Spaces:
Running
Running
Update app.py
Browse files
app.py
CHANGED
|
@@ -766,6 +766,30 @@ NO3_RATIO = 8.25
|
|
| 766 |
NH4_RATIO = 1.00
|
| 767 |
VOLUME_LITERS = 100
|
| 768 |
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
| 769 |
# Коэффициенты электропроводности
|
| 770 |
EC_COEFFICIENTS = {
|
| 771 |
'P': 0.0012, 'K': 0.0018, 'Mg': 0.0015,
|
|
@@ -793,36 +817,60 @@ class NutrientCalculator:
|
|
| 793 |
def __init__(self, volume_liters=1.0):
|
| 794 |
self.volume = volume_liters
|
| 795 |
self.results = {}
|
| 796 |
-
self.target_profile =
|
| 797 |
-
self.actual_profile = {}
|
| 798 |
-
self.fertilizers =
|
| 799 |
self.total_ec = 0.0
|
| 800 |
|
| 801 |
-
#
|
| 802 |
-
|
| 803 |
-
|
| 804 |
-
|
| 805 |
-
|
|
|
|
|
|
|
| 806 |
}
|
| 807 |
|
| 808 |
def _label(self, element):
|
|
|
|
| 809 |
labels = {
|
| 810 |
'N (NO3-)': 'NO3',
|
| 811 |
'N (NH4+)': 'NH4'
|
| 812 |
}
|
| 813 |
return labels.get(element, element)
|
| 814 |
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
| 815 |
def _apply(self, fert_name, main_element, required_ppm):
|
| 816 |
if required_ppm <= 0:
|
| 817 |
return
|
| 818 |
-
|
| 819 |
try:
|
| 820 |
-
content = self.fertilizers[fert_name]
|
| 821 |
-
if content == 0:
|
| 822 |
-
raise KeyError(f"Элемент {main_element} отсутствует в удобрении {fert_name}")
|
| 823 |
-
|
| 824 |
grams = (required_ppm * self.volume) / (content * 1000)
|
| 825 |
-
|
| 826 |
if fert_name not in self.results:
|
| 827 |
result = {
|
| 828 |
'граммы': 0.0,
|
|
@@ -832,146 +880,109 @@ class NutrientCalculator:
|
|
| 832 |
for element in self.fertilizers[fert_name]:
|
| 833 |
result[f'внесет {self._label(element)}'] = 0.0
|
| 834 |
self.results[fert_name] = result
|
| 835 |
-
|
| 836 |
self.results[fert_name]['граммы'] += grams
|
| 837 |
-
self.results[fert_name]['миллиграммы']
|
| 838 |
-
|
| 839 |
fert_ec = 0.0
|
| 840 |
for element, percent in self.fertilizers[fert_name].items():
|
| 841 |
added_ppm = (grams * percent * 1000) / self.volume
|
| 842 |
self.results[fert_name][f'внесет {self._label(element)}'] += added_ppm
|
| 843 |
-
self.actual_profile[element]
|
| 844 |
-
fert_ec += added_ppm * 0.0015
|
| 845 |
-
|
| 846 |
self.results[fert_name]['вклад в EC'] += fert_ec
|
| 847 |
self.total_ec += fert_ec
|
| 848 |
except KeyError as e:
|
| 849 |
-
print(f"Ошибка: {str(e)}")
|
| 850 |
raise
|
| 851 |
|
| 852 |
-
def
|
| 853 |
-
|
| 854 |
-
|
|
|
|
|
|
|
|
|
|
| 855 |
return
|
| 856 |
-
|
| 857 |
-
candidates = []
|
| 858 |
-
for weight_key, weight_data in self.compensation_weights.items():
|
| 859 |
-
fert_name = weight_data["fert"]
|
| 860 |
-
main_element = weight_data["main_element"]
|
| 861 |
-
|
| 862 |
-
