SlideShare a Scribd company logo
ROCKET AND SPACE PROPULSION
Topics Covered
Operating principle – specific impulse of a rocket – internal ballistics –
performance considerations of rockets – types of igniters- preliminary
concepts in nozzle-less propulsion – air augmented rockets – pulse
rocket motors – static testing of rockets & instrumentation –safety
considerations
7/22/2019 www.sagarbhandari.com.np 1
Operating principle of Rockets
A rocket in its simplest form is a chamber
enclosing a gas under pressure. A small opening at
one end of the chamber allows the gas to escape,
and in doing so provides a thrust that propels the
rocket in the opposite direction.
A good example of this is a balloon. Air inside a
balloon is compressed by the balloon's rubber
walls. The air pushes back so that the inward and
outward pressing forces are balanced. When the
nozzle is released, air escapes through it and the
balloon is propelled in the opposite direction
7/22/2019 www.sagarbhandari.com.np 2
Newton's Laws of Motion.
1. Objects at rest will stay at rest and objects in motion will
stay in motion in a straight line unless acted upon by an
unbalanced force.
2. Force is equal to mass times acceleration.
3. For every action there is always an opposite and equal
reaction.
7/22/2019 www.sagarbhandari.com.np 3
A rocket can lift off from a launch pad only when it expels gas out
of its engine. The rocket pushes on the gas, and the gas in turn
pushes on the rocket. The whole process is very similar to riding a
skateboard
An unbalanced force must be exerted for a rocket to lift off from a
launch pad or for a craft in space to change speed or direction
(first law). The amount of thrust (force) produced by a rocket
engine will be determined by the mass of rocket fuel that is
burned and how fast the gas escapes the rocket (second law). The
reaction, or motion, of the rocket is equal to and in the opposite
direction of the action, or thrust, from the engine (third law).
7/22/2019 www.sagarbhandari.com.np 4
HOW DO ROCKETS WORK?
7/22/2019 www.sagarbhandari.com.np 5
Specific Impulse Of A Rocket
7/22/2019 www.sagarbhandari.com.np 6
From Newton's second law of motion, we can define a force to be the change in
momentum of an object with a change in time. Momentum is the object's mass
times the velocity. When dealing with a gas, the basic thrust equation is given as:
F = mdot e * Ve - mdot 0 * V0 + (pe - p0) * Ae
Thrust F is equal to the exit mass flow rate mdot e times the exit velocity Ve minus
the free stream mass flow rate mdot 0 times the free stream velocity V0 plus the
pressure difference across the engine pe - p0 times the engine area Ae.
For liquid or solid rocket engines, the propellants, fuel and oxidizer, are carried on
board. There is no free stream air brought into the propulsion system, so the thrust
equation simplifies to:
F = mdot * Ve + (pe - p0) * Ae
where we have dropped the exit designation on the mass flow rate.
7/22/2019 www.sagarbhandari.com.np 7
Using algebra, let us divide by mdot:
F / modt = Ve + (pe - p0) * Ae / mdot
We define a new velocity called the equivalent velocity Veq to be the velocity on
the right hand side of the above equation:
Veq = Ve + (pe - p0) * Ae / mdot
Then the rocket thrust equation becomes:
F = mdot * Veq
7/22/2019 www.sagarbhandari.com.np 8
The total impulse (I) of a rocket is defined as the average thrust times
the total time of firing. On the slide we show the total time as "delta t".
(delta is the Greek symbol that looks like a triangle):
I = F * delta t
Since the thrust may change with time, we can also define an integral
equation for the total impulse. Using the symbol (Sdt) for the integral,
we have:
I = S F dt
Substituting the equation for thrust given above:
I = S (mdot * Veq) dt
Remember that mdot is the mass flow rate; it is the amount of exhaust
mass per time that comes out of the rocket. Assuming the equivalent
velocity remains constant with time, we can integrate the equation to
get:
I = m * Veq
7/22/2019 www.sagarbhandari.com.np 9
where m is the total mass of the propellant. We can divide this equation by
the weight of the propellants to define the specific impulse. The word
"specific" just means "divided by weight". The specific impulse Isp is given
by:
Isp = Veq / g0
where g0 is the gravitational acceleration constant (32.2 ft/sec^2 in English
units, 9.8 m/sec^2 in metric units). Now, if we substitute for the equivalent
velocity in terms of the thrust:
Isp = F / (mdot * g0)
Mathematically, the Isp is a ratio of the thrust produced to the weight flow of
the propellants. A quick check of the units for Isp shows that:
Isp = m/sec / m/sec^2 = sec
7/22/2019 www.sagarbhandari.com.np 10
Internal ballistics
• is the study of the propulsion of a projectile.
• For rocket-propelled projectiles, internal ballistics covers the
period during which a rocket motor is providing thrust
7/22/2019 www.sagarbhandari.com.np 11
Performance Considerations Of Rockets
• Chamber pressure
• Ambient pressure, altitude
• Nozzle expansion area ratio
• Nozzle shape and exit angle
• Propellant and their composition
• Initial ambient temperature
7/22/2019 www.sagarbhandari.com.np 12
Rocket Igniters
• Igniters are defined as devices or
assemblies that release heat and
thereby initiate reaction of main
propellants.
• Igniters derive power from external
source or from a limited quantity of
stored energy.
• Igniters are mostly triggered by an
electrical signal
7/22/2019 www.sagarbhandari.com.np 13
Types of Igniters
• Solid Propellant igniters
• Pyrogen Igniters
• Pyrotechnic Igniters
• Liquid Propellant igniters
• Hypergolic
• Non hypergolic
• Gaseous Igniters
7/22/2019 www.sagarbhandari.com.np 14
Air Augmented Rockets
7/22/2019 www.sagarbhandari.com.np 15
• air augmented rockets denotes mixing of air with rocket exhaust.
• Two propulsion system with a common combustion chamber operate
in sequence.
• Also known as Ducted rocket
7/22/2019 www.sagarbhandari.com.np 16
Pulsed rocket motor
A pulsed rocket motor is typically defined as a multiple pulse solid-fuel
rocket motor.
This design overcomes the limitation of solid propellant motors that
they cannot be easily shut down and reignited.
The pulse rocket motor allows the motor to be burned in segments (or
pulses) that burn until completion of that segment. The next segment
(or pulse) can be ignited on command by either an onboard algorithm
or in pre-planned phase. All of the segments are contained in a single
rocket motor case as opposed to staged rocket motors
7/22/2019 www.sagarbhandari.com.np 17
Needs for Pulsed rocket
• The pulsed rocket motor is made by pouring each segment of
propellant separately. Between each segment is a barrier that
prevents the other segments from burning until ignited. At ignition of
a second pulse the burning of the propellant generally destroys the
barrier.
• The benefit of the pulse rocket motor is that by the command ignition
of the subsequent pulses, near optimal energy management of the
propellant burn can be accomplished. Each pulse can have different
thrust level, burn time, and achieved specific impulse depending on
the type of propellant used, its burn rate, its grain design, and the
current nozzle throat diameter.
7/22/2019 www.sagarbhandari.com.np 18
Micro Pulsed Rocket
7/22/2019 www.sagarbhandari.com.np 19
THANK YOU
7/22/2019 www.sagarbhandari.com.np 20

