forked from ddrilling/AsbCloudServer
240 lines
10 KiB
C#
240 lines
10 KiB
C#
using AsbCloudApp.Data;
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using AsbCloudApp.Data.DetectedOperation;
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using AsbCloudApp.Data.SAUB;
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using AsbCloudApp.Repositories;
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using AsbCloudApp.Requests;
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using AsbCloudApp.Services;
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using AsbCloudDb.Model;
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using AsbCloudInfrastructure.Services.DetectOperations;
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using Microsoft.Extensions.DependencyInjection;
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using System;
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using System.Collections.Generic;
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using System.Linq;
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using System.Threading;
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using System.Threading.Tasks;
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namespace AsbCloudInfrastructure.Background.PeriodicWorks
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{
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/// <summary>
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/// задача по добавлению данных в таблицу DataSaubStat, которая используется дл построения РТК-отчета
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/// </summary>
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internal class WorkDataSaubStat : Work
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{
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private int Gap = 60;
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public WorkDataSaubStat() : base("Generate DataSaubStat entries and save them into Db")
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{
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Timeout = TimeSpan.FromMinutes(10);
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}
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protected override async Task Action(string id, IServiceProvider services, Action<string, double?> onProgressCallback, CancellationToken token)
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{
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var telemetryDataCache = services.GetRequiredService<ITelemetryDataCache<TelemetryDataSaubDto>>();
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var cacheRequest = new TelemetryDataRequest()
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{
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GeDate = DateTime.UtcNow.AddDays(-Gap)
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};
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var idTelemetries = telemetryDataCache.GetIds(cacheRequest).ToArray();
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if (!idTelemetries.Any())
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return;
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var dataSaubStatRepo = services.GetRequiredService<IDataSaubStatRepository>();
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var dataSaubService = services.GetRequiredService<ITelemetryDataSaubService>();
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var detectedOperationRepository = services.GetRequiredService<IDetectedOperationRepository>();
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var stats = await dataSaubStatRepo.GetLastsAsync(idTelemetries, token);
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for( var i =0; i < idTelemetries.Length; i++)
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{
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var idTelemetry = idTelemetries[i];
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var lastDate = stats.FirstOrDefault(s => s.IdTelemetry == idTelemetry)?.DateEnd.ToUniversalTime() ?? DateTimeOffset.UnixEpoch;
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var statsCount = await CreateStatForTelemetryFromDate(idTelemetry, lastDate, dataSaubService, dataSaubStatRepo, detectedOperationRepository, token);
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onProgressCallback($"Calculate stat for telemetry: {idTelemetry}; from {lastDate}; results count: {statsCount};", 100*i / idTelemetries.Length);
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}
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}
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private static async Task<int> CreateStatForTelemetryFromDate(
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int idTelemetry,
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DateTimeOffset begin,
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ITelemetryDataSaubService dataSaubService,
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IDataSaubStatRepository dataSaubStatRepo,
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IDetectedOperationRepository detectedOperationRepository,
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CancellationToken token)
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{
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var detectedOperationRequest = new DetectedOperationByTelemetryRequest {
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GeDateStart = begin,
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IdTelemetry = idTelemetry,
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IdsCategories = WellOperationCategory.MechanicalDrillingSubIds,
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SortFields = new[] {nameof(DetectedOperation.DateStart) },
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Take = 250,
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};
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var detectedOperations = await detectedOperationRepository.Get(detectedOperationRequest, token);
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if (!detectedOperations.Any())
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return 0;
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var geDate = detectedOperations.First().DateStart;
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var leDate = detectedOperations.OrderByDescending(d => d.DateEnd).First().DateEnd;
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var dataSaub = await dataSaubService.Get(idTelemetry, true, geDate, leDate, 100_000, token);
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if (!dataSaub.Any())
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return 0;
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if(dataSaub is not TelemetryDataSaubDto[] dataSaubArray)
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dataSaubArray = dataSaub.ToArray();
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var dataSaubStats = CreateDataSaubStat(detectedOperations, dataSaubArray);
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return await dataSaubStatRepo.InsertRangeAsync(dataSaubStats, token);
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}
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private static IEnumerable<DataSaubStatDto> CreateDataSaubStat(IEnumerable<DetectedOperationDto> detectedOperations, TelemetryDataSaubDto[] dataSaub)
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{
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var indexStart = 0;
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var indexEnd = 0;
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var result = new List<DataSaubStatDto>();
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if (!dataSaub.Any())
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return result;
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foreach (var operation in detectedOperations)
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{
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indexStart = Array.FindIndex(dataSaub, indexEnd, t => t.DateTime >= operation.DateStart);
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if (indexStart < 0)
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break;
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indexEnd = Array.FindIndex(dataSaub, indexStart, t => t.DateTime > operation.DateEnd);
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if (indexEnd < 0)
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indexEnd = dataSaub.Length - 1;
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if (indexEnd == indexStart)
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continue;
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var length = indexEnd - indexStart;
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var subset = dataSaub.AsSpan(indexStart, length);
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var stats = CalcStats(operation, subset);
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result.AddRange(stats);
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}
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return result;
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}
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private static IEnumerable<DataSaubStatDto> CalcStats(DetectedOperationDto operation, Span<TelemetryDataSaubDto> dataSaub)
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{
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var result = new List<DataSaubStatDto>();
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var indexStart = 0;
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for (var i = 1; i < dataSaub.Length; i++)
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{
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var previous = dataSaub[i - 1];
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var current = dataSaub[i];
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if (IsNewCacheItem(previous, current) || i == dataSaub.Length - 1)
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{
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var length = i - indexStart;
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var span = dataSaub.Slice(indexStart, length);
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indexStart = i;
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if (length <= 2 || (span[^1].WellDepth - span[0].WellDepth) < 0.001)
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continue; // мелкие выборки не учитываем.
