{
  "_id": "6a1f142bb401979e7341e213",
  "Package": "pipenostics",
  "Type": "Package",
  "Title": "Diagnostics, Reliability and Predictive Maintenance of Pipeline\nSystems",
  "Version": "0.3.0",
  "Authors@R": "person(\"Yuri\", \"Possokhov\", email = \"omega1x@gmail.com\",\nrole = c(\"aut\", \"cre\"), comment = c(ORCID = \"0000-0002-3570-4337\"))",
  "Description": "Functions that represent some useful empirical and\ndata-driven models for heat loss, corrosion diagnostics, and\npredictive maintenance of pipeline systems. The package is\ndesigned for data analysts and engineers who are involved in\nexploratory or routine calculations. Methods are described in\nTimashev et al. (2016) <doi:10.1007/978-3-319-25307-7>,\nA.C.Reddy (2017) <doi:10.1016/j.matpr.2017.07.081>, Minenergo\n(2008) <https://docs.cntd.ru/document/902148459>, Minenergo\n(2005) <https://docs.cntd.ru/document/1200035568>, Xing LU.\n(2014) <doi:10.1080/23744731.2016.1258371>.",
  "URL": "https://omega1x.github.io/pipenostics/",
  "BugReports": "https://github.com/omega1x/pipenostics/issues",
  "License": "GPL-3",
  "Encoding": "UTF-8",
  "LazyData": "true",
  "RoxygenNote": "7.3.2",
  "Config/testthat/edition": "3",
  "Config/Needs/website": "rmarkdown",
  "Repository": "https://omega1x.r-universe.dev",
  "Date/Publication": "2025-09-19 08:43:58 UTC",
  "RemoteUrl": "https://github.com/omega1x/pipenostics",
  "RemoteRef": "HEAD",
  "RemoteSha": "d6dd9e2263b76fafc0f15b6d237997ede3e5e715",
  "NeedsCompilation": "no",
  "Packaged": {
    "Date": "2026-05-17 07:03:35 UTC",
    "User": "root"
  },
  "Author": "Yuri Possokhov [aut, cre] (ORCID:\n<https://orcid.org/0000-0002-3570-4337>)",
  "Maintainer": "Yuri Possokhov <omega1x@gmail.com>",
  "MD5sum": "23d0c8da7fa8ac96b151e54ca2af7d0e",
  "_user": "omega1x",
  "_type": "src",
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  "_created": "2026-05-17T07:03:35.000Z",
  "_published": "2026-06-02T17:34:35.246Z",
  "_distro": "noble",
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  "_host": "GitHub-Actions",
  "_upstream": "https://github.com/omega1x/pipenostics",
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    "author": "Yuri Possokhov <omega1@gmail.com>",
    "committer": "Yuri Possokhov <omega1@gmail.com>",
    "message": "version 0.3.0\n",
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  "_maintainer": {
    "name": "Yuri Possokhov",
    "email": "omega1x@gmail.com",
    "login": "omega1x",
    "description": "PhD, \nAI Senior Developer",
    "uuid": 33831805,
    "orcid": "0000-0002-3570-4337"
  },
  "_registered": true,
  "_dependencies": [
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      "package": "R",
      "version": ">= 3.5.0",
      "role": "Depends"
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    {
      "package": "checkmate",
      "role": "Imports"
    },
    {
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      "role": "Imports"
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  "_owner": "omega1x",
  "_selfowned": true,
  "_usedby": 0,
  "_updates": [
    {
      "week": "2025-38",
      "n": 1
    }
  ],
  "_tags": [],
  "_topics": [
    "district-heating",
    "heat-losses",
    "inline-inspection",
    "remaining-useful-life"
  ],
  "_stars": 1,
  "_userbio": {
    "uuid": 33831805,
    "type": "user",
    "name": "Yuri Possokhov",
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  "_devurl": "https://github.com/omega1x/pipenostics",
  "_pkgdown": "https://omega1x.github.io/pipenostics/",
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  "_rbuild": "4.6.0",
  "_assets": [
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    "extra/citation.json",
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    "extra/NEWS.txt",
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  "_releases": [
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      "date": "2021-03-02"
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      "version": "0.2.0",
      "date": "2024-04-04"
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  ],
  "_exports": [
    "b31crvl",
    "b31gacd",
    "b31gacl",
    "b31gafr",
    "b31gdep",
    "b31gmodpf",
    "b31gops",
    "b31gpf",
    "b31gsap",
    "b36d",
    "b36dwthv",
    "b36mass",
    "b36wth",
    "c_f",
    "c_k",
    "dnvpf",
    "dropg",
    "dropp",
    "dropt",
    "f_c",
    "f_k",
    "flowls",
    "flux_loss",