More Related Content

What's hot

The advantages of different types of propellants
The advantages of different types of propellantsThe advantages of different types of propellants
The advantages of different types of propellantsArya Ramaru
 
Liquid propulsion ppt
Liquid propulsion pptLiquid propulsion ppt
Liquid propulsion pptSreekanth G
 
The basics of Rocket Propulsion Part 1
The basics of Rocket Propulsion Part 1The basics of Rocket Propulsion Part 1
The basics of Rocket Propulsion Part 1Zack Wanambwa
 
NASA SLS Cryogenic Engine - Complete Explanation
NASA SLS Cryogenic Engine - Complete ExplanationNASA SLS Cryogenic Engine - Complete Explanation
NASA SLS Cryogenic Engine - Complete ExplanationGokul Lakshmanan
 
Cryogenic Rocket Engine
Cryogenic Rocket EngineCryogenic Rocket Engine
Cryogenic Rocket EnginePrem kumar
 
Solid rocket propellant
Solid rocket propellantSolid rocket propellant
Solid rocket propellantShivam Patel
 
Cryogenic rocket engines report
Cryogenic rocket engines reportCryogenic rocket engines report
Cryogenic rocket engines reportpandu_sravs
 
Cryogenic rocket engine
Cryogenic rocket engine Cryogenic rocket engine
Cryogenic rocket engine Sushil Lamba
 
Mechanical Engineering Project: Rocket Fuels
Mechanical Engineering Project: Rocket FuelsMechanical Engineering Project: Rocket Fuels
Mechanical Engineering Project: Rocket FuelsJJ Technical Solutions
 
Cryogenic engine in rocket propulsion uday
Cryogenic engine in rocket propulsion udayCryogenic engine in rocket propulsion uday
Cryogenic engine in rocket propulsion udayUday Kiran Tiruvalluri
 
