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1 | |||
187 | iland | 2 | #ifndef RESOURCEUNIT_H |
3 | #define RESOURCEUNIT_H |
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92 | Werner | 4 | |
5 | #include "tree.h" |
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189 | iland | 6 | #include "resourceunitspecies.h" |
180 | werner | 7 | #include "standstatistics.h" |
92 | Werner | 8 | |
9 | class SpeciesSet; |
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208 | werner | 10 | class Climate; |
241 | werner | 11 | class WaterCycle; |
92 | Werner | 12 | |
187 | iland | 13 | class ResourceUnit |
92 | Werner | 14 | { |
15 | public: |
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187 | iland | 16 | ResourceUnit(const int index); |
241 | werner | 17 | ~ResourceUnit(); |
255 | werner | 18 | |
234 | werner | 19 | // access to elements |
255 | werner | 20 | const Climate *climate() const { return mClimate; } ///< link to the climate on this resource unit |
21 | const WaterCycle *waterCycle() const { return mWater; } ///< water model of the unit |
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111 | Werner | 22 | SpeciesSet *speciesSet() const { return mSpeciesSet; } ///< get SpeciesSet this RU links to. |
255 | werner | 23 | ResourceUnitSpecies &resourceUnitSpecies(const Species *species); ///< get RU-Species-container of @p species from the RU |
234 | werner | 24 | const QVector<ResourceUnitSpecies> ruSpecies() const { return mRUSpecies; } |
105 | Werner | 25 | QVector<Tree> &trees() { return mTrees; } ///< reference to the tree list. |
143 | Werner | 26 | const QVector<Tree> &constTrees() const { return mTrees; } ///< reference to the tree list. |
255 | werner | 27 | |
234 | werner | 28 | // properties |
255 | werner | 29 | int index() const { return mIndex; } |
30 | const QRectF &boundingBox() const { return mBoundingBox; } |
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234 | werner | 31 | double area() const { return mPixelCount*100; } ///< get the resuorce unit area in m2 |
32 | double stockedArea() const { return mStockedArea; } ///< get the stocked area in m2 |
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255 | werner | 33 | |
107 | Werner | 34 | // actions |
111 | Werner | 35 | /// returns a modifiable reference to a free space inside the tree-vector. should be used for tree-init. |
36 | Tree &newTree(); |
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37 | /// addWLA() is called by each tree to aggregate the total weighted leaf area on a unit |
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212 | werner | 38 | void addWLA(const float LA, const float LRI) { mAggregatedWLA += LA*LRI; mAggregatedLA += LA; } |
251 | werner | 39 | void addLR(const float LA, const float LightResponse) { mAggregatedLR += LA*LightResponse; } |
230 | werner | 40 | /// function that distributes effective interception area according to the weight of Light response and LeafArea of the indivudal (@sa production()) |
251 | werner | 41 | double interceptedArea(const double LA, const double LightResponse) { return mEffectiveArea_perWLA * LA * LightResponse; } |
42 | void calculateInterceptedArea(); |
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43 | const double &LRImodifier() const { return mLRI_modification; } |
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111 | Werner | 44 | |
45 | // model flow |
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107 | Werner | 46 | void newYear(); ///< reset values for a new simulation year |
112 | Werner | 47 | void production(); ///< called after the LIP/LIF calc, before growth of individual trees |
180 | werner | 48 | void yearEnd(); ///< called after the growth of individuals |
107 | Werner | 49 | |
151 | iland | 50 | // stocked area calculation |
51 | void countStockedPixel(bool pixelIsStocked) { mPixelCount++; if (pixelIsStocked) mStockedPixelCount++; } |
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240 | werner | 52 | void createStandStatistics(); |
94 | Werner | 53 | // setup/maintenance |
157 | werner | 54 | void cleanTreeList(); |
111 | Werner | 55 | void setSpeciesSet(SpeciesSet *set); |
241 | werner | 56 | void setup(); ///< setup operations after the creation of the model space. |
208 | werner | 57 | void setClimate(Climate* climate) { mClimate = climate; } |
105 | Werner | 58 | void setBoundingBox(const QRectF &bb) { mBoundingBox = bb; } |
92 | Werner | 59 | private: |
113 | Werner | 60 | int mIndex; // internal index |
208 | werner | 61 | Climate *mClimate; ///< pointer to the climate object of this RU |
92 | Werner | 62 | SpeciesSet *mSpeciesSet; ///< pointer to the species set for this RU |
241 | werner | 63 | WaterCycle *mWater; ///< link to the Soil water calculation engine |
187 | iland | 64 | QVector<ResourceUnitSpecies> mRUSpecies; ///< data for this ressource unit per species |
92 | Werner | 65 | QVector<Tree> mTrees; ///< storage container for tree individuals |
105 | Werner | 66 | QRectF mBoundingBox; ///< bounding box (metric) of the RU |
251 | werner | 67 | double mAggregatedLA; ///< sum of leafArea |
68 | double mAggregatedWLA; ///< sum of lightResponse * LeafArea for all trees |
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69 | double mAggregatedLR; ///< sum of lightresponse*LA of the current unit |
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70 | double mEffectiveArea; ///< total "effective" area per resource unit, i.e. area of RU - non-stocked - beerLambert-loss |
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230 | werner | 71 | double mEffectiveArea_perWLA; ///< |
251 | werner | 72 | double mLRI_modification; |
230 | werner | 73 | |
151 | iland | 74 | int mPixelCount; ///< count of (Heightgrid) pixels thare are inside the RU |
75 | int mStockedPixelCount; ///< count of pixels that are stocked with trees |
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234 | werner | 76 | double mStockedArea; ///< size of stocked area |
180 | werner | 77 | StandStatistics mStatistics; ///< aggregate values on stand value |
92 | Werner | 78 | |
183 | werner | 79 | friend class RUWrapper; |
92 | Werner | 80 | }; |
81 | |||
200 | werner | 82 | #endif // RESOURCEUNIT_H |