<environment>

	<observation_list>

<!--
        <observation m_type_id="5">   #this is the same m_type_id as used in the xenia db instance
                <standard_name>air_temperature</standard_name>

		#standard_uom should be si(system international) units or metric
                <standard_uom>celsius</standard_uom>

		#standard_uom_en can be the preferred english(en) units
 		#make standard_uom_en same as standard_uom will avoid duplication, don't leave empty 
                <standard_uom_en>fahrenheit</standard_uom_en>

		#range min,max in standard_uom
                <range_min>0</range_min>
                <range_max>50</range_max>

		#the below title, y_title is what the public will see on graphs and column displays
                <title>Air Temperature</title>
                <y_title>degrees Celsius</y_title>

		#for gnuplot the below is the linetype(lt) used when plotting the graph lines or points
		#only case where this is different so far is for wind_from_direction where it is points instead of lines
                <with_clause>lines lt 1</with_clause>

		#the break interval is the number of seconds between two graph points greater than which should introduced a line break 
                <break_interval>3700</break_interval>

		#the pixel x,y size of the final image
                <size_x>600</size_x>
                <size_y>300</size_y>
        </observation>
-->

        <observation m_type_id="5">
                <standard_name>air_temperature</standard_name>
                <standard_uom>celsius</standard_uom>
                <standard_uom_en>fahrenheit</standard_uom_en>

                <range_min>-20</range_min>
                <range_max>50</range_max>
                <title>Air Temperature</title>
                <y_title>degrees Celsius</y_title>
		<with_clause>lines lt 1</with_clause>
                <break_interval>3700</break_interval>
                <size_x>600</size_x>
                <size_y>300</size_y>
        </observation>

        <observation m_type_id="4">
                <standard_name>air_pressure</standard_name>
                <standard_uom>mb</standard_uom>
                <standard_uom_en>inches_mercury</standard_uom_en>

                <range_min>900</range_min>
                <range_max>1050</range_max>
                <title>Air Pressure</title>
                <y_title>millibars</y_title>
		<with_clause>lines lt 1</with_clause>
                <break_interval>3700</break_interval>
                <size_x>600</size_x>
                <size_y>300</size_y>
        </observation>

        <observation m_type_id="22">
                <standard_name>relative_humidity</standard_name>
                <standard_uom>percent</standard_uom>
                <standard_uom_en>percent</standard_uom_en>

                <range_min>0</range_min>
                <range_max>100</range_max>
                <title>Relative Humidity</title>
                <y_title>percent</y_title>
		<with_clause>lines lt 1</with_clause>
                <break_interval>3700</break_interval>
                <size_x>600</size_x>
                <size_y>300</size_y>
        </observation>

        <observation m_type_id="3">
                <standard_name>wind_from_direction</standard_name>
                <standard_uom>degrees_true</standard_uom>
                <standard_uom_en>degrees_true</standard_uom_en>

                <range_min>0</range_min>
                <range_max>359</range_max>
                <title>Wind From Direction</title>
                <y_title>degrees from N</y_title>
		<with_clause>points lt 8</with_clause>
                <break_interval>0</break_interval>
                <size_x>600</size_x>
                <size_y>300</size_y>
        </observation>

        <observation m_type_id="1">
                <standard_name>wind_speed</standard_name>
                <standard_uom>m_s-1</standard_uom>
                <standard_uom_en>knots</standard_uom_en>

                <range_min>0</range_min>
                <range_max>45</range_max>
                <title>Wind Speed</title>
                <y_title>meters/second</y_title>
		<with_clause>lines lt 1</with_clause>
                <break_interval>3700</break_interval>
                <size_x>600</size_x>
                <size_y>300</size_y>
        </observation>

        <observation m_type_id="29">
                <standard_name>precipitation</standard_name>
                <standard_uom>millimeter</standard_uom>
                <standard_uom_en>inch</standard_uom_en>

                <range_min>0</range_min>
                <range_max>30</range_max>
                <title>Precipitation</title>
                <y_title>millibars</y_title>
		<with_clause>points lt 8</with_clause>
                <break_interval>3700</break_interval>
                <size_x>600</size_x>
                <size_y>300</size_y>
        </observation>

        <observation m_type_id="30">
                <standard_name>solar_radiation</standard_name>
                <standard_uom>millimoles_per_m^2</standard_uom>
                <standard_uom_en>millimoles_per_m^2</standard_uom_en>