Spacecraft Propulsion Report
Spacecraft Propulsion ReportSpacecraft Propulsion Report
Spacecraft Propulsion ReportNilesh Nawale
 
Cryogenic rocket engine
Cryogenic rocket engineCryogenic rocket engine
Cryogenic rocket engineGaurav Singh
 
Cyogenic rocket engine report
Cyogenic rocket engine reportCyogenic rocket engine report
Cyogenic rocket engine reportSelf-employed
 
Nuclear thermal rocket
Nuclear thermal rocketNuclear thermal rocket
Nuclear thermal rocketDeborah Joseph
 
cryogenic engine ppt by santosh
 cryogenic engine ppt by santosh cryogenic engine ppt by santosh
cryogenic engine ppt by santoshSantosh Santu
 
Cryogenic engines (india)
Cryogenic engines (india)Cryogenic engines (india)
Cryogenic engines (india)Karthik Nayak
 
Propulsion Systems ( Jet + Rocket )
Propulsion Systems ( Jet + Rocket )Propulsion Systems ( Jet + Rocket )
Propulsion Systems ( Jet + Rocket )Maninder Shingari
 

What's hot (20)

The advantages of different types of propellants
The advantages of different types of propellantsThe advantages of different types of propellants
The advantages of different types of propellants
 
Liquid propulsion ppt
Liquid propulsion pptLiquid propulsion ppt
Liquid propulsion ppt
 
Nuclear rocket engine
Nuclear rocket engineNuclear rocket engine
Nuclear rocket engine
 
The basics of Rocket Propulsion Part 1
The basics of Rocket Propulsion Part 1The basics of Rocket Propulsion Part 1
The basics of Rocket Propulsion Part 1
 
NASA SLS Cryogenic Engine - Complete Explanation
NASA SLS Cryogenic Engine - Complete ExplanationNASA SLS Cryogenic Engine - Complete Explanation
NASA SLS Cryogenic Engine - Complete Explanation
 
Nuclear rocket propulsion
Nuclear rocket propulsionNuclear rocket propulsion
Nuclear rocket propulsion
 
Cryogenic Rocket Engine
Cryogenic Rocket EngineCryogenic Rocket Engine
Cryogenic Rocket Engine
 
Gdjp unit-5(3-04-2019)
Gdjp unit-5(3-04-2019)Gdjp unit-5(3-04-2019)
Gdjp unit-5(3-04-2019)
 
Solid rocket propellant
Solid rocket propellantSolid rocket propellant
Solid rocket propellant
 
Cryogenic rocket engines report
Cryogenic rocket engines reportCryogenic rocket engines report
Cryogenic rocket engines report
 
Cryogenic rocket engine
Cryogenic rocket engine Cryogenic rocket engine
Cryogenic rocket engine
 
Mechanical Engineering Project: Rocket Fuels
Mechanical Engineering Project: Rocket FuelsMechanical Engineering Project: Rocket Fuels
Mechanical Engineering Project: Rocket Fuels
 
Cryogenic engine in rocket propulsion uday
Cryogenic engine in rocket propulsion udayCryogenic engine in rocket propulsion uday
Cryogenic engine in rocket propulsion uday
 
Spacecraft Propulsion Report
Spacecraft Propulsion ReportSpacecraft Propulsion Report
Spacecraft Propulsion Report
 
Cryogenic rocket engine
Cryogenic rocket engineCryogenic rocket engine
Cryogenic rocket engine
 
Cyogenic rocket engine report
Cyogenic rocket engine reportCyogenic rocket engine report
Cyogenic rocket engine report
 
Nuclear thermal rocket
Nuclear thermal rocketNuclear thermal rocket
Nuclear thermal rocket
 
cryogenic engine ppt by santosh
 cryogenic engine ppt by santosh cryogenic engine ppt by santosh
cryogenic engine ppt by santosh
 
Cryogenic engines (india)
Cryogenic engines (india)Cryogenic engines (india)
Cryogenic engines (india)
 
Propulsion Systems ( Jet + Rocket )
Propulsion Systems ( Jet + Rocket )Propulsion Systems ( Jet + Rocket )
Propulsion Systems ( Jet + Rocket )
 

Similar to Rocket Basic And Space Propulsion

09-LinearMomentumandCollisions.pdf
09-LinearMomentumandCollisions.pdf09-LinearMomentumandCollisions.pdf
09-LinearMomentumandCollisions.pdfRanaBustami1
 
