Work Flow Diagram
Any flow diagram is a generic concept for a diagram that is depicting a flow or some set of the dynamic relationships that can be found within some system. The term “flow diagram” itself can also be used as a synonym for a flowchart or work flow diagram in case the representation of the work is mentioned.Any flow diagram can be sometimes seen as a counterpart of some flowchart being created with the help of the ConceptDraw PRO diagramming and drawing software as well as the Workflow Diagrams solution taken from the ConceptDraw STORE application.
Work Flow Chart
What is a Work Flow Chart? It is a chart which visually displays the step-by-step transferring of data, documents and tasks during the work. ConceptDraw PRO extended with Workflow Diagrams solution from the Business Processes area of ConceptDraw Solution Park is the best software for drawing the Work Flow Chart of any complexity.Types of Flowcharts
A Flowchart is a graphically representation of the process, algorithm or the step-by-step solution of the problem. There are ten types of Flowcharts. Using the Flowcharts solution from the Diagrams area of ConceptDraw Solution Park you can easy and quickly design the Flowchart of any of these types.This work flow chart sample was redesigned from the picture "Weather Forecast" from the article "Simulation Workflows".
[iaas.uni-stuttgart.de/ forschung/ projects/ simtech/ sim-workflows.php]
"(1) The weather is predicted for a particular geological area. Hence, the workflow is fed with a model of the geophysical environment of ground, air and water for a requested area.
(2) Over a specified period of time (e.g. 6 hours) several different variables are measured and observed. Ground stations, ships, airplanes, weather balloons, satellites and buoys measure the air pressure, air/ water temperature, wind velocity, air humidity, vertical temperature profiles, cloud velocity, rain fall, and more.
(3) This data needs to be collected from the different sources and stored for later access.
(4) The collected data is analyzed and transformed into a common format (e.g. Fahrenheit to Celsius scale). The normalized values are used to create the current state of the atmosphere.
(5) Then, a numerical weather forecast is made based on mathematical-physical models (e.g. GFS - Global Forecast System, UKMO - United Kingdom MOdel, GME - global model of Deutscher Wetterdienst). The environmental area needs to be discretized beforehand using grid cells. The physical parameters measured in Step 2 are exposed in 3D space as timely function. This leads to a system of partial differential equations reflecting the physical relations that is solved numerically.
(6) The results of the numerical models are complemented with a statistical interpretation (e.g. with MOS - Model-Output-Statistics). That means the forecast result of the numerical models is compared to statistical weather data. Known forecast failures are corrected.
(7) The numerical post-processing is done with DMO (Direct Model Output): the numerical results are interpolated for specific geological locations.
(8) Additionally, a statistical post-processing step removes failures of measuring devices (e.g. using KALMAN filters).
(9) The statistical interpretation and the numerical results are then observed and interpreted by meteorologists based on their subjective experiences.
(10) Finally, the weather forecast is visualized and presented to interested people." [iaas.uni-stuttgart.de/ forschung/ projects/ simtech/ sim-workflows.php]
The example "Workflow diagram - Weather forecast" was drawn using the ConceptDraw PRO diagramming and vector drawing software extended with the Workflow Diagrams solution from the Business Processes area of ConceptDraw Solution Park.
[iaas.uni-stuttgart.de/ forschung/ projects/ simtech/ sim-workflows.php]
"(1) The weather is predicted for a particular geological area. Hence, the workflow is fed with a model of the geophysical environment of ground, air and water for a requested area.
(2) Over a specified period of time (e.g. 6 hours) several different variables are measured and observed. Ground stations, ships, airplanes, weather balloons, satellites and buoys measure the air pressure, air/ water temperature, wind velocity, air humidity, vertical temperature profiles, cloud velocity, rain fall, and more.
(3) This data needs to be collected from the different sources and stored for later access.
(4) The collected data is analyzed and transformed into a common format (e.g. Fahrenheit to Celsius scale). The normalized values are used to create the current state of the atmosphere.
(5) Then, a numerical weather forecast is made based on mathematical-physical models (e.g. GFS - Global Forecast System, UKMO - United Kingdom MOdel, GME - global model of Deutscher Wetterdienst). The environmental area needs to be discretized beforehand using grid cells. The physical parameters measured in Step 2 are exposed in 3D space as timely function. This leads to a system of partial differential equations reflecting the physical relations that is solved numerically.
(6) The results of the numerical models are complemented with a statistical interpretation (e.g. with MOS - Model-Output-Statistics). That means the forecast result of the numerical models is compared to statistical weather data. Known forecast failures are corrected.
(7) The numerical post-processing is done with DMO (Direct Model Output): the numerical results are interpolated for specific geological locations.
(8) Additionally, a statistical post-processing step removes failures of measuring devices (e.g. using KALMAN filters).
(9) The statistical interpretation and the numerical results are then observed and interpreted by meteorologists based on their subjective experiences.
(10) Finally, the weather forecast is visualized and presented to interested people." [iaas.uni-stuttgart.de/ forschung/ projects/ simtech/ sim-workflows.php]
The example "Workflow diagram - Weather forecast" was drawn using the ConceptDraw PRO diagramming and vector drawing software extended with the Workflow Diagrams solution from the Business Processes area of ConceptDraw Solution Park.
Workflow Diagrams
Workflow Diagrams solution extends ConceptDraw PRO software with samples, templates and vector stencils library for drawing the work process flowcharts.
SDL Diagram
Specification and Description Language (SDL) is used for creating the object-oriented diagrams, visualizing the processes of the state machines for the systems of communication, telecommunication, automotive, aviation and medical industries. SDL is a specification language for creating specifications, descriptions of the behavior, data, and inheritance for real-time systems.This sample shows the SDL Diagram of the process game.
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The Social Media Response solution creates interactive social media flow charts and action mind maps. The solution includes a video tutorial and a number of samples helping social media teams refine and organize their response process.How to Design Landscape
How to design landscape? You can draw it by hand on a sheet of paper, but for this you need to know the bases of the perspective, you need to have good artistic abilities and to know how to depict the natural elements. But it is much easier and convenient to use the modern ConceptDraw PRO diagramming and vector drawing software extended with Landscape & Garden Solution from the Building Plans Area.Work Flow Process Chart
Workflow Diagram - workflow process diagram is a visual representation of a organizational process flow. Often it used as the same visual notation as process flow diagram. Visualising business processes using workflow diagram (workflow process diagram) allows estimate business process efficiency, analyse and optimize the process itself. Workflow diagram helps get focusing on each step and relations between workflow steps. ConceptDraw PRO is software for making workflow diagram. It contains specific designed graphics to draw workflow diagrams effectively. This is workflow diagram maker which do your work process effective.- Workflow diagram - Weather forecast | How to Connect Social Media ...
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