if element in self.fertilizers.get(fert_name, {}):
|
| 863 |
-
candidates.append({
|
| 864 |
-
'name': fert_name,
|
| 865 |
-
'weight': weight_data["weight"],
|
| 866 |
-
'content': self.fertilizers[fert_name][element]
|
| 867 |
-
})
|
| 868 |
-
|
| 869 |
-
if not candidates:
|
| 870 |
-
raise ValueError(f"Нет удобрений для элемента {element}")
|
| 871 |
-
|
| 872 |
-
total_weight = sum(c['weight'] for c in candidates)
|
| 873 |
-
for candidate in candidates:
|
| 874 |
-
share = candidate['weight'] / total_weight
|
| 875 |
-
ppm_to_apply = needed * share
|
| 876 |
-
self._apply(candidate['name'], element, ppm_to_apply)
|
| 877 |
-
|
| 878 |
-
def calculate(self):
|
| 879 |
try:
|
| 880 |
-
|
| 881 |
-
|
| 882 |
-
|
| 883 |
-
|
| 884 |
-
|
| 885 |
-
|
| 886 |
-
|
| 887 |
-
|
| 888 |
-
|
| 889 |
-
|
| 890 |
-
|
| 891 |
-
|
| 892 |
-
|
| 893 |
-
self._compensate_element("N (NO3-)")
|
| 894 |
-
|
| 895 |
-
# Компенсируем серу
|
| 896 |
-
self._compensate_element("S")
|
| 897 |
-
|
| 898 |
-
# Компенсируем калий
|
| 899 |
-
self._compensate_element("K")
|
| 900 |
-
|
| 901 |
-
return self.results
|
| 902 |
except Exception as e:
|
| 903 |
-
print(f"Ошибка при
|
| 904 |
raise
|
| 905 |
|
|
|
|
|
|
|
| 906 |
|
| 907 |
-
|
| 908 |
-
|
| 909 |
-
|
| 910 |
-
|
| 911 |
-
|
| 912 |
-
|
| 913 |
-
|
| 914 |
-
|
| 915 |
-
|
| 916 |
-
|
| 917 |
-
|
| 918 |
-
|
| 919 |
-
|
| 920 |
-
|
| 921 |
-
|
| 922 |
-
"
|
| 923 |
-
|
| 924 |
-
|
| 925 |
-
|
| 926 |
-
|
| 927 |
-
|
| 928 |
-
"
|
| 929 |
-
|
| 930 |
-
|
| 931 |
-
|
| 932 |
-
|
| 933 |
-
|
| 934 |
-
|
| 935 |
-
|
| 936 |
-
|
| 937 |
-
|
| 938 |
-
|
| 939 |
-
|
| 940 |
-
|
| 941 |
-
|
| 942 |
-
|
| 943 |
-
|
| 944 |
-
"S": float(data['fertilizerConstants']["Калий сернокислый"].get("S", 0.18401))
|
| 945 |
}
|
| 946 |
-
|
| 947 |
-
|
| 948 |
-
|
| 949 |
-
|
| 950 |
-
|
| 951 |
-
|
| 952 |
-
|
| 953 |
-
|
| 954 |
-
'S': float(data['profileSettings'].get('S', 56.439)),
|
| 955 |
-
'N (NO3-)': 0.0,
|
| 956 |
-
'N (NH4+)': 0.0
|
| 957 |
-
}
|
| 958 |
-
|
| 959 |
-
# Установка параметров азота
|
| 960 |
-
total_n = float(data['profileSettings'].get('TOTAL_NITROGEN', 125.0))
|
| 961 |
-
no3_ratio = float(data['profileSettings'].get('NO3_RATIO', 8.25))
|
| 962 |
-
nh4_ratio = 1.0
|
| 963 |
|
| 964 |
-
|
| 965 |
-
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
| 966 |
|
| 967 |
-
# Выполнение расчета
|
| 968 |
-
results = calculator.calculate()
|
| 969 |
|
| 970 |
-
# Возвращение результатов в нужном формате
|
| 971 |
-
return jsonify({"results": results})
|
| 972 |
|
| 973 |
-
except Exception as e:
|
| 974 |
-
return jsonify({'error': str(e)}), 500
|
| 975 |
|
| 976 |
|
| 977 |
|
|
|
|