What are the most viable forms of alternative propulsion for the future of sp...
What are the most viable forms of alternative propulsion for the future of sp...What are the most viable forms of alternative propulsion for the future of sp...
What are the most viable forms of alternative propulsion for the future of sp...Wilfrid Somogyi
 
IRJET - Electric Propulsion System – Ion Thruster
IRJET -  	  Electric Propulsion System – Ion ThrusterIRJET -  	  Electric Propulsion System – Ion Thruster
IRJET - Electric Propulsion System – Ion ThrusterIRJET Journal
 
Iaetsd exploding space travel
Iaetsd exploding space travelIaetsd exploding space travel
Iaetsd exploding space travelIaetsd Iaetsd
 
IRJET - Classifications of Pulsed Plasma Thrusters
IRJET -  	  Classifications of Pulsed Plasma ThrustersIRJET -  	  Classifications of Pulsed Plasma Thrusters
IRJET - Classifications of Pulsed Plasma ThrustersIRJET Journal
 
Aerospace Reactionless Propulsion and Earth Gravity Generator
Aerospace Reactionless Propulsion and Earth Gravity GeneratorAerospace Reactionless Propulsion and Earth Gravity Generator
Aerospace Reactionless Propulsion and Earth Gravity GeneratorElijah Hawk
 
Propulsion/Energy Concept
Propulsion/Energy ConceptPropulsion/Energy Concept
Propulsion/Energy ConceptElijah Hawk
 
A ballistic missile primer
A ballistic missile primerA ballistic missile primer
A ballistic missile primerarlei34
 
Rocket equation.pptx
Rocket equation.pptxRocket equation.pptx
Rocket equation.pptxAkash152858
 
Single Pendulum Gantry (SPG) 2013.4.17
Single Pendulum Gantry (SPG) 2013.4.17Single Pendulum Gantry (SPG) 2013.4.17
Single Pendulum Gantry (SPG) 2013.4.17WEI WEI
 
The SpaceDrive Project - First Results on EMDrive and Mach-Effect Thrusters
The SpaceDrive Project - First Results on EMDrive and Mach-Effect ThrustersThe SpaceDrive Project - First Results on EMDrive and Mach-Effect Thrusters
The SpaceDrive Project - First Results on EMDrive and Mach-Effect ThrustersSérgio Sacani
 
Nuclear thermal propulsion in space(NTP)
Nuclear thermal propulsion in space(NTP)Nuclear thermal propulsion in space(NTP)
Nuclear thermal propulsion in space(NTP)SANDIP THORAT
 

Similar to Rocket Basic And Space Propulsion (20)

09-LinearMomentumandCollisions.pdf
09-LinearMomentumandCollisions.pdf09-LinearMomentumandCollisions.pdf
09-LinearMomentumandCollisions.pdf
 
What are the most viable forms of alternative propulsion for the future of sp...
What are the most viable forms of alternative propulsion for the future of sp...What are the most viable forms of alternative propulsion for the future of sp...
What are the most viable forms of alternative propulsion for the future of sp...
 
IRJET - Electric Propulsion System – Ion Thruster
IRJET -  	  Electric Propulsion System – Ion ThrusterIRJET -  	  Electric Propulsion System – Ion Thruster
IRJET - Electric Propulsion System – Ion Thruster
 
Rockets by ayush
Rockets by ayushRockets by ayush
Rockets by ayush
 
K1304036670
K1304036670K1304036670
K1304036670
 
B02708012
B02708012B02708012
B02708012
 
Newton's Laws of Motion
Newton's Laws of MotionNewton's Laws of Motion
Newton's Laws of Motion
 
Iaetsd exploding space travel
Iaetsd exploding space travelIaetsd exploding space travel
Iaetsd exploding space travel
 
IRJET - Classifications of Pulsed Plasma Thrusters
IRJET -  	  Classifications of Pulsed Plasma ThrustersIRJET -  	  Classifications of Pulsed Plasma Thrusters
IRJET - Classifications of Pulsed Plasma Thrusters
 
Design of dual axis tracker wps
Design of dual axis tracker wpsDesign of dual axis tracker wps
Design of dual axis tracker wps
 
Aerospace Reactionless Propulsion and Earth Gravity Generator
Aerospace Reactionless Propulsion and Earth Gravity GeneratorAerospace Reactionless Propulsion and Earth Gravity Generator
Aerospace Reactionless Propulsion and Earth Gravity Generator
 
Propulsion/Energy Concept
Propulsion/Energy ConceptPropulsion/Energy Concept
Propulsion/Energy Concept
 
