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In diesem Kurs gibt es 4 Module
Discover the core principles of process safety and risk analysis in chemical engineering through our dynamic course. Gain expertise in modeling liquid and gas leaks, accurately assessing potential material releases, and calculating downwind exposures to toxic chemicals using state-of-the-art dispersion models. This course equips chemical engineers with essential skills to evaluate and mitigate hazardous concentrations effectively, ensuring industrial process safety. From theoretical foundations to practical applications, participants will learn to propose prevention measures and advance their careers in chemical engineering. Join us to elevate your proficiency in process safety and make a meaningful impact in the field.
After this module, you will be able to describe the terms that make up the mechanical energy balance. You will be able to apply the mechanical energy balance to derive a simple source model for a liquid leak through a hole and be able to extend the simple source model for liquid leak through a hold to account for a situation where the change in liquid level is significant. You will also be able to incorporate frictional losses in piping systems into liquid source model derivation.
Das ist alles enthalten
9 Videos4 Lektüren1 Aufgabe1 Diskussionsthema
Infos zu Modulinhalt anzeigen
9 Videos•Insgesamt 63 Minuten
Course Introduction•3 Minuten
Module 1 Introduction•2 Minuten
Toxic Chemical Releases•5 Minuten
Introduction to Source Models•6 Minuten
Mechanical Energy Balance•5 Minuten
Source Model for a Liquid Leak Through a Hole•11 Minuten
Source Model for a Liquid Leak Through the Bottom of a Tank•13 Minuten
Liquid Leak Example•10 Minuten
Accounting For Frictional Losses in Piping Systems•9 Minuten
4 Lektüren•Insgesamt 40 Minuten
A Note From UC Davis•10 Minuten
Try It Problems!•10 Minuten
Solution for Problem #1•10 Minuten
Solution for Problem #2•10 Minuten
1 Aufgabe•Insgesamt 30 Minuten
Module 1 Assignment•30 Minuten
1 Diskussionsthema•Insgesamt 10 Minuten
Learning Goals•10 Minuten
Soure Models: Gas Leaks
Modul 2•6 Stunden abzuschließen
Moduldetails
After this module, you will be able to apply the mechanical energy balance to derive a simple source model for a gas leak through a hole. You will also be able to use models of adiabatic and isothermal gas or vapor flows through pipes and understand challenges with deriving models for such flows. You will be able to estimate volatile vapor component concentrations in enclosed spaces and assess the potential for hazardous concentrations and be able to describe source model selection for scenarios involving flashing liquids.
Das ist alles enthalten
8 Videos4 Lektüren1 Aufgabe1 Diskussionsthema
Infos zu Modulinhalt anzeigen
8 Videos•Insgesamt 57 Minuten
Module 2 Introduction•1 Minute
Gas Flows•7 Minuten
Source Models for Gas Leak Through a Hole•15 Minuten
Gas Leak Example•5 Minuten
Gas Evolution From a Liquid Pool•9 Minuten
Evaporation Example•5 Minuten
Flashing Liquids•8 Minuten
Flashing Liquids Example•7 Minuten
4 Lektüren•Insgesamt 80 Minuten
Try It Problem #1 (Suggested Activity)•30 Minuten
Problem #1 Solution•10 Minuten
Try It Problem #2 (Suggested Activity)•30 Minuten
Problem #2 Solution•10 Minuten
1 Aufgabe•Insgesamt 30 Minuten
Module 2 Assignment•30 Minuten
1 Diskussionsthema•Insgesamt 180 Minuten
Try It Problem #3 (Suggested Activity)•180 Minuten
Dispersion: Plume Models
Modul 3•2 Stunden abzuschließen
Moduldetails
After this module, you will be able to describe air dispersion and the parameters required to describe it. You will be able to formulate neutrally buoyant plume dispersion models. You'll also be able to perform calculations using plume models and use results to identify potential hazardous situations and propose prevention/mitigation measures if necessary.
Das ist alles enthalten
6 Videos2 Lektüren1 Aufgabe
Infos zu Modulinhalt anzeigen
6 Videos•Insgesamt 47 Minuten
Module 3 Introduction•2 Minuten
Neutrally Buoyant Dispersion Models•11 Minuten
Plume Models•10 Minuten
Plume Model Example•9 Minuten
Toxic Effect Criteria•13 Minuten
Toxic Release Prevention and Mitigation•4 Minuten
2 Lektüren•Insgesamt 40 Minuten
Try It Problem! (Suggested Activity)•30 Minuten
Solution•10 Minuten
1 Aufgabe•Insgesamt 30 Minuten
Module 3 Assignment•30 Minuten
Dispersion: Puff Models
Modul 4•3 Stunden abzuschließen
Moduldetails
After this module, you will be able to formulate neutrally buoyant puff models and be able to describe isopleths and how they are used in evaluating puff models. You will be able to perform calculations using puff models and use results to identify potential hazardous situations and propose prevention/mitigation measures if necessary.
Das ist alles enthalten
7 Videos4 Lektüren1 Aufgabe1 Diskussionsthema
Infos zu Modulinhalt anzeigen
7 Videos•Insgesamt 41 Minuten
Module 4 Introduction•2 Minuten
Puff Models•7 Minuten
Total Integrated Dose at Ground Level•4 Minuten
Isopleths•5 Minuten
Example Application of Puff Model 1•10 Minuten
Example Application of Puff Model 2•11 Minuten
Course Summary•2 Minuten
4 Lektüren•Insgesamt 80 Minuten
Try It Problem! (Suggested Activity)•30 Minuten
Solution #1•10 Minuten
Try It Problem #2! (Suggested Activity)•30 Minuten
Solution #2•10 Minuten
1 Aufgabe•Insgesamt 30 Minuten
Module 4 Assignment•30 Minuten
1 Diskussionsthema•Insgesamt 10 Minuten
Self-Reflection•10 Minuten
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