    "fric_buzzelli",
    "fric_romeo",
    "fric_vatankhan",
    "geoarea",
    "geodist",
    "inch_mm",
    "k_c",
    "k_f",
    "kgf_mpa",
    "loss_flux",
    "m278hlair",
    "m278hlcha",
    "m278hlund",
    "m278inshcm",
    "m325beta",
    "m325nhl",
    "m325nml",
    "m325nvl",
    "m325tracebw",
    "m325tracefw",
    "m325traceline",
    "mepof",
    "meteos",
    "mgtdhgeo",
    "mgtdhgeot",
    "mgtdhid",
    "mgtdhidt",
    "mm_inch",
    "mpa_kgf",
    "mpa_psi",
    "pcorrcpf",
    "psi_mpa",
    "re_m",
    "re_u",
    "re_v",
    "shell92pf",
    "strderate",
    "tracebw",
    "tracefw",
    "traceline"
  ],
  "_datasets": [
    {
      "name": "api5l3tdata",
      "title": "API 5L. Values of SMYS and UTS",
      "object": "api5l3tdata",
      "class": [
        "data.frame"
      ],
      "fields": [
        "grade",
        "smys",
        "uts",
        "origin"
      ],
      "rows": 57,
      "table": true,
      "tojson": true
    },
    {
      "name": "b31gdata",
      "title": "ASME B31G. Corrosion state of 12 pipes",
      "object": "b31gdata",
      "class": [
        "data.frame"
      ],
      "fields": [
        "maop",
        "d",
        "wth",
        "smys",
        "def",
        "depth",
        "l",
        "status",
        "design_pressure",
        "safe_pressure",
        "pressure_exceeding",
        "allowed_corrosion_depth",
        "A",
        "allowed_corrosion_length",
        "AP"
      ],
      "rows": 12,
      "table": true,
      "tojson": true
    },
    {
      "name": "b36pipedata",
      "title": "ASME B36.10M. Specifications of the manufactured pipes",
      "object": "b36pipedata",
      "class": [
        "data.frame"
      ],
      "fields": [
        "d",
        "wth",
        "rho",
        "mass",
        "origin"
      ],
      "rows": 6064,
      "table": true,
      "tojson": true
    },
    {
      "name": "m278insdata",
      "title": "Minenergo-278. Thermal conductivity terms of pipe insulation materials",
      "object": "m278insdata",
      "class": [
        "data.frame"
      ],
      "fields": [
        "id",
        "material",
        "lambda",
        "k"
      ],
      "rows": 39,
      "table": true,
      "tojson": true
    },
    {
      "name": "m278soildata",
      "title": "Minenergo-278. Thermal conductivity of subsoil surrounding pipe",
      "object": "m278soildata",
      "class": [
        "data.frame"
      ],
      "fields": [
        "subsoil",
        "state",
        "lambda"
      ],
      "rows": 15,
      "table": true,
      "tojson": true
    },
    {
      "name": "m325nhldata",
      "title": "Minenergo-325. Normative heat loss data",
      "object": "m325nhldata",
      "class": [
        "data.frame"
      ],
      "fields": [
        "source",
        "epoch",
        "laying",
        "exp5k",
        "insulation",
        "d",
        "temperature",
        "loss"
      ],
      "rows": 17328,
      "table": true,
      "tojson": true
    },
    {
      "name": "m325nxdata",
      "title": "Minenergo-325. Test bench of district heating network",
      "object": "m325nxdata",
      "class": [
        "data.frame"
      ],
      "fields": [
        "sender",
        "acceptor",
        "temperature",
        "pressure",
        "flow_rate",
        "a",
        "d",
        "wth",
        "len",
        "year",
        "insulation",
        "laying",
        "beta",
        "exp5k",
        "roughness",
        "inlet",
        "outlet"
      ],
      "rows": 26,
      "table": true,
      "tojson": true
    }
  ],
  "_help": [
    {
      "page": "pipenostics-package",
      "title": "pipenostics: Diagnostics, Reliability and Predictive Maintenance of Pipeline Systems",
      "topics": [
        "pipenostics-package",
        "pipenostics"
      ]
    },
    {
      "page": "api5l3tdata",
      "title": "API 5L. Values of SMYS and UTS",
      "topics": [
        "api5l3tdata"
      ]
    },
    {
      "page": "b31crvl",
      "title": "ASME B31G. Basic computer program CRVL.BAS",
      "concept": [
        "ASME B31G"
      ],
      "topics": [
        "b31crvl"
      ]
    },
    {
      "page": "b31gacd",
      "title": "ASME B31G. Allowable corrosion depth in pipe",
      "concept": [
        "ASME B31G"
      ],
      "topics": [
        "b31gacd"
      ]
    },
    {
      "page": "b31gacl",
      "title": "ASME B31G. Allowable corrosion length in pipe",