Brakes
BrakesBrakes
Brakes
 
A ballistic missile primer
A ballistic missile primerA ballistic missile primer
A ballistic missile primer
 
Nuclear ramjetflyer
Nuclear ramjetflyerNuclear ramjetflyer
Nuclear ramjetflyer
 
Flywheel apparatus
Flywheel apparatusFlywheel apparatus
Flywheel apparatus
 
Rocket equation.pptx
Rocket equation.pptxRocket equation.pptx
Rocket equation.pptx
 
Single Pendulum Gantry (SPG) 2013.4.17
Single Pendulum Gantry (SPG) 2013.4.17Single Pendulum Gantry (SPG) 2013.4.17
Single Pendulum Gantry (SPG) 2013.4.17
 
The SpaceDrive Project - First Results on EMDrive and Mach-Effect Thrusters
The SpaceDrive Project - First Results on EMDrive and Mach-Effect ThrustersThe SpaceDrive Project - First Results on EMDrive and Mach-Effect Thrusters
The SpaceDrive Project - First Results on EMDrive and Mach-Effect Thrusters
 
Nuclear thermal propulsion in space(NTP)
Nuclear thermal propulsion in space(NTP)Nuclear thermal propulsion in space(NTP)
Nuclear thermal propulsion in space(NTP)
 

Recently uploaded

ASME IX(9) 2007 Full Version .pdf
ASME IX(9)  2007 Full Version       .pdfASME IX(9)  2007 Full Version       .pdf
ASME IX(9) 2007 Full Version .pdfAhmedHussein950959
 
Scaling in conventional MOSFET for constant electric field and constant voltage
Scaling in conventional MOSFET for constant electric field and constant voltageScaling in conventional MOSFET for constant electric field and constant voltage
Scaling in conventional MOSFET for constant electric field and constant voltageRCC Institute of Information Technology
 
Hall booking system project report .pdf
Hall booking system project report  .pdfHall booking system project report  .pdf
Hall booking system project report .pdfKamal Acharya
 
Explosives Industry manufacturing process.pdf
Explosives Industry manufacturing process.pdfExplosives Industry manufacturing process.pdf
Explosives Industry manufacturing process.pdf884710SadaqatAli
 
Democratizing Fuzzing at Scale by Abhishek Arya
Democratizing Fuzzing at Scale by Abhishek AryaDemocratizing Fuzzing at Scale by Abhishek Arya
Democratizing Fuzzing at Scale by Abhishek Aryaabh.arya
 
The Benefits and Techniques of Trenchless Pipe Repair.pdf
The Benefits and Techniques of Trenchless Pipe Repair.pdfThe Benefits and Techniques of Trenchless Pipe Repair.pdf
The Benefits and Techniques of Trenchless Pipe Repair.pdfPipe Restoration Solutions
 
fundamentals of drawing and isometric and orthographic projection
fundamentals of drawing and isometric and orthographic projectionfundamentals of drawing and isometric and orthographic projection
fundamentals of drawing and isometric and orthographic projectionjeevanprasad8
 
Automobile Management System Project Report.pdf
Automobile Management System Project Report.pdfAutomobile Management System Project Report.pdf
Automobile Management System Project Report.pdfKamal Acharya
 
Fruit shop management system project report.pdf
Fruit shop management system project report.pdfFruit shop management system project report.pdf
Fruit shop management system project report.pdfKamal Acharya
 
CFD Simulation of By-pass Flow in a HRSG module by R&R Consult.pptx
CFD Simulation of By-pass Flow in a HRSG module by R&R Consult.pptxCFD Simulation of By-pass Flow in a HRSG module by R&R Consult.pptx
CFD Simulation of By-pass Flow in a HRSG module by R&R Consult.pptxR&R Consult
 
Halogenation process of chemical process industries
Halogenation process of chemical process industriesHalogenation process of chemical process industries
Halogenation process of chemical process industriesMuhammadTufail242431
 
Natalia Rutkowska - BIM School Course in Kraków
Natalia Rutkowska - BIM School Course in KrakówNatalia Rutkowska - BIM School Course in Kraków
Natalia Rutkowska - BIM School Course in Krakówbim.edu.pl
 
CME397 Surface Engineering- Professional Elective
CME397 Surface Engineering- Professional ElectiveCME397 Surface Engineering- Professional Elective
CME397 Surface Engineering- Professional Electivekarthi keyan
 
WATER CRISIS and its solutions-pptx 1234
WATER CRISIS and its solutions-pptx 1234WATER CRISIS and its solutions-pptx 1234
WATER CRISIS and its solutions-pptx 1234AafreenAbuthahir2
 
