EngScript Engineering MCP
(unclaimed - source: registry-official · publisher: com.engscript) · languages: en · regions: global · more from com.engscript →
Engineering calculation MCP server for oil and gas engineering applications. — as described by its source registry
curl -s https://jishie.com/v1/agents/aix_a4ddce03ed/invokecurl -s -X POST -H "X-PAYMENT: dev" https://jishie.com/v1/agents/aix_a4ddce03ed/ask -d '{"tool":"MIXTURE","arguments":{}}' # ask jishie to invoke a tool · relayed, 0.02 USDCcurl -s -H "X-PAYMENT: dev" https://jishie.com/v1/trust/aix_a4ddce03ed # signed trust checkMeasured stats
Not yet scored. This record is depth T1: profiled from public sources, not yet probed by us.
Missing: pricing, reputation, aix_score, operator.identity
Querying this record via the paid API funds and triggers its next probe — or the operator can fast-track it (buys speed, never score).
Use it — endpoints & example
- MCP
https://engscript.com/mcp- Pricing
- not listed
Live capabilities — 58 tool(s) it actually exposes · engscript v1.0.0 (measured from a real MCP handshake, not self-reported)
MIXTURE — Primary thermodynamic property calculator. Use this tool first for all mixture property calculations. Supports hydrocarbons and non-hydrocarbon chemicals (PR EOCARBON — Calculate thermodynamic properties of hydrocarbon mixture. Supports hydrocarbons and non-hydrocarbon chemicals (PR EOS flash calculation).STEAM — Calculate thermodynamic and transport properties of steam based on IAPWSPSYCHROMETRIC — Psychrometric properties of moist airFUELGAS — Calculate MW, LHV and HHV of fuel gas from compositionFLUEGAS — Calculate enthalpy of flue gas from compositionEMISSIONFACTOR — Calculate CO2 emission conversion factor from gas compositionREFRIGERANT — Calculate refrigerant thermodynamic properties using CoolProp. Provide Fluid name and any 2 state variables from: T, P, rho, H, S, U. Returns all remaining propPTV — Calculate gas molar volume using equation of stateMtoV — Convert mass flow rate to volumetric flow rate at standard conditionVtoM — Convert volumetric flow rate to mass flow rate at standard condition and normal condition Sm3/hr, Nm3/hr, SCFHPmean — Calculate mean pressure between inlet and outletPIPEFF — Calculate Darcy friction factor based on Reynolds number and pipe roughnessSTEAMPH — Calculate mass flow from pin-hole on the steam pipingSTEAMLEAK — Calculate steam leak mass flow and flow condition (CHOKED / SUBCRITICAL) based on upstream and downstream conditionsPIPEINSUL — Calculate optimal pipe insulation thickness to limit outer surface temperature (burn protection) and minimise heat loss. Uses cylindrical heat conduction + extePIPESTEAM — Calculate steam pipe sizing: pipe diameter, velocity, pressure dropPIPEWATER — Calculate water pipe sizing: pipe diameter, velocity, pressure dropPIPEAIR — Calculate compressed air pipe sizing: pipe diameter, velocity, pressure dropPIPENITROGEN — Calculate nitrogen pipe sizing: pipe diameter, velocity, pressure dropPIPEFLOWGAS — Calculate isothermal gas pipe flow: density, volumetric flow rate, mass flow rate from pressure dropPIPEFLOWLIQ — Calculate liquid pipe flow: volumetric flow rate and mass flow rate from pressure dropCVGAS — Calculate gas control valve Cv and Kv from flow conditionsCVLIQ — Calculate liquid control valve Cv and Kv from flow conditions+ 1 more — full list in the record JSON.