      "concept": [
        "ASME B31G"
      ],
      "topics": [
        "b31gacl"
      ]
    },
    {
      "page": "b31gafr",
      "title": "ASME B31G. A-factor",
      "concept": [
        "ASME B31G"
      ],
      "topics": [
        "b31gafr"
      ]
    },
    {
      "page": "b31gdata",
      "title": "ASME B31G. Corrosion state of 12 pipes",
      "topics": [
        "b31gdata"
      ]
    },
    {
      "page": "b31gdep",
      "title": "ASME B31G. Design pressure of pipe",
      "concept": [
        "ASME B31G"
      ],
      "topics": [
        "b31gdep"
      ]
    },
    {
      "page": "b31gmodpf",
      "title": "ASME B31G. Failure pressure of the corroded pipe (modified)",
      "concept": [
        "Failure estimation"
      ],
      "topics": [
        "b31gmodpf"
      ]
    },
    {
      "page": "b31gops",
      "title": "ASME B31G. Operational status of pipe",
      "concept": [
        "ASME B31G"
      ],
      "topics": [
        "b31gops"
      ]
    },
    {
      "page": "b31gpf",
      "title": "ASME B31G. Failure pressure of the corroded pipe (original)",
      "concept": [
        "Failure estimation"
      ],
      "topics": [
        "b31gpf"
      ]
    },
    {
      "page": "b31gsap",
      "title": "ASME B31G. Safe maximum pressure for the corroded area of pipe",
      "concept": [
        "ASME B31G"
      ],
      "topics": [
        "b31gsap"
      ]
    },
    {
      "page": "b36dwthv",
      "title": "ASME B36.10M. Verify the alignment between nominal pipe diameter and wall thickness",
      "concept": [
        "ASME B36.10M"
      ],
      "topics": [
        "b36dwthv"
      ]
    },
    {
      "page": "b36mass",
      "title": "ASME B36.10M. Estimate pipe mass",
      "concept": [
        "ASME B36.10M"
      ],
      "topics": [
        "b36d",
        "b36mass",
        "b36wth"
      ]
    },
    {
      "page": "b36pipedata",
      "title": "ASME B36.10M. Specifications of the manufactured pipes",
      "concept": [
        "ASME B36.10M"
      ],
      "topics": [
        "b36pipedata"
      ]
    },
    {
      "page": "celsius",
      "title": "Convert to Celsius scale",
      "concept": [
        "Measurement Unit Converter"
      ],
      "topics": [
        "c_f",
        "c_k"
      ]
    },
    {
      "page": "dnvpf",
      "title": "DNV-RP-F101. Failure pressure of the corroded pipe",
      "concept": [
        "Failure estimation"
      ],
      "topics": [
        "dnvpf"
      ]
    },
    {
      "page": "dropg",
      "title": "Flow rate drop in pipe",
      "concept": [
        "Regime tracing"
      ],
      "topics": [
        "dropg"
      ]
    },
    {
      "page": "dropp",
      "title": "Pressure drop in pipe",
      "concept": [
        "Regime tracing"
      ],
      "topics": [
        "dropp"
      ]
    },
    {
      "page": "dropt",
      "title": "Temperature drop in cylindrical steel pipe due heat loss",
      "concept": [
        "Regime tracing"
      ],
      "topics": [
        "dropt"
      ]
    },
    {
      "page": "fahrenheit",
      "title": "Convert to Fahrenheit scale",
      "concept": [
        "Measurement Unit Converter"
      ],
      "topics": [
        "f_c",
        "f_k"
      ]
    },
    {
      "page": "flowls",
      "title": "List all possible flow paths in district heating network",
      "topics": [
        "flowls"
      ]
    },
    {
      "page": "fric_buzzelli",
      "title": "Estimate pipe friction factor with Buzzelli formula",
      "concept": [
        "Fluid properties"
      ],
      "topics": [
        "fric_buzzelli"
      ]
    },
    {
      "page": "fric_romeo",
      "title": "Estimate pipe friction factor with Romeo's formula",
      "concept": [
        "Fluid properties"
      ],
      "topics": [
        "fric_romeo"
      ]
    },
    {
      "page": "fric_vatankhan",
      "title": "Estimate pipe friction factor with Vatankhah formula",
      "concept": [
        "Fluid properties"
      ],
      "topics": [
        "fric_vatankhan"
      ]
    },
    {
      "page": "geodist",
      "title": "Calculate geographical metrics",
      "concept": [
        "Geo Information"
      ],
      "topics": [
        "geoarea",
        "geodist"
      ]
    },
    {
      "page": "inch_mm",
      "title": "Millimeters to inches",
      "concept": [
        "Measurement Unit Converter"
      ],
      "topics": [
