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83 | double cnWood() const { return mCNWood; } |
83 | double cnWood() const { return mCNWood; } |
84 | // turnover rates
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84 | // turnover rates
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85 | double turnoverLeaf() const { return mTurnoverLeaf; } |
85 | double turnoverLeaf() const { return mTurnoverLeaf; } |
86 | double turnoverRoot() const { return mTurnoverRoot; } |
86 | double turnoverRoot() const { return mTurnoverRoot; } |
87 | // snags
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87 | // snags
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88 | double snagKSW() const { return mSnagKSW; } |
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- | 88 | double snagKsw() const { return mSnagKSW; } |
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89 | double snagHalflife() const { return mSnagHalflife; } |
89 | double snagHalflife() const { return mSnagHalflife; } |
- | 90 | double snagKyl() const { return mSnagKYL; } ///< decomposition rate for labile matter (litter) used in soil model |
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- | 91 | double snagKyr() const { return mSnagKYR; } ///< decomposition rate for refractory matter (woody) used in soil model |
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- | 92 | ||
90 | // hd-values
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93 | // hd-values
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91 | void hdRange(const double dbh, double &rMinHD, double &rMaxHD) const; |
94 | void hdRange(const double dbh, double &rMinHD, double &rMaxHD) const; |
92 | // growth
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95 | // growth
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93 | double volumeFactor() const { return mVolumeFactor; } ///< factor for volume calculation: V = factor * D^2*H (incorporates density and the form of the bole) |
96 | double volumeFactor() const { return mVolumeFactor; } ///< factor for volume calculation: V = factor * D^2*H (incorporates density and the form of the bole) |
94 | double density() const { return mWoodDensity; } ///< density of stem wood [kg/m3] |
97 | double density() const { return mWoodDensity; } ///< density of stem wood [kg/m3] |
Line 155... | Line 158... | ||
155 | double mWoodDensity; ///< density of the wood [kg/m3] |
158 | double mWoodDensity; ///< density of the wood [kg/m3] |
156 | double mFormFactor; ///< taper form factor of the stem [-] used for volume / stem-mass calculation calculation |
159 | double mFormFactor; ///< taper form factor of the stem [-] used for volume / stem-mass calculation calculation |
157 | double mVolumeFactor; ///< factor for volume calculation |
160 | double mVolumeFactor; ///< factor for volume calculation |
158 | // snag dynamics
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161 | // snag dynamics
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159 | double mSnagKSW; ///< standing woody debris (swd) decomposition rate |
162 | double mSnagKSW; ///< standing woody debris (swd) decomposition rate |
- | 163 | double mSnagKYL; ///< decomposition rate for labile matter (litter) used in soil model |
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- | 164 | double mSnagKYR; ///< decomposition rate for refractory matter (woody) used in soil model |
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160 | double mSnagHalflife; ///< half-life-period of standing snags (years) |
165 | double mSnagHalflife; ///< half-life-period of standing snags (years) |
161 | // mortality
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166 | // mortality
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162 | double mDeathProb_intrinsic; ///< prob. of intrinsic death per year [0..1] |
167 | double mDeathProb_intrinsic; ///< prob. of intrinsic death per year [0..1] |
163 | double mDeathProb_stress; ///< max. prob. of death per year when tree suffering maximum stress |
168 | double mDeathProb_stress; ///< max. prob. of death per year when tree suffering maximum stress |
164 | // Aging
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169 | // Aging
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