F5F_mobile.html =
Health and Safety


In order to progress you must adhere to the following requirements.


Health and Safety Risk Assessment


Download and complete the Health and Safety Risk Assessment form. This must be signed and approved by an authorised person before you can begin the experimental procedure.












HTMLText_A9A8F1AD_E1A4_E03D_41E0_FA151DC2595F_mobile.html =
Instructions


This scientific experiment will guide you to perform an experimental energy balance over a lab‐scale double pipe heat exchanger.


The approach will help you gain new knowledge or prove existing knowledge by observing, reflecting and explaining the outcome.


Refer to the icons below to access specific content elements and navigate between activities. As you work through the sequence of activities, they will be marked as done.
HTMLText_DC88E1E2_9F8A_04E0_41D8_9447CC9E7495_mobile.html =
Instructions


This scientific experiment will guide you to perform an experimental energy balance over a lab‐scale double pipe heat exchanger.


The approach will help you gain new knowledge or prove existing knowledge by observing, reflecting and explaining the outcome.


Refer to the icons below to access specific content elements and navigate between activities. As you work through the sequence of activities, they will be marked as done.
HTMLText_A088D794_978A_0D20_41C9_32DEE73DEC13_mobile.html =
Welcome to Virtual Laboratoory


Free and forced convection heat exchanger


Welcome to the Chemical Engineering Heat Transfer Laboratory at Curtin University. We pay our respects to the Aboriginal and Torres Strait Islander members of our community by acknowledging the traditional owners of the land on which the laboratory at Bentley Campus, is located, the Wadjuk people of the Nyungar Nation.


This virtual laboratory guides you through an experiment using the double pipe heat exchanger.


The aims of this experiment are:
• To become familiar with the features and operation of a double pipe heat exchanger
• To perform an energy balance over a heat exchanger
• To observe the dynamic response of the heat exchanger to changes in operating conditions.


Choose your language: English or Chinese.






HTMLText_B121859E_EB8C_78E5_41CC_D62F8EB0C30E_mobile.html =
Credits


Discipline of Chemical Engineering (WASM-MECE)
Faculty of Science and Engineering
Curtin University


Lihong Liu
Lecturer (Sessional Academic)


Arash Arami-Niya
Lecturer


Roshanak Doroushi
Laboratory technician


Victor Olet
Sessional Academic


Learning Engagement Team
Faculty of Science and Engineering
Curtin University


Diana Taylor
Lead Learning Engagement Developer


Madelon Heperi
Senior Learning Media Developer


Tommy Woodward
Multimedia Designer





HTMLText_FFADBFE7_DFBB_E02D_41A3_89A75DB7A04E_mobile.html =
Credits


Discipline of Chemical Engineering (WASM-MECE)
Faculty of Science and Engineering
Curtin University


Lihong Liu
Lecturer (Sessional Academic)


Arash Arami-Niya
Lecturer


Roshanak Doroushi
Laboratory technician


Victor Olet
Sessional Academic


Learning Engagement Team
Faculty of Science and Engineering
Curtin University


Diana Taylor
Lead Learning Engagement Developer


Madelon Heperi
Senior Learning Media Developer


Tommy Woodward
Multimedia Designer





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