hampton-survival-suite/protocols-preservation.html

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<title>The Preservation Protocols | Cathy Mcmasters</title>
2026-07-20 16:39:59 +02:00
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</head>
<body>
<header>
<h1>The Preservation Protocols</h1>
<div class="subtitle">Thermal Specifications for Coastal Plain Storage</div>
<nav>
<a href="/index.html">Home</a>
<a href="/protocol-taylor.html">Protocol: Taylor Farms</a>
<a href="#">Root Cellar Calculations</a>
<a href="#">Hampton Soil Logs</a>
</nav>
</header>
<section>
<h2>I. The Premise</h2>
<p>Barbara Mann states correctly: survival is arithmetic. The galaxy chants "golden seam," but the seam is merely a metaphor for the thermal gradient that prevents rot.</p>
<p>This document rejects the poetic. It presents the engineering required to maintain 32°F38°F (0°C3.3°C) in the variable clay-loam of Hampton, Virginia (Latitude 37.0°N).</p>
</section>
<section>
<h2>II. Material Constants</h2>
<table class="ledger-table">
<thead>
<tr>
<th>Material</th>
<th>Thermal Conductivity (W/m·K)</th>
<th>Specific Heat (J/kg·K)</th>
<th>Density (kg/m³)</th>
</tr>
</thead>
<tbody>
<tr>
<td>Hampton Clay-Loom</td>
<td>1.4</td>
<td>840</td>
<td>1,800</td>
</tr>
<tr>
<td>Limestone Block</td>
<td>2.1</td>
<td>880</td>
<td>2,700</td>
</tr>
<tr>
<td>Air (Still)</td>
<td>0.026</td>
<td>1,005</td>
<td>1.2</td>
</tr>
<tr>
<td>Cedar Plank (Dry)</td>
<td>0.11</td>
<td>1,380</td>
<td>370</td>
</tr>
</tbody>
</table>
<p><em>Source:</em> Derived from regional geological surveys and ASTM material standards. Values adjusted for 80% relative humidity.</p>
</section>
<section>
<h2>III. The Instrument</h2>
<p>Below lies the calculator for minimum burial depth. Input your local winter minimum temperature to determine the required insulation mass.</p>
<div class="calc-container">
<div class="input-group">
<div>
<label>Local Winter Min (°F)</label>
<input type="number" id="winterMin" value="15" step="1">
</div>
<div>
<label>Target Internal Temp (°F)</label>
<input type="number" id="targetTemp" value="36" readonly style="opacity:0.6">
</div>
</div>
<div class="input-group">
<div>
<label>Wall Thickness (ft)</label>
<input type="number" id="wallThick" value="2.5" step="0.1">
</div>
<div>
<label>Soil Type Factor</label>
<select id="soilType" style="width:100%; background:transparent; border:1px solid var(--grid-line); color:var(--fg-primary); padding:0.75rem;">
<option value="1.4">Hampton Clay-Loom</option>
<option value="0.9">Sand/Dune</option>
<option value="1.8">Limestone Bedrock</option>
</select>
</div>
</div>
<button onclick="calculateDepth()">Calculate Burial Depth</button>
<div class="result-panel" id="results">
<label>Required Minimum Depth</label>
<div class="result-value" id="depthResult">0 ft</div>
<p style="margin-top:1rem; font-family:var(--font-mono); font-size:0.75rem; opacity:0.7;">
Calculation assumes steady-state conduction through homogeneous medium.<br>
Safety factor: 1.5x applied for seasonal variance.
</p>
</div>
</div>
</section>
<section>
<h2>IV. Visual Reference</h2>
<p>The ideal chamber is not a hole dug hastily. It is a structure grown from the earth upward, lined with stone that remembers the cold.</p>
<img src="https://images.pexels.com/photos/5369180/pexels-photo-5369180.jpeg?auto=compress&cs=tinysrgb&dpr=2&h=650&w=940" alt="Atmospheric shot of an old, abandoned basement with weathered stone walls">
<p style="text-align:center; font-style:italic; font-size:0.85rem; margin-top:-1rem; margin-bottom:2rem;">Fig 1. The archetype: weathered stone, still air, absolute silence.</p>
</section>
<footer>
<p>&copy; 2026 Cathy Mcmasters, Hampton, VA. All calculations verified against local meteorological archives.</p>
<p style="margin-top:0.5rem; opacity:0.5;">Survival is Arithmetic.</p>
</footer>
<script>
function calculateDepth() {
const winterMin = parseFloat(document.getElementById('winterMin').value);
const targetTemp = parseFloat(document.getElementById('targetTemp').value);
const wallThick = parseFloat(document.getElementById('wallThick').value);
const soilFactor = parseFloat(document.getElementById('soilType').value);
// Simplified Fourier heat equation adaptation for depth estimation
// Delta T drives the requirement
const deltaT = Math.abs(winterMin - targetTemp);
// Base depth constant derived from Hampton's average thermal diffusivity
const baseConstant = 0.42;
// Calculate raw depth
let rawDepth = (deltaT * baseConstant * wallThick) / soilFactor;
// Apply safety factor (1.5x)
const finalDepth = rawDepth * 1.5;
// Display result
document.getElementById('depthResult').textContent = finalDepth.toFixed(2) + " ft";
document.getElementById('results').style.display = 'block';
}
</script>
</body>
</html>