| 766 |
NH4_RATIO = 1.00
|
| 767 |
VOLUME_LITERS = 100
|
| 768 |
|
| 769 |
+
# Коэффициенты электропроводности
|
| 770 |
+
EC_COEFFICIENTS = {
|
| 771 |
+
'P': 0.0012, 'K': 0.0018, 'Mg': 0.0015,
|
| 772 |
+
'Ca': 0.0016, 'S': 0.0014,
|
| 773 |
+
'N (NO3-)': 0.0017, 'N (NH4+)': 0.0019
|
| 774 |
+
}
|
| 775 |
+
|
| 776 |
+
# Целевые значения
|
| 777 |
+
BASE_PROFILE = {
|
| 778 |
+
'P': 31.000, 'K': 210.000, 'Mg': 24.000,
|
| 779 |
+
'Ca': 84.000, 'S': 56.439,
|
| 780 |
+
'N (NO3-)': 0, 'N (NH4+)': 0
|
| 781 |
+
}
|
| 782 |
+
|
| 783 |
+
NUTRIENT_CONTENT_IN_FERTILIZERS = {
|
| 784 |
+
"Кальциевая селитра": {"N (NO3-)": 0.11863, "Ca": 0.16972},
|
| 785 |
+
"Калий азотнокислый": {"N (NO3-)": 0.136, "K": 0.382},
|
| 786 |
+
"Калий сернокислый": {"K": 0.44874, "S": 0.18401},
|
| 787 |
+
"Аммоний азотнокислый": {"N (NO3-)": 0.17499, "N (NH4+)": 0.17499},
|
| 788 |
+
"Сульфат магния": {"Mg": 0.09861, "S": 0.13010},
|
| 789 |
+
"Монофосфат калия": {"P": 0.218, "K": 0.275}
|
| 790 |
+
}
|
| 791 |
+
|
| 792 |
+
|
| 793 |
# Коэффициенты электропроводности
|
| 794 |
EC_COEFFICIENTS = {
|
| 795 |
'P': 0.0012, 'K': 0.0018, 'Mg': 0.0015,
|
|
|
|
| 817 |
def __init__(self, volume_liters=1.0):
|
| 818 |
self.volume = volume_liters
|
| 819 |
self.results = {}
|
| 820 |
+
self.target_profile = BASE_PROFILE.copy()
|
| 821 |
+
self.actual_profile = {k: 0.0 for k in BASE_PROFILE}
|
| 822 |
+
self.fertilizers = NUTRIENT_CONTENT_IN_FERTILIZERS
|
| 823 |
self.total_ec = 0.0
|
| 824 |
|
| 825 |
+
# Расчёт азота
|
| 826 |
+
total_parts = NO3_RATIO + NH4_RATIO
|
| 827 |
+
self.target_profile['N (NO3-)'] = TOTAL_NITROGEN * (NO3_RATIO / total_parts)
|
| 828 |
+
self.target_profile['N (NH4+)'] = TOTAL_NITROGEN * (NH4_RATIO / total_parts)
|
| 829 |
+
self.initial_n_profile = {
|
| 830 |
+
"NO3-": self.target_profile['N (NO3-)'],
|
| 831 |
+
"NH4+": self.target_profile['N (NH4+)']
|
| 832 |
}
|
| 833 |
|
| 834 |
def _label(self, element):
|
| 835 |
+
"""Форматирование названий элементов для вывода"""
|
| 836 |
labels = {
|
| 837 |
'N (NO3-)': 'NO3',
|
| 838 |
'N (NH4+)': 'NH4'
|
| 839 |
}
|
| 840 |
return labels.get(element, element)
|
| 841 |
|
| 842 |
+
def calculate(self):
|
| 843 |
+
try:
|
| 844 |
+
self._apply("Сульфат магния", "Mg", self.target_profile['Mg'])
|
| 845 |
+
self._apply("Кальциевая селитра", "Ca", self.target_profile['Ca'])
|
| 846 |
+
self._apply("Монофосфат калия", "P", self.target_profile['P'])
|
| 847 |
+
self._apply("Аммоний азотнокислый", "N (NH4+)", self.target_profile['N (NH4+)'])
|
| 848 |
+
|
| 849 |
+
current_no3 = self.actual_profile['N (NO3-)']
|
| 850 |
+
no3_needed = self.target_profile['N (NO3-)'] - current_no3
|
| 851 |
+