                <range_min>0</range_min>
                <range_max>5000</range_max>
                <title>Solar</title>
                <y_title>millimoles per square meter</y_title>
		<with_clause>lines lt 1</with_clause>
                <break_interval>3700</break_interval>
                <size_x>600</size_x>
                <size_y>300</size_y>
        </observation>


	<observation m_type_id="13">
		<standard_name>significant_wave_height</standard_name>
		<standard_uom>m</standard_uom>
		<standard_uom_en>f</standard_uom_en>

		<range_min>0</range_min>
		<range_max>45</range_max>
		<title>Significant Wave Height</title>
		<with_clause>lines lt 1</with_clause>
		<y_title>meters</y_title>
		<break_interval>3700</break_interval>
		<size_x>600</size_x>
		<size_y>300</size_y>
	</observation>

        <observation m_type_id="23">
                <standard_name>water_level</standard_name>
                <standard_uom>m</standard_uom>
                <standard_uom_en>f</standard_uom_en>
        
                <range_min>-1000</range_min>
                <range_max>1000</range_max>
                <title>Water Level</title>
                <with_clause>lines lt 1</with_clause>
                <y_title>meters</y_title>
                <break_interval>3700</break_interval>
                <size_x>600</size_x>
                <size_y>300</size_y>
        </observation>

        <observation m_type_id="6">
                <standard_name>water_temperature</standard_name>
                <standard_uom>celsius</standard_uom>
                <standard_uom_en>fahrenheit</standard_uom_en>

                <range_min>-20</range_min>
                <range_max>50</range_max>
                <title>Water Temperature</title>
                <with_clause>lines lt 1</with_clause>
                <y_title>degrees Celsius</y_title>
                <break_interval>3700</break_interval>
                <size_x>600</size_x>
                <size_y>300</size_y>
        </observation>

        <observation m_type_id="7">
                <standard_name>water_conductivity</standard_name>
                <standard_uom>mS_cm-1</standard_uom>
                <standard_uom_en>mS_cm-1</standard_uom_en>

                <range_min>0</range_min>
                <range_max>100</range_max>
                <title>Water Conductivity</title>
                <with_clause>lines lt 1</with_clause>
                <y_title>milliSiemens per centimeter</y_title>
                <break_interval>3700</break_interval>
                <size_x>600</size_x>
                <size_y>300</size_y>
        </observation>

        <observation m_type_id="28">
                <standard_name>salinity</standard_name>
                <standard_uom>psu</standard_uom>
                <standard_uom_en>psu</standard_uom_en>
        
                <range_min>20</range_min>
                <range_max>50</range_max>
                <title>Water Salinity</title>
                <with_clause>lines lt 1</with_clause>
                <y_title>psu</y_title>
                <break_interval>3700</break_interval>
                <size_x>600</size_x>
                <size_y>300</size_y>
        </observation>

        <observation m_type_id="34">
                <standard_name>oxygen_concentration</standard_name>
                <standard_uom>mg_L-1</standard_uom>
                <standard_uom_en>mg_L-1</standard_uom_en>

                <range_min>0</range_min>
                <range_max>20</range_max>
                <title>Dissolved Oxygen</title>
                <with_clause>lines lt 1</with_clause>
                <y_title>milligrams per liter</y_title>
                <break_interval>3700</break_interval>
                <size_x>600</size_x>
                <size_y>300</size_y>
        </observation>

        <observation m_type_id="35">
                <standard_name>oxygen_concentration</standard_name>
                <standard_uom>percent</standard_uom>
                <standard_uom_en>percent</standard_uom_en>

                <range_min>0</range_min>
                <range_max>110</range_max>
                <title>Dissolved Oxygen</title>
                <with_clause>lines lt 1</with_clause>
                <y_title>percent</y_title>
                <break_interval>3700</break_interval>
                <size_x>600</size_x>
                <size_y>300</size_y>
        </observation>

        <observation m_type_id="38">
                <standard_name>ph</standard_name>
                <standard_uom>units</standard_uom>
                <standard_uom_en>units</standard_uom_en>

                <range_min>-10</range_min>
                <range_max>10</range_max>
                <title>pH</title>
                <with_clause>lines lt 1</with_clause>
                <y_title>units</y_title>
                <break_interval>3700</break_interval>
                <size_x>600</size_x>
                <size_y>300</size_y>
        </observation>