Construction method of steel structure space frame .pptx
Construction method of steel structure space frame .pptxConstruction method of steel structure space frame .pptx
Construction method of steel structure space frame .pptxwendy cai
 
LIGA(E)11111111111111111111111111111111111111111.ppt
LIGA(E)11111111111111111111111111111111111111111.pptLIGA(E)11111111111111111111111111111111111111111.ppt
LIGA(E)11111111111111111111111111111111111111111.pptssuser9bd3ba
 
shape functions of 1D and 2 D rectangular elements.pptx
shape functions of 1D and 2 D rectangular elements.pptxshape functions of 1D and 2 D rectangular elements.pptx
shape functions of 1D and 2 D rectangular elements.pptxVishalDeshpande27
 
NO1 Pandit Amil Baba In Bahawalpur, Sargodha, Sialkot, Sheikhupura, Rahim Yar...
NO1 Pandit Amil Baba In Bahawalpur, Sargodha, Sialkot, Sheikhupura, Rahim Yar...NO1 Pandit Amil Baba In Bahawalpur, Sargodha, Sialkot, Sheikhupura, Rahim Yar...
NO1 Pandit Amil Baba In Bahawalpur, Sargodha, Sialkot, Sheikhupura, Rahim Yar...Amil baba
 
Industrial Training at Shahjalal Fertilizer Company Limited (SFCL)
Industrial Training at Shahjalal Fertilizer Company Limited (SFCL)Industrial Training at Shahjalal Fertilizer Company Limited (SFCL)
Industrial Training at Shahjalal Fertilizer Company Limited (SFCL)MdTanvirMahtab2
 

Recently uploaded (20)

ASME IX(9) 2007 Full Version .pdf
ASME IX(9)  2007 Full Version       .pdfASME IX(9)  2007 Full Version       .pdf
ASME IX(9) 2007 Full Version .pdf
 
Scaling in conventional MOSFET for constant electric field and constant voltage
Scaling in conventional MOSFET for constant electric field and constant voltageScaling in conventional MOSFET for constant electric field and constant voltage
Scaling in conventional MOSFET for constant electric field and constant voltage
 
Hall booking system project report .pdf
Hall booking system project report  .pdfHall booking system project report  .pdf
Hall booking system project report .pdf
 
Explosives Industry manufacturing process.pdf
Explosives Industry manufacturing process.pdfExplosives Industry manufacturing process.pdf
Explosives Industry manufacturing process.pdf
 
Water Industry Process Automation and Control Monthly - May 2024.pdf
Water Industry Process Automation and Control Monthly - May 2024.pdfWater Industry Process Automation and Control Monthly - May 2024.pdf
Water Industry Process Automation and Control Monthly - May 2024.pdf
 
Democratizing Fuzzing at Scale by Abhishek Arya
Democratizing Fuzzing at Scale by Abhishek AryaDemocratizing Fuzzing at Scale by Abhishek Arya
Democratizing Fuzzing at Scale by Abhishek Arya
 
The Benefits and Techniques of Trenchless Pipe Repair.pdf
The Benefits and Techniques of Trenchless Pipe Repair.pdfThe Benefits and Techniques of Trenchless Pipe Repair.pdf
The Benefits and Techniques of Trenchless Pipe Repair.pdf
 
fundamentals of drawing and isometric and orthographic projection
fundamentals of drawing and isometric and orthographic projectionfundamentals of drawing and isometric and orthographic projection
fundamentals of drawing and isometric and orthographic projection
 
Automobile Management System Project Report.pdf
Automobile Management System Project Report.pdfAutomobile Management System Project Report.pdf
Automobile Management System Project Report.pdf
 
Fruit shop management system project report.pdf
Fruit shop management system project report.pdfFruit shop management system project report.pdf
Fruit shop management system project report.pdf
 
CFD Simulation of By-pass Flow in a HRSG module by R&R Consult.pptx
CFD Simulation of By-pass Flow in a HRSG module by R&R Consult.pptxCFD Simulation of By-pass Flow in a HRSG module by R&R Consult.pptx
CFD Simulation of By-pass Flow in a HRSG module by R&R Consult.pptx
 
Halogenation process of chemical process industries
Halogenation process of chemical process industriesHalogenation process of chemical process industries
Halogenation process of chemical process industries
 
Natalia Rutkowska - BIM School Course in Kraków
Natalia Rutkowska - BIM School Course in KrakówNatalia Rutkowska - BIM School Course in Kraków
Natalia Rutkowska - BIM School Course in Kraków
 