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var stat = CalcStat(operation, span);
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result.Add(stat);
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}
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}
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return result;
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}
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private static DataSaubStatDto CalcStat(DetectedOperationDto operation, Span<TelemetryDataSaubDto> span)
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{
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var hasOscillation = EnabledSubsystemsFlags.AutoOscillation.HasEnabledSubsystems(operation.EnabledSubsystems);
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var aggregatedValues = CalcAggregate(span);
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var dateStart = span[0].DateTime;
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var dateEnd = span[^1].DateTime;
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var depthStart = span[0].WellDepth;
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var depthEnd = span[^1].WellDepth;
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var speed = ((depthEnd - depthStart) / (dateEnd - dateStart).TotalHours);
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var processMapDrillingCacheItem = new DataSaubStatDto
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{
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DateStart = dateStart,
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DateEnd = dateEnd,
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DepthStart = depthStart,
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DepthEnd = depthEnd,
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Speed = speed,
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BlockSpeedSp = span[0].BlockSpeedSp,
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Pressure = aggregatedValues.Pressure,
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PressureIdle = span[0].PressureIdle,
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PressureSp = span[0].PressureSp,
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AxialLoad = aggregatedValues.AxialLoad,
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AxialLoadSp = span[0].AxialLoadSp,
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AxialLoadLimitMax = span[0].AxialLoadLimitMax,
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RotorTorque = aggregatedValues.RotorTorque,
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RotorTorqueSp = span[0].RotorTorqueSp,
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RotorTorqueLimitMax = span[0].RotorTorqueLimitMax,
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IdFeedRegulator = span[0].IdFeedRegulator,
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RotorSpeed = aggregatedValues.RotorSpeed,
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IdCategory = operation.IdCategory,
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EnabledSubsystems = operation.EnabledSubsystems,
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HasOscillation = hasOscillation,
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IdTelemetry = operation.IdTelemetry,
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Flow = aggregatedValues.Flow
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};
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return processMapDrillingCacheItem;
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}
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private static (
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double Pressure,
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double AxialLoad,
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double RotorTorque,
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double RotorSpeed,
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double Flow
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) CalcAggregate(Span<TelemetryDataSaubDto> span)
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{
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var sumPressure = 0.0;
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var sumAxialLoad = 0.0;
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var sumRotorTorque = 0.0;
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var sumRotorSpeed = 0.0;
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var flow = span[0].Flow ?? 0.0;
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var diffDepthTotal = span[^1].WellDepth - span[0].WellDepth;
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for (var i = 0; i < span.Length - 1; i++)
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{
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var diffDepth = span[i + 1].WellDepth - span[i].WellDepth;
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sumPressure += diffDepth * span[i].Pressure;
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sumAxialLoad += diffDepth * span[i].AxialLoad;
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sumRotorTorque += diffDepth * span[i].RotorTorque;
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sumRotorSpeed += diffDepth * span[i].RotorSpeed;
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flow = span[i + 1].Flow > flow ? span[i + 1].Flow ?? 0.0 : flow;
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}
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return (
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Pressure: sumPressure / diffDepthTotal,
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AxialLoad: sumAxialLoad / diffDepthTotal,
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RotorTorque: sumRotorTorque / diffDepthTotal,
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RotorSpeed: sumRotorSpeed / diffDepthTotal,
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Flow: flow
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);
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}
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private static bool IsNewCacheItem(TelemetryDataSaubDto previous, TelemetryDataSaubDto current)
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{
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return !(current.Mode == previous.Mode)
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|| !(current.WellDepth >= previous.WellDepth)
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|| !(current.BlockSpeedSp == previous.BlockSpeedSp)
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|| !(current.PressureIdle == previous.PressureIdle)
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|| !(current.PressureSp == previous.PressureSp)
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|| !(current.AxialLoadSp == previous.AxialLoadSp)
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|| !(current.AxialLoadLimitMax == previous.AxialLoadLimitMax)
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|| !(current.HookWeightIdle == previous.HookWeightIdle)
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|| !(current.RotorTorqueIdle == previous.RotorTorqueIdle)
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|| !(current.RotorTorqueSp == previous.RotorTorqueSp)
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|| !(current.RotorTorqueLimitMax == previous.RotorTorqueLimitMax)
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|| !(current.IdFeedRegulator == previous.IdFeedRegulator);
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}
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}
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}
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