        <observation m_type_id="36">
                <standard_name>turbidity</standard_name>
                <standard_uom>ntu</standard_uom>
                <standard_uom_en>ntu</standard_uom_en>

                <range_min>0</range_min>
                <range_max>1200</range_max>
                <title>Turbidity</title>
                <with_clause>lines lt 1</with_clause>
                <y_title>ntu</y_title>
                <break_interval>3700</break_interval>
                <size_x>600</size_x>
                <size_y>300</size_y>
        </observation>


	</observation_list>

	<unit_conversion_list>

	<!-- below are the unit conversions, mainly going from si(metric) to en(english) units -->
	<!-- be sure to include unit self (e.g., m_to_m) conversion reference which also acts as a data formatting statement -->

        <unit_conversion id="percent_to_percent">
        	<conversion_formula>sprintf("%.2f",var1)</conversion_formula>
                <y_title>percent</y_title>
        </unit_conversion>

        <unit_conversion id="mb_to_mb">
        	<conversion_formula>sprintf("%.2f",var1)</conversion_formula>
                <y_title>millibars</y_title>
        </unit_conversion>
        <unit_conversion id="mb_to_inches_mercury">
        	<conversion_formula>sprintf("%.2f",var1*0.0295)</conversion_formula>
                <y_title>inches mercury</y_title>
        </unit_conversion>

        <unit_conversion id="celsius_to_celsius">
        	<conversion_formula>sprintf("%.2f",var1)</conversion_formula>
                <y_title>degrees Celsius</y_title>
        </unit_conversion>
        <unit_conversion id="celsius_to_fahrenheit">
        	<conversion_formula>sprintf("%.2f",var1*9/5+32)</conversion_formula>
                <y_title>degrees Fahrenheit</y_title>
        </unit_conversion>

        <unit_conversion id="degrees_true_to_degrees_true">
        	<conversion_formula>sprintf("%d",var1)</conversion_formula>
                <y_title>degrees from N</y_title>
        </unit_conversion>
 
        <unit_conversion id="m_s-1_to_m_s-1">
        	<conversion_formula>sprintf("%.2f",var1)</conversion_formula>
                <y_title>meters/second</y_title>
        </unit_conversion>
        <unit_conversion id="m_s-1_to_knots">
        	<conversion_formula>sprintf("%.2f",var1*1.9438)</conversion_formula>
                <y_title>knots</y_title>
        </unit_conversion>

        <unit_conversion id="millimeter_to_millimeter">
        	<conversion_formula>sprintf("%.2f",var1)</conversion_formula>
                <y_title>millimeters</y_title>
        </unit_conversion>
        <unit_conversion id="millimeter_to_inch">
        	<conversion_formula>sprintf("%.2f",var1*0.039)</conversion_formula>
                <y_title>inches</y_title>
        </unit_conversion>
      
	<unit_conversion id="millimoles_per_m^2_to_millimoles_per_m^2">
        	<conversion_formula>sprintf("%.2f",var1)</conversion_formula>
                <y_title>millimoles per square meter</y_title>
        </unit_conversion>

	<unit_conversion id="m_to_m">
		<conversion_formula>sprintf("%.2f",var1)</conversion_formula>
		<y_title>meters</y_title>
	</unit_conversion>
	<unit_conversion id="m_to_f">
		<conversion_formula>sprintf("%.2f",var1*3.28)</conversion_formula>
		<y_title>feet</y_title>
	</unit_conversion>

	<unit_conversion id="mS_cm-1_to_mS_cm-1">
		<conversion_formula>sprintf("%.2f",var1)</conversion_formula>
		<y_title>milliSiemens per centimeter</y_title>
	</unit_conversion>

	<unit_conversion id="psu_to_psu">
		<conversion_formula>sprintf("%.2f",var1)</conversion_formula>
		<y_title>psu</y_title>
	</unit_conversion>

	<unit_conversion id="mg_L-1_to_mg_L-1">
		<conversion_formula>sprintf("%.2f",var1)</conversion_formula>
		<y_title>milligrams per liter</y_title>
	</unit_conversion>

	<unit_conversion id="units_to_units">
		<conversion_formula>sprintf("%.2f",var1)</conversion_formula>
		<y_title>units</y_title>
	</unit_conversion>

	<unit_conversion id="ntu_to_ntu">
		<conversion_formula>sprintf("%.2f",var1)</conversion_formula>
		<y_title>ntu</y_title>
	</unit_conversion>

	</unit_conversion_list>

</environment>