CME397 Surface Engineering- Professional Elective
CME397 Surface Engineering- Professional ElectiveCME397 Surface Engineering- Professional Elective
CME397 Surface Engineering- Professional Elective
 
WATER CRISIS and its solutions-pptx 1234
WATER CRISIS and its solutions-pptx 1234WATER CRISIS and its solutions-pptx 1234
WATER CRISIS and its solutions-pptx 1234
 
Construction method of steel structure space frame .pptx
Construction method of steel structure space frame .pptxConstruction method of steel structure space frame .pptx
Construction method of steel structure space frame .pptx
 
LIGA(E)11111111111111111111111111111111111111111.ppt
LIGA(E)11111111111111111111111111111111111111111.pptLIGA(E)11111111111111111111111111111111111111111.ppt
LIGA(E)11111111111111111111111111111111111111111.ppt
 
shape functions of 1D and 2 D rectangular elements.pptx
shape functions of 1D and 2 D rectangular elements.pptxshape functions of 1D and 2 D rectangular elements.pptx
shape functions of 1D and 2 D rectangular elements.pptx
 
NO1 Pandit Amil Baba In Bahawalpur, Sargodha, Sialkot, Sheikhupura, Rahim Yar...
NO1 Pandit Amil Baba In Bahawalpur, Sargodha, Sialkot, Sheikhupura, Rahim Yar...NO1 Pandit Amil Baba In Bahawalpur, Sargodha, Sialkot, Sheikhupura, Rahim Yar...
NO1 Pandit Amil Baba In Bahawalpur, Sargodha, Sialkot, Sheikhupura, Rahim Yar...
 
Industrial Training at Shahjalal Fertilizer Company Limited (SFCL)
Industrial Training at Shahjalal Fertilizer Company Limited (SFCL)Industrial Training at Shahjalal Fertilizer Company Limited (SFCL)
Industrial Training at Shahjalal Fertilizer Company Limited (SFCL)
 

