Fixed-scope computational analysis for small manufacturers and product teams that need to see what their supplied geometry and operating conditions produce. Clear inputs, checked numerical results, field visualizations, and a traceable report, without a design recommendation or engineering approval.
See the computed behavior as a traceable record alongside prototype and qualified review.
Linear static or steady thermal analysis of one part and one defined question. Solved with an established finite-element solver, checked against a suitable numerical or analytical reference, and delivered as a concise data report.
Up to three structural and/or thermal variants evaluated under the same customer-approved conditions. The deliverable presents the requested quantities side by side and includes one agreed refinement iteration; Dorsonian does not select a preferred variant.
Computational fluid dynamics studies for electronics cooling, pressure drop, and flow distribution. The standard scope includes a baseline plus one practical design variation, with limits and operating points agreed before work starts.
Every report separates customer-supplied inputs, computational assumptions, numerical results, quality checks, and limitations. Test-data comparison is available when suitable customer measurements are supplied.
Physical prototypes cost time and money. Computational results can expose deformation, stress, temperature, pressure, or flow patterns earlier, while changes are still inexpensive.
A result is not the same as certainty. The value is a reproducible model, numerical checks, and a clear explanation of what the computed data does and does not show.
The engagement stays deliberately narrow. The customer supplies or approves geometry, material data, operating conditions, and any comparison criteria. Dorsonian runs and documents the computation without deciding whether a design is safe, adequate, compliant, or ready to build.
Every package presents requested quantities and field visualizations. No automatic winner or design instruction.
Inputs, assumptions, results, checks, and limitations stay in one auditable record. Calls are optional, not the workflow.
Every report includes the numerical checks supported by its run record. Analytical or test comparison is included when suitable evidence is available and written into scope.
The names, base scopes, timelines, and prices below match the current product definitions. Final scope, exclusions, inputs, and delivery date are fixed in the written quote.
A fixed-price computation on one part and one requested quantity set, enough to see the workflow and the resulting fields. Complete customer-approved geometry, material data, loads or thermal conditions, and requested outputs are required before the 5-day clock begins.
Early-client note: limited pilot pricing may be offered when the scope is a strong fit. Any testimonial or case-study permission is separate, optional, and agreed in writing; confidential work stays confidential.
Best suited to small manufacturers, product-development teams, machine builders, and independent designers who have usable CAD, defined operating conditions, and someone qualified to own the engineering interpretation:
A good first project has defined geometry, known operating conditions, requested output quantities, and a customer technical authority who owns interpretation and downstream engineering action.
Not a fit: PE-stamped or regulatory submissions, safety-critical sign-off, pressure-vessel certification, crash or explicit dynamics, certified fatigue life, combustion, multiphase flow, or work intended to replace required physical testing.
No solver name makes a result automatically correct. Confidence comes from suitable inputs, mesh and convergence checks, analytical sanity checks, transparent assumptions, and physical testing where consequences demand it.
The written scope identifies the independent check appropriate to the problem. A hand calculation, analytical solution, resistance network, engineering correlation, or supplied measurement is included when suitable inputs and evidence are available.
The report records mesh strategy, convergence or independence evidence, boundary conditions, and the requested scalar and field results.
When a client supplies suitable measurements, a separately scoped correlation step compares model and test. Dorsonian does not currently operate a physical test laboratory.
Results are computational information, not engineering advice, a safety or adequacy determination, a guarantee, certification, or PE-stamped analysis. The customer remains responsible for inputs, acceptance criteria, interpretation, design decisions, qualified review, regulatory compliance, and physical verification.
A deliberately small, legible engagement. You always know what you're paying for and what you're getting back.
Share the CAD, customer-approved operating conditions and material data, and the quantities you want reported. We reply in writing with fit, missing inputs, scope, exclusions, price, and date.
Geometry preparation, meshing, materials, and boundary conditions are documented from customer-supplied or customer-approved inputs.
Run numerical quality checks and an independent analytical sanity check. Compare with customer test data when correlation is included.
Receive a written report with inputs, assumptions, result fields, requested quantities, numerical checks, and limitations. Design selection and engineering approval remain with the customer.
A simulation nobody checked against reality is just a colorful picture.
Dorsonian Simulation is a small, remote computational-analysis practice. The method is intentionally written-first: customer-approved inputs, documented assumptions, focused computation, field visualization, numerical checks, and clearly stated limitations, so the reasoning behind every number stays inspectable long after the run finishes.
Send the part, customer-approved operating conditions, and the quantities or variants you want computed. The first reply will identify fit, missing inputs, scope, exclusions, and likely timing.
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