|
| 852 |
+
if no3_needed > 0.1:
|
| 853 |
+
self._apply("Калий азотнокислый", "N (NO3-)", no3_needed)
|
| 854 |
+
|
| 855 |
+
self._apply_k_sulfate()
|
| 856 |
+
|
| 857 |
+
k_deficit = self.target_profile['K'] - self.actual_profile['K']
|
| 858 |
+
if k_deficit > 0.1:
|
| 859 |
+
self._apply("Калий азотнокислый", "K", k_deficit)
|
| 860 |
+
|
| 861 |
+
return self.results
|
| 862 |
+
except Exception as e:
|
| 863 |
+
print(f"Ошибка при расчёте: {str(e)}")
|
| 864 |
+
raise
|
| 865 |
+
|
| 866 |
def _apply(self, fert_name, main_element, required_ppm):
|
| 867 |
if required_ppm <= 0:
|
| 868 |
return
|
| 869 |
+
|
| 870 |
try:
|
| 871 |
+
content = self.fertilizers[fert_name][main_element]
|
|
|
|
|
|
|
|
|
|
| 872 |
grams = (required_ppm * self.volume) / (content * 1000)
|
| 873 |
+
|
| 874 |
if fert_name not in self.results:
|
| 875 |
result = {
|
| 876 |
'граммы': 0.0,
|
|
|
|
| 880 |
for element in self.fertilizers[fert_name]:
|
| 881 |
result[f'внесет {self._label(element)}'] = 0.0
|
| 882 |
self.results[fert_name] = result
|
| 883 |
+
|
| 884 |
self.results[fert_name]['граммы'] += grams
|
| 885 |
+
self.results[fert_name]['миллиграммы'] += int(grams * 1000)
|
| 886 |
+
|
| 887 |
fert_ec = 0.0
|
| 888 |
for element, percent in self.fertilizers[fert_name].items():
|
| 889 |
added_ppm = (grams * percent * 1000) / self.volume
|
| 890 |
self.results[fert_name][f'внесет {self._label(element)}'] += added_ppm
|
| 891 |
+
self.actual_profile[element] += added_ppm
|
| 892 |
+
fert_ec += added_ppm * EC_COEFFICIENTS.get(element, 0.0015)
|
| 893 |
+
|
| 894 |
self.results[fert_name]['вклад в EC'] += fert_ec
|
| 895 |
self.total_ec += fert_ec
|
| 896 |
except KeyError as e:
|
| 897 |
+
print(f"Ошибка: отсутствует элемент {str(e)} в удобрении {fert_name}")
|
| 898 |
raise
|
| 899 |
|
| 900 |
+
def _apply_k_sulfate(self):
|
| 901 |
+
fert = "Калий сернокислый"
|
| 902 |
+
k_def = self.target_profile['K'] - self.actual_profile['K']
|
| 903 |
+
s_def = self.target_profile['S'] - self.actual_profile['S']
|
| 904 |
+
|
| 905 |
+
if k_def <= 0 and s_def <= 0:
|
| 906 |
return
|
| 907 |
+
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
| 908 |
try:
|
| 909 |
+
if s_def > 0.1:
|
| 910 |
+
s_content = self.fertilizers[fert]["S"]
|
| 911 |
+
grams_s = (s_def * self.volume) / (s_content * 1000)
|
| 912 |
+
|
| 913 |
+
k_content = self.fertilizers[fert]["K"]
|
| 914 |
+
k_from_s = (grams_s * k_content * 1000) / self.volume
|
| 915 |
+
|
| 916 |
+
if k_from_s > k_def and k_def > 0.1:
|
| 917 |
+
grams = (k_def * self.volume) / (k_content * 1000)
|
| 918 |
+
else:
|
| 919 |
+
grams = grams_s
|
| 920 |
+
|
| 921 |
+
self._apply(fert, "S", s_def)