Rocket Basic And Space Propulsion

  • 1. ROCKET AND SPACE PROPULSION Topics Covered Operating principle – specific impulse of a rocket – internal ballistics – performance considerations of rockets – types of igniters- preliminary concepts in nozzle-less propulsion – air augmented rockets – pulse rocket motors – static testing of rockets & instrumentation –safety considerations 7/22/2019 www.sagarbhandari.com.np 1
  • 2. Operating principle of Rockets A rocket in its simplest form is a chamber enclosing a gas under pressure. A small opening at one end of the chamber allows the gas to escape, and in doing so provides a thrust that propels the rocket in the opposite direction. A good example of this is a balloon. Air inside a balloon is compressed by the balloon's rubber walls. The air pushes back so that the inward and outward pressing forces are balanced. When the nozzle is released, air escapes through it and the balloon is propelled in the opposite direction 7/22/2019 www.sagarbhandari.com.np 2
  • 3. Newton's Laws of Motion. 1. Objects at rest will stay at rest and objects in motion will stay in motion in a straight line unless acted upon by an unbalanced force. 2. Force is equal to mass times acceleration. 3. For every action there is always an opposite and equal reaction. 7/22/2019 www.sagarbhandari.com.np 3
  • 4. A rocket can lift off from a launch pad only when it expels gas out of its engine. The rocket pushes on the gas, and the gas in turn pushes on the rocket. The whole process is very similar to riding a skateboard An unbalanced force must be exerted for a rocket to lift off from a launch pad or for a craft in space to change speed or direction (first law). The amount of thrust (force) produced by a rocket engine will be determined by the mass of rocket fuel that is burned and how fast the gas escapes the rocket (second law). The reaction, or motion, of the rocket is equal to and in the opposite direction of the action, or thrust, from the engine (third law). 7/22/2019 www.sagarbhandari.com.np 4
  • 5. HOW DO ROCKETS WORK? 7/22/2019 www.sagarbhandari.com.np 5
  • 6. Specific Impulse Of A Rocket 7/22/2019 www.sagarbhandari.com.np 6
  • 7. From Newton's second law of motion, we can define a force to be the change in momentum of an object with a change in time. Momentum is the object's mass times the velocity. When dealing with a gas, the basic thrust equation is given as: F = mdot e * Ve - mdot 0 * V0 + (pe - p0) * Ae Thrust F is equal to the exit mass flow rate mdot e times the exit velocity Ve minus the free stream mass flow rate mdot 0 times the free stream velocity V0 plus the pressure difference across the engine pe - p0 times the engine area Ae. For liquid or solid rocket engines, the propellants, fuel and oxidizer, are carried on board. There is no free stream air brought into the propulsion system, so the thrust equation simplifies to: F = mdot * Ve + (pe - p0) * Ae where we have dropped the exit designation on the mass flow rate. 7/22/2019 www.sagarbhandari.com.np 7
  • 8. Using algebra, let us divide by mdot: F / modt = Ve + (pe - p0) * Ae / mdot We define a new velocity called the equivalent velocity Veq to be the velocity on the right hand side of the above equation: Veq = Ve + (pe - p0) * Ae / mdot Then the rocket thrust equation becomes: F = mdot * Veq 7/22/2019 www.sagarbhandari.com.np 8
  • 9. The total impulse (I) of a rocket is defined as the average thrust times the total time of firing. On the slide we show the total time as "delta t". (delta is the Greek symbol that looks like a triangle): I = F * delta t Since the thrust may change with time, we can also define an integral equation for the total impulse. Using the symbol (Sdt) for the integral, we have: I = S F dt Substituting the equation for thrust given above: I = S (mdot * Veq) dt Remember that mdot is the mass flow rate; it is the amount of exhaust mass per time that comes out of the rocket. Assuming the equivalent velocity remains constant with time, we can integrate the equation to get: I = m * Veq 7/22/2019 www.sagarbhandari.com.np 9
  • 10. where m is the total mass of the propellant. We can divide this equation by the weight of the propellants to define the specific impulse. The word "specific" just means "divided by weight". The specific impulse Isp is given by: Isp = Veq / g0 where g0 is the gravitational acceleration constant (32.2 ft/sec^2 in English units, 9.8 m/sec^2 in metric units). Now, if we substitute for the equivalent velocity in terms of the thrust: Isp = F / (mdot * g0) Mathematically, the Isp is a ratio of the thrust produced to the weight flow of the propellants. A quick check of the units for Isp shows that: Isp = m/sec / m/sec^2 = sec 7/22/2019 www.sagarbhandari.com.np 10
  • 11. Internal ballistics • is the study of the propulsion of a projectile. • For rocket-propelled projectiles, internal ballistics covers the period during which a rocket motor is providing thrust 7/22/2019 www.sagarbhandari.com.np 11
  • 12. Performance Considerations Of Rockets • Chamber pressure • Ambient pressure, altitude • Nozzle expansion area ratio • Nozzle shape and exit angle • Propellant and their composition • Initial ambient temperature 7/22/2019 www.sagarbhandari.com.np 12
  • 13. Rocket Igniters • Igniters are defined as devices or assemblies that release heat and thereby initiate reaction of main propellants. • Igniters derive power from external source or from a limited quantity of stored energy. • Igniters are mostly triggered by an electrical signal 7/22/2019 www.sagarbhandari.com.np 13
  • 14. Types of Igniters • Solid Propellant igniters • Pyrogen Igniters • Pyrotechnic Igniters • Liquid Propellant igniters • Hypergolic • Non hypergolic • Gaseous Igniters 7/22/2019 www.sagarbhandari.com.np 14
  • 15. Air Augmented Rockets 7/22/2019 www.sagarbhandari.com.np 15
  • 16. • air augmented rockets denotes mixing of air with rocket exhaust. • Two propulsion system with a common combustion chamber operate in sequence. • Also known as Ducted rocket 7/22/2019 www.sagarbhandari.com.np 16
  • 17. Pulsed rocket motor A pulsed rocket motor is typically defined as a multiple pulse solid-fuel rocket motor. This design overcomes the limitation of solid propellant motors that they cannot be easily shut down and reignited. The pulse rocket motor allows the motor to be burned in segments (or pulses) that burn until completion of that segment. The next segment (or pulse) can be ignited on command by either an onboard algorithm or in pre-planned phase. All of the segments are contained in a single rocket motor case as opposed to staged rocket motors 7/22/2019 www.sagarbhandari.com.np 17
  • 18. Needs for Pulsed rocket • The pulsed rocket motor is made by pouring each segment of propellant separately. Between each segment is a barrier that prevents the other segments from burning until ignited. At ignition of a second pulse the burning of the propellant generally destroys the barrier. • The benefit of the pulse rocket motor is that by the command ignition of the subsequent pulses, near optimal energy management of the propellant burn can be accomplished. Each pulse can have different thrust level, burn time, and achieved specific impulse depending on the type of propellant used, its burn rate, its grain design, and the current nozzle throat diameter. 7/22/2019 www.sagarbhandari.com.np 18
  • 19. Micro Pulsed Rocket 7/22/2019 www.sagarbhandari.com.np 19