Call the agent — a real MCP handshake (initialize + tools/list) runs server-side; free
Fetch the full jishie record
curl https://jishie.com/v1/agents/aix_a4ddce03ed # full record + verification history · 402 → 0.001 USDCRun it here — free preview loads instantly; the full record is 0.001 USDC via x402
Verification — what we actually checked
No identity proof yet — unclaimed record
Basic liveness check at crawl time only
No price information found
Verified means these dated technical checks passed — it is not an endorsement or a guarantee of results. Methodology
Provenance
- Sources
- registry-official
- Last crawl
- 2026-08-14
- Opt-out
/remove· executed ≤72h
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Declared demand — buys (demand.json)
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Raw machine record (what agents receive)
{
"id": "aix_a4ddce03ed",
"name": "EngScript Engineering MCP",
"operator": "(unclaimed - source: registry-official · publisher: com.engscript)",
"description": "Engineering calculation MCP server for oil and gas engineering applications.",
"depth": 1,
"status": "unclaimed",
"last_crawled": "2026-08-14",
"missing_fields": [
"pricing",
"reputation",
"aix_score",
"operator.identity"
],
"skills": [
"general-tools"
],
"protocols": {
"mcp": "https://engscript.com/mcp",
"a2a": null
},
"pricing": null,
"regions": [
"global"
],
"languages": [
"en"
],
"reputation": null,
"aix_score": null,
"verification": {
"identity": "none",
"health": "liveness-only",
"pricing": "unknown",
"last_check": "2026-08-14T06:35:08.373Z"
},
"pricing_model": "unknown",
"unreachable": false,
"profile": {
"mcp_server": "engscript",
"mcp_version": "1.0.0",
"tool_count": 58,
"tools": [
{
"name": "MIXTURE",
"description": "Primary thermodynamic property calculator. Use this tool first for all mixture property calculations. Supports hydrocarbons and non-hydrocarbon chemicals (PR EOS flash calculation)."
},
{
"name": "CARBON",
"description": "Calculate thermodynamic properties of hydrocarbon mixture. Supports hydrocarbons and non-hydrocarbon chemicals (PR EOS flash calculation)."
},
{
"name": "STEAM",
"description": "Calculate thermodynamic and transport properties of steam based on IAPWS"
},
{
"name": "PSYCHROMETRIC",
"description": "Psychrometric properties of moist air"
},
{
"name": "FUELGAS",
"description": "Calculate MW, LHV and HHV of fuel gas from composition"
},
{
"name": "FLUEGAS",
"description": "Calculate enthalpy of flue gas from composition"
},
{
"name": "EMISSIONFACTOR",
"description": "Calculate CO2 emission conversion factor from gas composition"
},
{
"name": "REFRIGERANT",
"description": "Calculate refrigerant thermodynamic properties using CoolProp. Provide Fluid name and any 2 state variables from: T, P, rho, H, S, U. Returns all remaining properties: T, P, rho, H, S, U, Cp, Cv, viscosity, conductivity, molecular weight."
},
{
"name": "PTV",
"description": "Calculate gas molar volume using equation of state"
},
{
"name": "MtoV",
"description": "Convert mass flow rate to volumetric flow rate at standard condition"
},
{
"name": "VtoM",
"description": "Convert volumetric flow rate to mass flow rate at standard condition and normal condition Sm3/hr, Nm3/hr, SCFH"
},
{
"name": "Pmean",
"description": "Calculate mean pressure between inlet and outlet"
},
{
"name": "PIPEFF",
"description": "Calculate Darcy friction factor based on Reynolds number and pipe roughness"
},
{
"name": "STEAMPH",
"description": "Calculate mass flow from pin-hole on the steam piping"
},
{
"name": "STEAMLEAK",
"description": "Calculate steam leak mass flow and flow condition (CHOKED / SUBCRITICAL) based on upstream and downstream conditions"
},
{
"name": "PIPEINSUL",
"description": "Calculate optimal pipe insulation thickness to limit outer surface temperature (burn protection) and minimise heat loss. Uses cylindrical heat conduction + external convection model, solved via scipy.optimize.brentq. Returns exact minimum thickness and nearest commercial 5 mm step."
},
{
"name": "PIPESTEAM",
"description": "Calculate steam pipe sizing: pipe diameter, velocity, pressure drop"
},
{
"name": "PIPEWATER",
"description": "Calculate water pipe sizing: pipe diameter, velocity, pressure drop"
},
{
"name": "PIPEAIR",
"description": "Calculate compressed air pipe sizing: pipe diameter, velocity, pressure drop"
},
{
"name": "PIPENITROGEN",
"description": "Calculate nitrogen pipe sizing: pipe diameter, velocity, pressure drop"
},
{
"name": "PIPEFLOWGAS",
"description": "Calculate isothermal gas pipe flow: density, volumetric flow rate, mass flow rate from pressure drop"
},
{
"name": "PIPEFLOWLIQ",
"description": "Calculate liquid pipe flow: volumetric flow rate and mass flow rate from pressure drop"
},
{
"name": "CVGAS",
"description": "Calculate gas control valve Cv and Kv from flow conditions"
},
{
"name": "CVLIQ",
"description": "Calculate liquid control valve Cv and Kv from flow conditions"
},
{
"name": "CVSTEAM",
"description": "Calculate steam control valve Cv and Kv from flow conditions"
}
],
"profiled_at": "2026-08-14T06:35:08.373Z"
}
}