        "inch_mm"
      ]
    },
    {
      "page": "kelvin",
      "title": "Covert to Kelvin scale",
      "concept": [
        "Measurement Unit Converter"
      ],
      "topics": [
        "k_c",
        "k_f"
      ]
    },
    {
      "page": "kgf_mpa",
      "title": "Megapascals to kilogram-force per square",
      "concept": [
        "Measurement Unit Converter"
      ],
      "topics": [
        "kgf_mpa"
      ]
    },
    {
      "page": "flux",
      "title": "Convert heat flux to specific heat loss power",
      "concept": [
        "Measurement Unit Converter"
      ],
      "topics": [
        "flux_loss",
        "loss_flux"
      ]
    },
    {
      "page": "m278hlair",
      "title": "Minenergo-278. Normative heat loss of open-air pipe",
      "concept": [
        "Minenergo"
      ],
      "topics": [
        "m278hlair"
      ]
    },
    {
      "page": "m278hlcha",
      "title": "Minenergo-278. Normative heat loss of pipe in channel",
      "concept": [
        "Minenergo"
      ],
      "topics": [
        "m278hlcha"
      ]
    },
    {
      "page": "m278hlund",
      "title": "Minenergo-278. Normative heat loss of underground pipe",
      "concept": [
        "Minenergo"
      ],
      "topics": [
        "m278hlund"
      ]
    },
    {
      "page": "m278insdata",
      "title": "Minenergo-278. Thermal conductivity terms of pipe insulation materials",
      "concept": [
        "Minenergo"
      ],
      "topics": [
        "m278insdata"
      ]
    },
    {
      "page": "m278inshcm",
      "title": "Minenergo-278. Thermal conductivity of pipe insulation materials",
      "concept": [
        "Minenergo"
      ],
      "topics": [
        "m278inshcm"
      ]
    },
    {
      "page": "m278soildata",
      "title": "Minenergo-278. Thermal conductivity of subsoil surrounding pipe",
      "concept": [
        "Minenergo"
      ],
      "topics": [
        "m278soildata"
      ]
    },
    {
      "page": "m325beta",
      "title": "Minenergo-325. Local heat loss coefficient",
      "concept": [
        "Minenergo"
      ],
      "topics": [
        "m325beta"
      ]
    },
    {
      "page": "m325nhl",
      "title": "Minenergo-325. Normative heat loss of pipe",
      "concept": [
        "Minenergo"
      ],
      "topics": [
        "m325nhl"
      ]
    },
    {
      "page": "m325nhldata",
      "title": "Minenergo-325. Normative heat loss data",
      "concept": [
        "Minenergo"
      ],
      "topics": [
        "m325nhldata"
      ]
    },
    {
      "page": "m325nvl",
      "title": "Minenergo-325. Normative material loss of pipe",
      "concept": [
        "Minenergo"
      ],
      "topics": [
        "m325nml",
        "m325nvl"
      ]
    },
    {
      "page": "m325nxdata",
      "title": "Minenergo-325. Test bench of district heating network",
      "concept": [
        "Minenergo"
      ],
      "topics": [
        "m325nxdata"
      ]
    },
    {
      "page": "m325tracebw",
      "title": "Minenergo-325. Massively trace backwards thermal-hydraulic regime for district heating network",
      "concept": [
        "Regime tracing"
      ],
      "topics": [
        "m325tracebw"
      ]
    },
    {
      "page": "m325tracefw",
      "title": "Minenergo-325. Massively trace forwards thermal-hydraulic regime for district heating network",
      "concept": [
        "Regime tracing"
      ],
      "topics": [
        "m325tracefw"
      ]
    },
    {
      "page": "m325traceline",
      "title": "Minenergo-325. Trace thermal-hydraulic regime for linear segment of district heating network",
      "concept": [
        "Regime tracing"
      ],
      "topics": [
        "m325traceline"
      ]
    },
    {
      "page": "mepof",
      "title": "Probability of failure of the corroded pipe within maximum entropy",
      "concept": [
        "Failure estimation"
      ],
      "topics": [
        "mepof"
      ]
    },
    {
      "page": "meteos",
      "title": "Get list of weather stations (meteos)",
      "concept": [
        "Geo Information"
      ],
      "topics": [
        "meteos"
      ]
    },
    {
      "page": "mgtdh-iface",
      "title": "Get ground temperature",
      "concept": [
        "Geo Information"
      ],
      "topics": [
        "mgtdhgeo",
        "mgtdhgeot",
        "mgtdhid",
        "mgtdhidt"
      ]
    },
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