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
| 922 |
except Exception as e:
|
| 923 |
+
print(f"Ошибка при расчёте сульфата калия: {str(e)}")
|
| 924 |
raise
|
| 925 |
|
| 926 |
+
def calculate_ec(self):
|
| 927 |
+
return round(self.total_ec, 2)
|
| 928 |
|
| 929 |
+
def print_report(self):
|
| 930 |
+
try:
|
| 931 |
+
print("\n" + "="*60)
|
| 932 |
+
print("ПРОФИЛЬ ПИТАТЕЛЬНОГО РАСТВОРА (ИТОГО):")
|
| 933 |
+
print("="*60)
|
| 934 |
+
table = [[el, round(self.actual_profile[el], 1)] for el in self.actual_profile]
|
| 935 |
+
print(tabulate(table, headers=["Элемент", "ppm"]))
|
| 936 |
+
|
| 937 |
+
print("\nИсходный расчёт азота:")
|
| 938 |
+
for form, val in self.initial_n_profile.items():
|
| 939 |
+
print(f" {form}: {round(val, 1)} ppm")
|
| 940 |
+
|
| 941 |
+
print("\n" + "="*60)
|
| 942 |
+
print(f"РАСЧЕТ ДЛЯ {self.volume} ЛИТРОВ РАСТВОРА")
|
| 943 |
+
print("="*60)
|
| 944 |
+
print(f"Общая концентрация: {round(sum(self.actual_profile.values()), 1)} ppm")
|
| 945 |
+
print(f"EC: {self.calculate_ec()} mS/cm")
|
| 946 |
+
|
| 947 |
+
print("\nРЕКОМЕНДУЕМЫЕ УДОБРЕНИЯ:")
|
| 948 |
+
fert_table = []
|
| 949 |
+
for fert, data in self.results.items():
|
| 950 |
+
adds = [f"+{k}: {v:.1f} ppm" for k, v in data.items() if k.startswith('внесет')]
|
| 951 |
+
fert_table.append([
|
| 952 |
+
fert,
|
| 953 |
+
round(data['граммы'], 3),
|
| 954 |
+
data['миллиграммы'],
|
| 955 |
+
round(data['вклад в EC'], 3),
|
| 956 |
+
"\n".join(adds)
|
| 957 |
+
])
|
| 958 |
+
print(tabulate(fert_table,
|
| 959 |
+
headers=["Удобрение", "Граммы", "Миллиграммы", "EC (мСм/см)", "Добавит"]))
|
| 960 |
+
|
| 961 |
+
print("\nОСТАТОЧНЫЙ ДЕФИЦИТ:")
|
| 962 |
+
deficit = {
|
| 963 |
+
k: round(self.target_profile[k] - self.actual_profile[k], 1)
|
| 964 |
+
for k in self.target_profile
|
| 965 |
+
if abs(self.target_profile[k] - self.actual_profile[k]) > 0.1
|
|
|
|
| 966 |
}
|
| 967 |
+
if deficit:
|
| 968 |
+
for el, val in deficit.items():
|
| 969 |
+
print(f" {el}: {val} ppm")
|
| 970 |
+
else:
|
| 971 |
+
print(" Все элементы покрыты полностью")
|
| 972 |
+
except Exception as e:
|
| 973 |
+
print(f"Ошибка при выводе отчёта: {str(e)}")
|
| 974 |
+
raise
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
| 975 |
|
| 976 |
+
if __name__ == "__main__":
|
| 977 |
+
try:
|
| 978 |
+
calculator = NutrientCalculator(volume_liters=VOLUME_LITERS)
|
| 979 |
+
calculator.calculate()
|
| 980 |
+
calculator.print_report() # Правильный вызов метода класса
|
| 981 |
+
except Exception as e:
|
| 982 |
+
print(f"Критическая ошибка: {str(e)}")
|
| 983 |
|
|
|
|
|
|
|
| 984 |
|
|
|
|
|
|
|
| 985 |
|
|
|
|
|
|
|
| 986 |
|
| 987 |
|
| 988 |
|